Nuclear Power Reactors in the World
Transcript of Nuclear Power Reactors in the World
INTERNATIONAL ATOMIC ENERGY AGENCYVIENNA
ISBN 978–92–0–132310–1ISSN 1011–2642 @
REFERENCE DATA SERIES No. 22012 Edition
Nuclear PowerReactors in the World
REFERENCE DATA SERIES No. 2
NUCLEAR POWER REACTORSIN THE WORLD
2012 Edition
INTERNATIONAL ATOMIC ENERGY AGENCYVIENNA, 2012
NUCLEAR POWER REACTORS IN THE WORLDIAEA, VIENNA, 2012
IAEA-RDS-2/31ISBN 978–92–0–132310–1
ISSN 1011–2642
Printed by the IAEA in AustriaJune 2012
CONTENTS
Introduction . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5Definitions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
Table 1. Reactors in operation, in long term shutdown and under construction, 31 Dec. 2011 . . . . 10
Table 2. Type and net electrical power of reactors connected to the grid, 31 Dec. 2011 . . . . . 12
Table 3. Type and net electrical power of reactors under construction, 31 Dec. 2011 . . . . . . . 13
Table 4. Reactor years of experience, up to 31 Dec. 2011 . . . . . . . . . . . . . . . . . . . . . . . 14
Table 5. Operating reactors and net electrical power, 1980 to 2011 . . . . . . . . . . . . . . . . . . . . . . . 16
Table 6. Nuclear electricity production and share, 1980 to 2011 . . . . . . . . . . . . . . . . . . . . . . . 18
Table 7. Annual construction starts and connections to the grid, 1954 to 2011 . . . . 20
Table 8. Number of new reactors connected to the grid and median construction time in months . . . . . . . . . . . . . . . . . . . . . . . . . 21
Table 9. Construction starts during 2011 . . . . . . . . 22Table 10. Connections to the grid during 2011 . . . . 23Table 11. Scheduled connections to the grid during
2012 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 23Table 12. Reactors planned for construction
as known on 31 Dec. 2011 . . . . . . . . . . . . 24Table 13. Reactors under construction,
31 Dec. 2011 . . . . . . . . . . . . . . . . . . . . . . 28Table 14. Reactors in operation, 31 Dec. 2011 . . . . 31Table 15. Reactors in long term shutdown,
31 Dec. 2011 . . . . . . . . . . . . . . . . . . . . . . 47 Table 16. Reactors permanently shut down,
31 Dec. 2011 . . . . . . . . . . . . . . . . . . . . . . . 48 Table 17. Reactors in decommissioning process or
decommissioned, 31 Dec. 2011 . . . . . . . . 53
Table 18. Performance factors by reactor category, 2009 to 2011 . . . . . . . . . . . . . . . . . . . . . . . 58
Table 19. Full outage statistics during 2011 . . . . . . 59Table 20. Direct causes of full outages during 2011 60Table 21. Direct causes of full outages,
2007 to 2011 . . . . . . . . . . . . . . . . . . . . . . 61Table 22. Countries: abbreviations and summary . . 62Table 23. Reactor types: abbreviations and
summary . . . . . . . . . . . . . . . . . . . . . . . . . 64Table 24. Operators: abbreviations and summary . 65Table 25. NSSS suppliers: abbreviations and
summary . . . . . . . . . . . . . . . . . . . . . . . . . 71Figure 1. Number of operational reactors by type and
net electrical power (as of 31 Dec. 2011) 74Figure 2. Reactors under construction by type and
net electrical power (as of 31 Dec. 2011) 75Figure 3. Nuclear share of electricity generation
(as of 31 Dec. 2011) . . . . . . . . . . . . . . . . 76Figure 4. Worldwide median construction time in
months (as of 31 Dec. 2011) . . . . . . . . . . 77Figure 5. Number of reactors in operation by age
(as of 31 Dec. 2011) . . . . . . . . . . . . . . . . 78Figure 6. Annual construction starts and connections
to the grid, 1954 to 2011 . . . . . . . . . . . . . . 79
5
INTRODUCTION
Nuclear Power Reactors in the World is an annual publication that presents the most recent data pertaining to nuclear power reactors in IAEA Member States.
This thirty-second edition of Reference Data Series No. 2 provides a detailed comparison of various statistics through 31 December 2011. The tables and figures contain the following information:
— General statistics on nuclear reactors in IAEA Member States;
— Technical data on specific reactors that are either planned, under construction or operational, or that have been shut down or decommissioned.
— Performance data on reactors operating in IAEA Member States, as reported to the IAEA.
The data compiled in this publication is a product of the IAEA's Power Reactor Information System (PRIS). The PRIS database is a comprehensive source of data on all nuclear power reactors in the world. It includes specification and performance history data on operational reactors as well as on reactors under construction or in the decommissioning process. The IAEA collects this data through designated national correspondents in Member States.
PRIS outputs are available in the IAEA’s annual publications and on the PRIS web page (http://www.iaea.org/pris). Detailed outputs are accessible to registered users through on-line applications. Enquiries should be addressed to:
Director Division of Nuclear Power International Atomic Energy Agency Vienna International Centre PO Box 100 1400 Vienna, Austria Email: [email protected]
7
DEfINITIONS
Performance factors
(REG – PEL – UEL – XEL) EAF (%) = × 100 REG
(REG – PEL – UEL) UCF (%) = × 100 REG
UELUCL (%) = × 100 REG
PELPCL (%) = × 100 REG
EGLF (%) = × 100 REG
On-line HoursOF (%) = × 100 Total Hours
where
EAF is the energy availability factor, expressed in per cent.
UCF is the unit capability factor, expressed in per cent.
UCL is the unplanned capability loss factor, expressed in per cent.
PCL is the planned capability loss factor, expressed in per cent.
LF is the load factor, expressed in per cent.OF is the operating factor, expressed in per cent.
REG reference energy generation: The net electrical energy (MW·h) supplied by a unit continuously operated at the reference unit power during the entire reference period.
8
PEL planned energy loss: The energy (MW·h) that was not supplied during the period because of planned shutdowns or load reductions due to causes under plant management control. Energy losses are considered to be planned if they are scheduled at least four weeks in advance.
UEL unplanned energy loss: The energy (MW·h) that was not supplied during the period because of unplanned shutdowns, outage extensions, or load reductions due to causes under plant man-agement control. Energy losses are considered to be unplanned if they are not scheduled at least four weeks in advance.
XEL external energy loss: The energy (MW·h) that was not supplied due to constraints beyond plant management control that reduced plant availability.
EG the net electrical energy supplied during the ref-erence period as measured at the unit outlet terminals after deducting the electrical energy taken by unit auxiliaries and the losses in trans-formers that are considered to be integral parts of the unit.
Construction StartDate when first major placing of concrete, usually for the base mat of the reactor building, is done.
first CriticalityDate when the reactor is made critical for the first time.
Grid ConnectionDate when the plant is first connected to the electrical grid for the supply of power. After this date, the plant is consid-ered to be in operation.
Commercial OperationDate when the plant is handed over by the contractors to the owner and declared to be officially in commercial operation.
Permanent ShutdownDate when the plant is officially declared to be shut down by the owner and taken out of operation permanently.
9
Long Term ShutdownA unit is considered to be in long term shutdown status if it has been shut down for an extended period (usually several years) without any firm recovery schedule at the beginning, but there is the intention to restart the unit eventually.
Units and Energy Conversion1 terawatt-hour (TW·h) = 106 megawatt-hours (MW·h).
For an average power plant,
1 TW·h = 0.39 megatonnes of coal equivalent (input) = 0.23 megatonnes of oil equivalent (input).
10
No.
of
Tota
lN
o. o
fTo
tal
No.
of
Tota
l%
of
Uni
tsM
W(e
)U
nits
MW
(e)
Uni
tsM
W(e
)to
tal
AR
GE
NTI
NA
2
935
1
69
2
5.9
5.0
AR
ME
NIA
1
375
2.
433
.2 B
ELG
IUM
7
5927
45
.954
.0 B
RA
ZIL
2
1884
1
12
45
14.8
3.2
BU
LGA
RI A
2
1906
2
19
06
15.3
32.6
CA
NA
DA
18
1260
4
4
2726
88
.315
.3 C
HIN
A16
11
816
26
26
620
82
.61.
9 C
ZEC
H R
EP
.6
37
66
26.7
33.0
FIN
LAN
D4
27
36
1
1600
22
.331
.6 F
RA
NC
E58
63
130
1
16
00
423.
577
.7 G
ER
MA
NY
9
1206
8
102.
317
.8 H
UN
GA
RY
4
1889
14
.743
.3 IN
DIA
20
4391
7
48
24
29.0
3.7
IRA
N, I
SL.
RE
P.
1
915
0.
10.
0 J
AP
AN
50
4421
5
1
246
2
26
50
156.
218
.1 K
OR
EA
, RE
P. O
F21
18
751
5
55
60
147.
834
.6 M
EX
ICO
2
1300
9.
33.
6 N
ETH
ER
LAN
DS
1
482
3.
93.
6 P
AK
ISTA
N3
72
5
2
630
3.
83.
8 R
OM
AN
IA2
13
00
10.8
19.0
RU
SS
IA33
23
643
10
81
88
162.
017
.6 S
LOV
AK
IA4
18
16
2
782
14
.354
.0 S
LOV
EN
IA1
68
8
5.9
41.7
SO
UTH
AFR
ICA
2
1830
12
.95.
2 S
PA
IN8
75
67
55.1
19.5
SW
ED
EN
10
9326
58
.139
.6 S
WIT
ZER
LAN
D5
32
63
25.7
40.9
UK
18
9953
62
.717
.8
TW(e
)∙h
TAB
LE 1
. REA
CTO
RS
IN O
PER
ATI
ON
, IN
LO
NG
TER
M S
HU
TDO
WN
AN
D U
ND
ER C
ON
STR
UC
TIO
N, 3
1 D
EC. 2
011
Rea
ctor
s in
long
term
shu
tdow
nR
eact
ors
unde
r con
stru
ctio
nN
ucle
ar e
lect
ricity
supp
lied
in 2
011
Cou
ntry
Rea
ctor
s in
ope
ratio
n
11
No.
of
Tota
lN
o. o
fTo
tal
No.
of
Tota
l%
of
Uni
tsM
W(e
)U
nits
MW
(e)
Uni
tsM
W(e
)to
tal
UK
RA
INE
15
1310
7
2
1900
84
.947
.2 U
SA
104
10
1465
1
11
65
790.
419
.3
Tot
al43
5
3687
91
5
2972
65
61
962
25
18.0
NA
Not
e: T
he to
tal i
nclu
des
the
follo
win
g da
ta fr
om T
aiw
an, C
hina
:—
6 u
nits
, 501
8 M
W in
ope
ratio
n; 2
uni
ts, 2
600
MW
und
er c
onst
ruct
ion;
— 4
0.37
TW
(e)∙h
of n
ucle
ar e
lect
ricity
gen
erat
ion,
repr
esen
ting
19.0
2% o
f the
tota
l ele
ctric
ity g
ener
ated
ther
e.
TAB
LE 1
. REA
CTO
RS
IN O
PER
ATI
ON
, IN
LO
NG
TER
M S
HU
TDO
WN
AN
D U
ND
ER C
ON
STR
UC
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
s in
ope
ratio
nR
eact
ors
in lo
ng te
rm s
hutd
own
Rea
ctor
s un
der c
onst
ruct
ion
Nuc
lear
ele
ctric
itysu
pplie
d in
201
1
TW(e
)∙h
12
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
AR
GE
NTI
NA
2 93
5 2
935
AR
ME
NIA
1 37
5 1
375
BE
LGIU
M7
5927
7
5927
B
RA
ZIL
2 18
84
2 18
84
BU
LGA
RIA
2 19
06
2 19
06
CA
NA
DA
18
1260
4 18
12
604
CH
INA
13
1049
6 2
1300
1
20
16
1181
6 C
ZEC
H R
EP
.6
3766
6
3766
F
INLA
ND
2 97
6 2
1760
4
2736
F
RA
NC
E58
63
130
58
6313
0 G
ER
MA
NY
7 94
96
2 25
72
9 12
068
HU
NG
AR
Y4
1889
4
1889
IN
DIA
2 30
0 18
40
91
20
4391
IR
AN
, IS
L. R
EP
.1
915
1 91
5 J
AP
AN
24
1928
4 26
24
931
50
4421
5 K
OR
EA
, RE
P. O
F17
15
966
4 27
85
21
1875
1 M
EX
ICO
2 13
00
2 13
00
NE
THE
RLA
ND
S1
482
1 48
2 P
AK
ISTA
N2
600
1 12
5 3
725
RO
MA
NIA
2 13
00
2 13
00
RU
SS
IA17
12
864
15
1021
9 1
560
33
2364
3 S
LOV
AK
IA4
1816
4
1816
S
LOV
EN
IA1
688
1 68
8 S
OU
TH A
FRIC
A2
1830
2
1830
S
PA
IN6
6057
2
1510
8
7567
S
WE
DE
N3
2811
7
6515
10
93
26
SW
ITZE
RLA
ND
3 17
00
2 15
63
5 32
63
UK
1 11
91
17
8762
18
99
53
UK
RA
INE
15
1310
7 15
13
107
US
A69
67
368
35
3409
7 10
4 10
1465
TO
TAL
270
2483
64
84
7772
6 17
87
62
47
2314
0 15
10
219
2 58
0 43
5 36
8791
Not
e: T
he to
tals
incl
ude
6 un
its, 5
018
MW
in T
aiw
an, C
hina
.
Dur
ing
2011
, 7 re
acto
rs, 4
004
MW
wer
e ne
wly
con
nect
ed to
the
grid
.
TAB
LE 2
. TY
PE
AN
D N
ET
ELE
CTR
ICA
L P
OW
ER
Of
RE
AC
TOR
S C
ON
NE
CTE
D T
O T
HE
GR
ID, 3
1 D
EC
. 201
1 C
ount
ryFB
RTo
tal
PW
RB
WR
PH
WR
LWG
RG
CR
13
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
AR
GE
NTI
NA
1 69
2 1
692
BR
AZI
L1
1245
1
1245
B
ULG
AR
IA2
1906
2
1906
C
HIN
A26
26
620
26
2662
0 F
INLA
ND
1 16
00
1 16
00
FR
AN
CE
1 16
00
1 16
00
IND
IA2
1834
4
2520
1
470
7 48
24
JA
PA
N2
2650
2
2650
K
OR
EA
, RE
P. O
F5
5560
5
5560
P
AK
ISTA
N2
630
2 63
0 R
US
SIA
8 64
84
1 91
5 1
789
10
8188
S
LOV
AK
IA2
782
2 78
2 U
KR
AIN
E2
1900
2
1900
U
SA
1 11
65
1 11
65
TO
TAL
53
5132
6 4
5250
5
3212
1
915
2 12
59
65
6196
2
Not
e: T
he to
tals
incl
ude
2 un
its (
2xB
WR
), 26
00 M
W in
Tai
wan
, Chi
na.
D
urin
g 20
11,
cons
truct
ion
star
ted
on 4
reac
tors
, 189
0 M
W.
TAB
LE 3
. TYP
E A
ND
NET
ELE
CTR
ICA
L PO
WER
Of
REA
CTO
RS
UN
DER
CO
NST
RU
CTI
ON
, 31
DEC
. 201
1 To
tal
FBR
Cou
ntry
PH
WR
LWG
RP
WR
BW
R
14
Cap
acity
Net
cap
acity
Net
cap
acity
Net
cap
acity
No.
MW
(e) N
etN
o.M
W(e
)N
o.M
W(e
)N
o.M
W(e
)Y
ears
Mon
ths
AR
GE
NTI
NA
293
52
935
667
AR
ME
NIA
137
51
376
275
137
8 B
ELG
IUM
759
271
108
5937
247
7 B
RA
ZIL
218
842
1884
413
BU
LGA
RIA
219
064
1632
635
3815
13
CA
NA
DA
1812
604
427
263
478
2515
808
618
2 C
HIN
A16
1181
616
1181
612
56
CZE
CH
RE
P.
637
666
3766
122
10 F
INLA
ND
427
364
2736
131
4 F
RA
NC
E58
6313
012
3789
7066
919
1816
4 G
ER
MA
NY
912
068
2714
301
3626
369
782
9 H
UN
GA
RY
418
894
1889
106
2 IN
DIA
2043
9120
4391
357
3 IR
AN
, IS
L. R
EP
.1
915
191
54
ITA
LY4
1423
414
2381
JA
PA
N50
4421
51
246
943
3760
4879
815
464
KA
ZAK
HS
TAN
152
152
2510
KO
RE
A, R
EP
. OF
2118
751
2118
751
381
1 L
ITH
UA
NIA
223
702
2370
436
ME
XIC
O2
1300
213
0039
11 N
ETH
ER
LAN
DS
148
21
552
537
67 P
AK
ISTA
N3
725
372
552
8 R
OM
AN
IA2
1300
213
0019
11 R
US
SIA
3323
643
578
638
2442
910
584
SLO
VA
KIA
418
163
909
727
2514
07
SLO
VE
NIA
168
81
688
303
SO
UTH
AFR
ICA
218
302
1830
543
SP
AIN
875
672
621
1081
8828
56
TAB
LE 4
. REA
CTO
R Y
EAR
S O
f EX
PER
IEN
CE,
UP
TO 3
1 D
EC. 2
011
Cou
ntry
Exp
erie
nce
Rea
ctor
s co
nnec
ted
to th
e gr
idR
eact
ors
in lo
ng te
rm
shut
dow
nP
erm
anen
tly s
hutd
own
reac
tors
Tota
l, O
pera
ting
and
Shu
tdow
n
15
Net
cap
acity
Net
cap
acity
Net
cap
acity
Net
cap
acity
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
Yea
rsM
onth
s S
WE
DE
N10
9326
312
1013
1053
639
26
SW
ITZE
RLA
ND
532
631
66
3269
184
11 U
K18
9953
2735
1845
1347
114
952
UK
RA
INE
1513
107
435
1519
1662
239
86
US
A10
410
1465
2897
6413
211
1229
3707
11
Tot
al43
5
3687
91
5
2972
13
8
4915
2
578
42
0915
14
792
3
Not
es:
1. T
he to
tal i
nclu
des
the
follo
win
g da
ta fr
om T
aiw
an, C
hina
: —
reac
tors
con
nect
ed to
the
grid
: 6 u
nits
, 501
8 M
W; e
xper
ienc
e: 1
82 y
ears
, 1 m
onth
. 2
. Ope
ratin
g ex
perie
nce
is c
ount
ed fr
om th
e gr
id c
onne
ctio
n ex
clud
ing
any
long
term
shu
tdow
n pe
riod.
TAB
LE 4
. REA
CTO
R Y
EAR
S O
f EX
PER
IEN
CE,
UP
TO 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
s co
nnec
ted
Rea
ctor
s in
long
term
P
erm
anen
tly s
hutd
own
Tota
l, op
erat
ing
to th
e gr
idsh
utdo
wn
reac
tors
and
shut
dow
nE
xper
ienc
e
16
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
AR
GE
NTI
NA
133
52
935
293
52
935
297
82
935
293
52
935
AR
ME
NIA
281
62
816
137
61
376
137
61
375
137
5 B
ELG
IUM
416
708
5464
755
017
5631
757
127
5801
759
267
5927
BR
AZI
L1
626
162
61
626
219
762
1901
218
842
1884
BU
LGA
RIA
312
244
1632
525
856
3538
637
604
2722
219
062
1906
CA
NA
DA
1051
7216
9741
2013
993
2114
902
1499
9818
1258
418
1260
418
1260
4 C
HIN
A3
2188
321
889
6587
1310
065
1611
816
CZE
CH
RE
P.
139
14
1632
417
825
2611
633
736
3678
637
66 F
INLA
ND
422
084
2300
423
104
2310
426
564
2676
427
164
2736
FR
AN
CE
2214
388
4337
478
5655
808
5658
573
5963
080
5963
260
5863
130
5863
130
GE
RM
AN
Y19
1032
324
1811
021
2125
019
2097
219
2128
317
2033
917
2049
09
1206
8 H
UN
GA
RY
282
54
1710
417
294
1729
417
554
1889
418
89 IN
DIA
483
26
1143
713
2410
1746
1425
0815
2993
1941
8920
4391
IRA
N, I
SL.
RE
P.
191
5 IT
ALY
411
123
1273
JA
PA
N23
1491
833
2361
241
3086
750
3962
552
4324
555
4759
354
4682
150
4421
5 K
AZA
KH
STA
N1
135
113
51
135
150
KO
RE
A, R
EP
. OF
156
45
3692
972
2011
9115
1612
990
2016
810
2118
698
2118
751
LIT
HU
AN
IA1
1380
227
602
2370
223
701
1185
ME
XIC
O1
640
212
562
1290
213
602
1300
213
00 N
ETH
ER
LAN
DS
249
82
508
253
92
510
144
91
450
148
21
482
PA
KIS
TAN
112
51
137
112
51
125
242
52
425
242
53
725
RO
MA
NIA
165
51
655
213
002
1300
RU
SS
IA20
8596
2815
841
2918
898
3019
848
3019
848
3121
743
3222
693
3323
643
SLO
VA
KIA
278
04
1632
416
324
1632
624
406
2442
418
164
1816
SLO
VE
NIA
163
21
620
162
01
676
165
61
666
168
8 S
OU
TH A
FRIC
A2
1840
218
402
1840
218
402
1800
218
002
1830
SP
AIN
310
738
5608
970
999
7097
974
689
7591
875
148
7567
SW
ED
EN
855
1012
9455
1298
2612
1004
311
9412
1089
0510
9303
1093
26
TAB
LE 5
. OPE
RA
TIN
G R
EAC
TOR
S A
ND
NET
ELE
CTR
ICA
L PO
WER
,198
0 TO
201
1
2010
2005
1980
Cou
ntry
Num
ber o
f uni
ts a
nd n
et c
apac
ity (M
W(e
)) c
onne
cted
to th
e gr
id a
t 31
Dec
. of g
iven
yea
r20
0019
9519
9019
8520
11
17
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
No.
MW
(e)
SW
ITZE
RLA
ND
419
405
2881
529
425
3056
531
705
3220
532
385
3263
UK
3364
2338
1007
737
1136
035
1291
033
1249
023
1185
219
1013
718
9953
UK
RA
INE
323
0610
8324
1513
020
1513
045
1311
195
1513
107
1513
107
1513
107
US
A69
5088
190
7440
110
896
228
108
9806
810
396
297
103
9814
510
410
1211
104
1014
65
WO
RLD
245
1330
37
363
2457
79
416
3182
53
434
3414
02
435
3499
99
441
3681
25
441
3752
80
435
3687
91
Not
e: T
he w
orld
tota
l inc
lude
s th
e fo
llow
ing
data
in T
aiw
an, C
hina
:–
1980
: 2 u
nits
, 120
8 M
W; 1
985:
6 u
nits
, 489
0 M
W; 1
990:
6 u
nits
, 482
8 M
W; 1
995:
6 u
nits
, 488
4 M
W; 2
000:
6 u
nits
, 488
4 M
W; 2
005:
6 u
nits
, 488
4 M
W; 2
010:
6 u
nits
, 498
2 M
W; 2
011:
6 u
nits
, 501
8 M
W.
TAB
LE 5
. OPE
RA
TIN
G R
EAC
TOR
S A
ND
NET
ELE
CTR
ICA
L PO
WER
,198
0 TO
201
1 —
con
tinue
d
Cou
ntry
Num
ber o
f uni
ts a
nd n
et c
apac
ity (M
W(e
)) c
onne
cted
to th
e gr
id a
t 31
Dec
. of g
iven
yea
r19
8019
8519
9019
9520
0020
0520
1020
11
18
TW(e
)∙h%
of t
otal
TW(e
)·h%
of t
otal
TW(e
)·h%
of t
otal
TW(e
)·h%
of t
otal
TW(e
)·h%
of t
otal
TW(e
)·h%
of t
otal
TW(e
)·h%
of t
otal
TW(e
)·h%
of t
otal
AR
GE
NTI
NA
2.18
NA
5.25
11.7
6.72
19.8
6.57
11.8
5.74
7.3
6.37
6.9
6.69
5.9
5.89
5.0
AR
ME
NIA
1.84
33.0
2.50
42.7
2.29
39.4
2.36
33.2
BE
LGIU
M11
.86
NA
29.2
559
.840
.59
60.1
39.3
055
.545
.81
56.8
45.3
455
.645
.73
51.2
45.9
454
.0 B
RA
ZIL
3.17
1.7
2.06
1.0
2.33
1.0
5.59
1.9
9.20
2.5
13.7
73.
114
.79
3.2
BU
LGA
RIA
5.71
NA
12.1
731
.613
.51
35.7
16.2
246
.416
.79
45.0
17.3
844
.114
.24
33.1
15.2
632
.6 C
AN
AD
A38
.02
NA
59.4
712
.769
.87
14.8
93.9
817
.369
.12
11.8
86.8
314
.585
.50
15.1
88.3
215
.3 C
HIN
A12
.13
1.2
16.0
21.
250
.33
2.0
70.9
61.
882
.57
1.9
CZE
CH
RE
P.
1.99
NA
11.7
7N
A12
.23
20.0
12.7
118
.723
.25
30.5
26.4
433
.326
.70
33.0
FIN
LAN
D6.
68N
A17
.98
38.2
18.1
335
.118
.13
29.9
21.5
832
.222
.36
32.9
21.8
928
.422
.27
31.6
FR
AN
CE
57.3
1N
A21
3.28
64.8
297.
6174
.535
8.71
76.1
395.
3976
.443
1.18
78.5
410.
0974
.142
3.51
77.7
GE
RM
AN
Y41
.44
NA
119.
5931
.213
9.37
33.1
146.
1329
.616
0.66
30.6
154.
6126
.613
3.01
22.6
102.
3117
.8 H
UN
GA
RY
6.10
23.6
12.8
951
.413
.20
42.3
13.3
540
.613
.02
37.2
14.6
642
.114
.71
43.3
IND
IA2.
77N
A3.
872.
25.
292.
26.
991.
914
.23
3.1
15.7
32.
820
.48
2.9
28.9
53.
7 IR
AN
, IS
L. R
EP
.0.
100.
0 IT
ALY
2.11
NA
6.46
3.8
JA
PA
N79
.11
NA
145.
3722
.718
7.19
27.1
275.
5133
.430
6.24
33.8
280.
5029
.328
0.25
29.2
156.
1818
.1 K
AZA
KH
STA
N0.
080.
1 K
OR
EA
, RE
P. O
F3.
26N
A12
.36
23.2
50.2
649
.160
.21
36.1
103.
5440
.713
7.59
44.7
141.
8932
.214
7.76
34.6
LIT
HU
AN
IA8.
75N
A15
.70
NA
10.6
486
.17.
4273
.99.
5470
.3 M
EX
ICO
2.78
2.6
7.53
6.0
7.92
3.9
10.3
25.
05.
593.
69.
313.
6 N
ETH
ER
LAN
DS
3.97
NA
3.69
6.1
3.29
4.9
3.78
4.9
3.70
4.3
3.77
3.9
3.75
3.4
3.92
3.6
PA
KIS
TAN
0.07
0.5
0.26
1.0
0.38
1.1
0.46
0.9
0.90
1.7
2.41
2.8
2.56
2.6
3.84
3.8
RO
MA
NIA
5.05
10.9
5.11
8.6
10.7
019
.510
.81
19.0
RU
SS
IA43
.78
NA
88.2
6N
A10
9.62
NA
91.5
911
.812
0.10
15.0
137.
6415
.815
9.41
17.1
162.
0217
.6 S
LOV
AK
IA4.
52N
A8.
70N
A11
.16
NA
11.3
544
.115
.17
53.4
16.3
456
.113
.54
51.8
14.3
454
.0 S
LOV
EN
IA3.
85N
A4.
39N
A4.
5739
.54.
5537
.45.
6142
.45.
3837
.35.
9041
.7 S
OU
TH A
FRIC
A5.
394.
28.
475.
611
.29
6.5
13.0
06.
612
.24
5.5
12.9
05.
212
.94
5.2
SP
AIN
4.98
NA
26.8
324
.051
.98
35.9
53.4
934
.159
.49
27.6
54.9
919
.659
.26
20.1
55.1
219
.5 S
WE
DE
N25
.42
NA
55.8
942
.365
.27
45.9
67.1
746
.651
.88
39.0
69.5
844
.955
.73
38.1
58.1
039
.6
TAB
LE 6
. NU
CLE
AR
ELE
CTR
ICIT
Y PR
OD
UC
TIO
N A
ND
SH
AR
E, 1
980
TO 2
011
2010
2005
1980
Cou
ntry
Nuc
lear
cap
acity
(TW
(e)∙h
) of r
eact
ors
conn
ecte
d to
the
grid
at 3
1 D
ec. o
f giv
en y
ear
2000
1995
1990
1985
2011
19
TW(e
)·h%
of t
otal
TW(e
)·h%
of t
otal
TW(e
)·h%
of t
otal
TW(e
)·h%
of t
otal
TW(e
)·h%
of t
otal
TW(e
)·h%
of t
otal
TW(e
)·h%
of t
otal
TW(e
)·h%
of t
otal
SW
ITZE
RLA
ND
13.6
3N
A21
.28
39.8
22.4
042
.623
.58
39.9
25.0
538
.222
.11
38.0
25.3
438
.025
.69
40.9
UK
32.3
2N
A53
.73
19.6
58.7
719
.770
.64
25.4
72.9
921
.975
.34
20.0
56.8
515
.562
.66
17.8
UK
RA
INE
6.38
NA
35.8
1N
A71
.26
NA
65.7
837
.872
.56
47.3
83.4
048
.583
.95
48.1
84.8
947
.2 U
SA
249.
84N
A37
8.68
15.5
578.
0820
.667
3.52
22.5
755.
5519
.878
3.35
19.3
807.
0819
.679
0.44
19.3
WO
RLD
635.
36
1327
.43
1890
.35
2190
.91
2440
.94
2626
.34
2629
.82
2517
.97
Not
e: T
he w
orld
tota
l inc
lude
s th
e fo
llow
ing
data
from
Tai
wan
, Chi
na:
1990
: 31.
54 T
W(e
)∙h o
f nuc
lear
ele
ctric
ity g
ener
atio
n, re
pres
entin
g 38
.32%
of t
he to
tal e
lect
ricity
gen
erat
ed th
ere;
1995
: 33.
8 TW
(e)∙h
of n
ucle
ar e
lect
ricity
gen
erat
ion,
repr
esen
ting
28.7
9% o
f the
tota
l ele
ctric
ity g
ener
ated
ther
e; 2
000:
37
TW(e
)∙h o
f nuc
lear
ele
ctric
ity g
ener
atio
n, re
pres
entin
g 21
.19%
of t
he to
tal e
lect
ricity
gen
erat
ed th
ere;
200
5: 3
8.4
TW(e
)∙h o
f nuc
lear
ele
ctric
ity g
ener
atio
n, re
pres
entin
g 17
.93%
of t
he to
tal e
lect
ricity
gen
erat
ed th
ere;
201
0: 3
9.89
TW
(e)∙h
of n
ucle
ar e
lect
ricity
gen
erat
ion,
repr
esen
ting
19.3
% o
f the
tota
l ele
ctric
ity g
ener
ated
ther
e; 2
011:
40.
37 T
W(e
)∙h o
f nuc
lear
ele
ctric
ity g
ener
atio
n, re
pres
entin
g 19
.02%
of t
he to
tal e
lect
ricity
gen
erat
ed th
ere.
TAB
LE 6
. NU
CLE
AR
ELE
CTR
ICIT
Y PR
OD
UC
TIO
N A
ND
SH
AR
E, 1
980
TO 2
011
— c
ontin
ued
Cou
ntry
Nuc
lear
cap
acity
(TW
(e)·h
) of r
eact
ors
conn
ecte
d to
the
grid
at 3
1 D
ec. o
f giv
en y
ear
1980
1985
1990
1995
2000
2005
2010
2011
20
TABLE 7. ANNUAL CONSTRUCTION STARTS ANDCONNECTIONS TO THE GRID, 1954 TO 2011
Numberof units
Designcapacity(MW(e))
Numberof units
Designcapacity(MW(e))
Numberof units
Updatedcapacity(MW(e))
1954 1 60 1 5 1 51955 8 260 1 5
1956 5 577 1 35 2 651957 13 1836 3 119 5 2091958 6 476 1 35 6 2691959 7 976 5 176 11 5481960 11 1010 4 438 15 1087
1961 7 1531 1 15 16 11041962 8 1379 9 955 25 22231963 5 1722 9 500 33 26771964 9 2866 8 1022 40 36861965 9 3291 8 1879 48 5910
1966 15 7052 8 1530 55 75391967 25 16287 11 2165 64 95951968 37 26859 7 1020 69 106481969 13 9277 10 3670 78 141211970 37 25526 6 3410 84 17656
1971 18 12660 16 7711 99 243201972 29 22335 16 8880 113 327971973 29 23492 20 12727 132 437611974 38 35222 26 17149 154 610211975 38 36449 15 10236 169 70414
1976 42 40656 19 14269 186 839921977 24 22691 18 13243 200 963851978 23 21735 20 15782 219 1119231979 28 23909 8 6909 225 1178141980 20 19134 21 15088 245 133037
1981 16 15149 23 20389 267 1538321982 19 19765 19 15317 284 1683171983 16 12218 23 19253 306 1877561984 10 9528 33 31001 336 2184521985 20 16286 33 31042 363 245779
1986 8 7201 27 27212 389 2720741987 13 11019 22 22191 407 2958121988 7 7722 14 13621 416 3052121989 6 4018 12 10457 420 3119421990 5 3366 10 10543 416 318253
1991 2 2246 4 3668 415 3219241992 3 3105 6 4809 418 3252611993 4 3715 9 9012 427 3339141994 2 1330 5 4176 429 3369341995 5 3635 434 341402
1996 1 610 6 7080 438 3472961997 5 4386 3 3568 434 3478951998 3 2096 4 3152 430 3449151999 4 4583 4 2704 432 3473682000 7 5399 6 3063 435 349999
2001 1 1304 3 2696 438 3527302002 6 3440 6 4998 439 3572962003 1 202 2 1700 437 3598422004 2 1336 5 4785 438 3646882005 3 2900 4 3923 441 368125
2006 4 3400 2 1435 435 3695812007 8 6519 3 1785 439 3716452008 10 10499 438 3714952009 12 13165 2 1068 437 3707052010 16 15846 5 3763 441 375280
2011 4 1890 7 3997 435 368791
Year
Constructionstarts
Reactorsin operation
Connectionsto the grid
21
No.
Mon
ths
No.
Mon
ths
No.
Mon
ths
No.
Mon
ths
No.
Mon
ths
No.
Mon
ths
No.
Mon
ths
No.
Mon
ths
AR
GE
NTI
NA
110
9 A
RM
EN
IA2
73 B
ELG
IUM
480
BR
AZI
L1
132
117
5 B
ULG
AR
IA1
871
104
189
111
3 C
AN
AD
A4
697
985
101
297
CH
INA
373
660
468
360
CZE
CH
RE
P.
174
393
116
71
191
FIN
LAN
D4
63 F
RA
NC
E13
6624
6815
863
934
124
GE
RM
AN
Y9
687
100
610
3 H
UN
GA
RY
211
22
90 IN
DIA
115
22
154
115
23
120
412
21
644
811
105
IRA
N, I
SL.
RE
P.
122
1 IT
ALY
110
1 J
AP
AN
1161
1046
849
1046
342
447
153
KO
RE
A, R
EP
. OF
163
465
462
261
559
454
151
LIT
HU
AN
IA1
801
116
ME
XIC
O1
151
121
0 P
AK
ISTA
N1
831
64 R
OM
AN
IA1
169
116
0 R
US
SIA
674
973
472
110
92
233
132
31
107
SLO
VA
KIA
289
299
211
8 S
LOV
EN
IA1
80 S
OU
TH A
FRIC
A2
102
SP
AIN
511
22
96 S
WE
DE
N3
854
74
1980
1991 to
1995
1986
1981 to
1985
TAB
LE 8
. NU
MB
ER O
f N
EW R
EAC
TOR
S C
ON
NEC
TED
TO
TH
E G
RID
AN
D M
EDIA
N C
ON
STR
UC
TIO
N T
IME
IN M
ON
THS
to19
90
2006 to
2010
2011
2001 to
2005
1996 to
2000
1976
Cou
ntry
to
22
Type
Mod
el C
ode
Nam
eTh
erm
alG
ross
Net
IND
IA IN
-21
RA
JAS
THA
N-7
PH
WR
Hor
izon
tal P
re21
7770
063
0 N
PC
ILN
PC
IL 2
011-
720
16-3
2016
-6 IN
-22
RA
JAS
THA
N-8
PH
WR
Hor
izon
tal P
re21
7770
063
0 N
PC
ILN
PC
IL 2
011-
920
16-9
2016
-12
PA
KIS
TAN
PK
-5C
HA
SN
UP
P 4
PW
RC
NP
-300
999
340
315
PA
EC
CZE
C 2
011-
1220
17-7
2017
-10
PK
-4C
HA
SN
UP
P 3
PW
RC
NP
-300
999
340
315
PA
EC
CZE
C 2
011-
520
16-9
2016
-12
Not
e: D
urin
g 20
11, c
onst
ruct
ion
was
sta
rted
on 4
reac
tors
(189
0 M
W).
TAB
LE 9
. CO
NST
RU
CTI
ON
STA
RTS
DU
RIN
G 2
011
Cou
ntry
Rea
ctor
Cap
acity
(MW
) O
pera
tor
Com
mer
cial
oper
atio
nN
SS
Ssu
pplie
r C
onst
ruct
ion
sta
rtG
ridco
nnec
tion
No.
Mon
ths
No.
Mon
ths
No.
Mon
ths
No.
Mon
ths
No.
Mon
ths
No.
Mon
ths
No.
Mon
ths
No.
Mon
ths
SW
ITZE
RLA
ND
163
112
5 U
K4
106
618
64
981
80 U
KR
AIN
E3
897
646
571
113
222
7 U
SA
1810
025
126
2214
61
221
127
8
TO
TAL
86
74
131
99
85
95
29
103
23
12
3
20
64
12
75
7 10
5
Not
e: C
onst
ruct
ion
time
is m
easu
red
from
the
first
pou
ring
of c
oncr
ete
to th
e co
nnec
tion
of th
e un
it to
the
grid
.Th
e to
tals
incl
ude
the
follo
win
g da
ta fr
om T
aiw
an, C
hina
:—
197
6 to
198
0: 2
uni
ts, 6
4 m
onth
s;—
198
1 to
198
5: 4
uni
ts, 7
2 m
onth
s.
TAB
LE 8
. NU
MB
ER O
f N
EW R
EAC
TOR
S C
ON
NEC
TED
TO
TH
E G
RID
AN
D M
EDIA
N C
ON
STR
UC
TIO
N T
IME
IN M
ON
THS
— c
ontin
ued
Cou
ntry
1976
1981
1986
1991
1996
2001
2006
2011
toto
toto
toto
to19
8019
8519
9019
9520
0020
0520
10
23
Cod
eN
ame
Ther
mal
Gro
ssN
et C
HIN
A C
N -8
4C
EFR
FBR
BN
-20
6525
20 C
IAE
IZ 2
000-
520
10-7
— C
N -1
3LI
NG
AO
4P
WR
CP
R-1
000
2905
1080
1000
LD
NP
CD
FEC
200
6-6
2011
-220
11-5
CN
-15
QIN
SH
AN
2-4
PW
RC
NP
600
1930
650
610
NP
QJV
CC
NN
C 2
007-
120
11-1
120
11-1
1
IND
IA IN
-16
KA
IGA
-4P
HW
RH
oriz
onta
l Pre
800
220
202
NP
CIL
NP
CIL
200
2-5
2010
-11
2011
-1
IRA
N, I
SL.
RE
P.
IR -1
BU
SH
EH
R 1
PW
RV
VE
R V
-446
3000
1000
915
NP
PD
CO
AS
E 1
975-
520
11-5
2011
-9
PA
KIS
TAN
PK
-3C
HA
SN
UP
P 2
PW
RP
WR
999
325
300
PA
EC
CN
NC
200
5-12
2011
-220
11-3
RU
SS
IA R
U -3
7K
ALI
NIN
-4P
WR
VV
ER
V-3
2032
0010
0095
0 R
EA
RO
SA
TOM
198
6-8
2011
-11
—
Not
e: D
urin
g 20
11, 7
reac
tors
(399
7 M
W) w
ere
new
ly c
onne
cted
to th
e gr
id.
TAB
LE 1
0. C
ON
NEC
TIO
NS
TO T
HE
GR
ID D
UR
ING
201
1
Grid
con
nect
ion
NS
SS
supp
lier
Con
stru
ctio
n s
tart
Firs
tcr
itica
lity
Cap
acity
(MW
)C
ount
ryR
eact
orTy
peM
odel
Ope
rato
r
Cod
eN
ame
Ther
mal
Gro
ssN
et A
RG
EN
TIN
A A
R -3
ATU
CH
A-2
PH
WR
PH
WR
KW
U21
6074
569
2 N
AS
AS
IEM
EN
S 1
981-
7—
2012
-7
IND
IA IN
-26
KU
DA
NK
ULA
M-2
PW
RV
VE
R V
-412
3000
1000
917
NP
CIL
MA
EP
200
2-7
2012
-620
12-7
KO
RE
A, R
EP
. OF
KR
-22
SH
IN-K
OR
I-2P
WR
OP
R-1
000
2825
1000
960
KH
NP
DH
ICK
OP
C 2
007-
620
11-1
220
12-1
KR
-23
SH
IN-W
OLS
ON
G-1
PW
RO
PR
-100
028
2510
0096
0 K
HN
PD
HIC
KO
PC
200
7-11
2012
-120
12-1
SLO
VA
KIA
SK
-10
MO
CH
OV
CE
-3P
WR
VV
ER
V-2
1313
7544
039
1 E
MO
SK
OD
A 1
987-
120
12-1
220
12-1
2
US
A U
S -3
91W
ATT
S B
AR
-2P
WR
W (4
-loop
)34
2512
1811
65 T
VA
WH
197
2-12
—20
12-8
Not
e: D
urin
g 20
12, 6
reac
tors
(508
5 M
W) a
re e
xpec
ted
to a
chie
ve c
onne
ctio
n to
grid
.
TAB
LE 1
1. S
CH
EDU
LED
CO
NN
ECTI
ON
S TO
TH
E G
RID
DU
RIN
G 2
012
Grid
conn
ectio
nN
SS
Ssu
pplie
r C
onst
ruct
ion
sta
rtFi
rst
criti
calit
yC
apac
ity (M
W)
Cou
ntry
Rea
ctor
Mod
elTy
pe O
pera
tor
24
Cod
eN
ame
Ther
mal
Gro
ssN
et
CH
INA
CN
-42
BA
MA
OS
HA
N P
WR
CP
R-1
000
2905
1080
900
— C
N -5
3C
HA
NG
JIA
NG
3P
WR
1930
650
610
— C
N -5
4C
HA
NG
JIA
NG
4P
WR
1930
650
610
— C
N -5
7FA
NG
CH
EN
GG
AN
G 3
PW
R10
00 —
CN
-58
FAN
GC
HE
NG
GA
NG
4P
WR
1000
— C
N -5
9FA
NG
CH
EN
GG
AN
G 5
PW
R10
00 —
CN
-60
FAN
GC
HE
NG
GA
NG
6P
WR
1000
— C
N -4
8FU
QIN
G 4
PW
RC
PR
-100
029
0510
8710
00 F
QN
PD
FEC
— C
N -4
9FU
QIN
G 5
PW
RC
PR
-100
029
0510
8710
00 F
QN
PD
FEC
— C
N -5
0FU
QIN
G 6
PW
RC
PR
-100
029
0510
8710
00 F
QN
PD
FEC
— C
N -7
6H
AIY
AN
G 3
PW
RA
P-1
000
3750
1250
1000
SN
PC
WH
— C
N -7
7H
AIY
AN
G 4
PW
RA
P-1
000
3750
1250
1000
SN
PC
WH
— C
N -2
6H
ON
GS
HID
ING
1P
WR
0 —
CN
-27
HO
NG
SH
IDIN
G 2
PW
R0
HO
NG
YA
NH
DFE
C —
CN
-80
HO
NG
YA
NH
E 5
PW
RC
PR
-100
029
0510
8010
00 L
HN
PC
DFE
C —
CN
-81
HO
NG
YA
NH
E 6
PW
RC
PR
-100
029
0510
8010
00 L
HN
PC
DFE
C —
CN
-65
JIY
AN
G 1
PW
R10
00 —
CN
-66
JIY
AN
G 2
PW
R10
00 —
CN
-67
JIY
AN
G 3
PW
R10
00 —
CN
-68
JIY
AN
G 4
PW
R10
00 —
CN
-61
PE
NG
ZE 1
PW
R12
50 —
CN
-62
PE
NG
ZE 2
PW
R12
50 —
CN
-63
PE
NG
ZE 3
PW
R12
50 —
CN
-64
PE
NG
ZE 4
PW
R12
50 —
CN
-78
SA
NM
EN
3P
WR
AP
-100
037
5012
5010
00 S
MN
PC
WH
/MH
I —
CN
-79
SA
NM
EN
4P
WR
AP
-100
037
5012
5010
00 S
MN
PC
WH
/MH
I —
CN
-70
SA
NM
ING
-1FB
RB
N-8
0021
0086
080
0 F
SN
PC
— C
N -7
1S
AN
MIN
G-2
FBR
BN
-800
2100
860
800
FS
NP
C —
CN
-69
SH
IDA
OW
AN
1H
TGR
HTG
R-P
M50
020
020
0 H
SN
PC
—
TAB
LE 1
2. R
EAC
TOR
S PL
AN
NED
fO
R C
ON
STR
UC
TIO
N A
S K
NO
WN
ON
31
DEC
. 201
1
Cap
acity
(MW
) O
pera
tor
Exp
ecte
dco
nstru
ctio
nst
art
NS
SS
supp
lier
Cou
ntry
Rea
ctor
Type
Mod
el
25
Cod
eN
ame
Ther
mal
Gro
ssN
et C
N -3
2TA
OH
UA
JIA
NG
1P
WR
0 —
CN
-33
TAO
HU
AJI
AN
G 2
PW
R0
— C
N -7
2TI
AN
WA
N 3
PW
RV
VE
R V
-428
3000
1000
933
JN
PC
IZ —
CN
-73
TIA
NW
AN
4P
WR
VV
ER
V-4
2830
0010
0093
3 J
NP
CIZ
— C
N -7
4TI
AN
WA
N 5
PW
RC
NP
-100
029
0510
8010
00 J
NP
CD
FEC
— C
N -7
5TI
AN
WA
N 6
PW
RC
NP
-100
029
0510
8010
00 J
NP
CD
FEC
— C
N -4
0X
IAN
NIN
G 1
PW
R0
— C
N -4
1X
IAN
NIN
G 2
PW
R0
— C
N -8
2X
UD
AB
U 1
PW
RC
PR
-100
029
0510
8010
00 L
NP
CD
FEC
— C
N -8
3X
UD
AB
U 2
PW
RC
PR
-100
029
0510
8010
00 L
NP
CD
FEC
— C
N -4
4Y
AN
GJI
AN
G 4
PW
RC
PR
-100
029
0510
8710
00 Y
JNP
CD
FEC
— C
N -4
5Y
AN
GJI
AN
G 5
PW
RC
PR
-100
029
0510
8710
00 Y
JNP
CD
FEC
— C
N -4
6Y
AN
GJI
AN
G 6
PW
RC
PR
-100
029
0510
8710
00 Y
JNP
CD
FEC
—
IRA
N, I
SL.
RE
P.
IR -2
BU
SH
EH
R 2
PW
RV
VE
R V
-446
3000
1000
915
NP
PD
CO
TBD
201
3-7
IR -5
BU
SH
EH
R 3
PW
R-
3000
1000
915
NP
PD
CO
AS
E 2
013-
7 IR
-9D
AR
KH
OV
AIN
PW
RIR
-360
1113
360
330
NP
PD
CO
201
5-6
JA
PA
N J
P -7
6H
AM
AO
KA
-6B
WR
AB
WR
3926
1400
1350
CH
UB
U —
JP
-69
HIG
AS
HI D
OR
I 1 (T
EP
CO
)B
WR
AB
WR
3926
1385
1343
TE
PC
O —
JP
-74
HIG
AS
HI D
OR
I 2 (T
EP
CO
)B
WR
AB
WR
3926
1385
1343
TE
PC
O —
JP
-72
HIG
AS
HI D
OR
I 2 (T
OH
OK
U)
BW
RA
BW
R10
67 T
OH
OK
U —
JP
-62
KA
MIN
OS
EK
I 1B
WR
AB
WR
3926
1373
1325
CH
UG
OK
U —
JP
-63
KA
MIN
OS
EK
I 2B
WR
AB
WR
3926
1373
1325
CH
UG
OK
U —
JP
-73
NA
MIE
-OD
AK
AB
WR
BW
R82
5 T
OH
OK
U —
JP
-75
SE
ND
AI-3
PW
RA
PW
R44
6615
9015
38 K
YU
SH
U —
JP
-67
TSU
RU
GA
-3P
WR
AP
WR
4466
1590
1538
JA
PC
OM
HI
— J
P -6
8TS
UR
UG
A-4
PW
RA
PW
R44
6615
9015
38 J
AP
CO
MH
I —
KO
RE
A, R
EP
. OF
KR
-27
SH
IN-U
LCH
IN-1
PW
RA
PR
-140
039
3814
0013
40 K
HN
PD
HIC
KO
PC
—
TAB
LE 1
2. R
EAC
TOR
S PL
AN
NED
fO
R C
ON
STR
UC
TIO
N A
S K
NO
WN
ON
31
DEC
. 201
1 —
con
tinue
d
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
r
Exp
ecte
dco
nstru
ctio
nst
art
26
Cod
eN
ame
Ther
mal
Gro
ssN
et K
R -2
8S
HIN
-ULC
HIN
-2P
WR
AP
R-1
400
3983
1400
1340
KH
NP
DH
ICK
OP
C —
RU
SS
IA R
U -1
70B
ALT
IISK
-1P
WR
VV
ER
V-4
9132
0011
9411
09 R
EA
RO
SA
TOM
201
2-2
RU
-171
BA
LTIIS
K-2
PW
RV
VE
R V
-491
3200
1194
1109
RE
AR
OS
ATO
M —
RU
-202
BA
SH
KIR
-1P
WR
3200
1200
1115
RE
AR
OS
ATO
M —
RU
-203
BA
SH
KIR
-2P
WR
3200
1200
1115
RE
AR
OS
ATO
M —
RU
-177
CE
NTR
AL-
1P
WR
-32
0012
0011
15 R
EA
RO
SA
TOM
— R
U -1
78C
EN
TRA
L-2
PW
R-
3200
1200
1115
RE
AR
OS
ATO
M —
RU
-185
CE
NTR
AL-
3P
WR
3200
1200
1115
RE
AR
OS
ATO
M —
RU
-186
CE
NTR
AL-
4P
WR
3200
1200
1115
RE
AR
OS
ATO
M —
RU
-175
KO
LA 2
-1P
WR
-32
0012
0011
15 R
EA
RO
SA
TOM
— R
U -1
76K
OLA
2-2
PW
R-
3200
1200
1115
RE
AR
OS
ATO
M —
RU
-166
KU
RS
K 2
-1P
WR
-32
0012
0011
15 R
EA
RO
SA
TOM
— R
U -1
89K
UR
SK
2-2
PW
R32
0012
0011
15 R
EA
RO
SA
TOM
— R
U -1
90K
UR
SK
2-3
PW
R32
0012
0011
15 R
EA
RO
SA
TOM
— R
U -1
91K
UR
SK
2-4
PW
R32
0012
0011
15 R
EA
RO
SA
TOM
— R
U -1
65LE
NIN
GR
AD
2-3
PW
RV
VE
R V
-491
3200
1170
1085
RE
AR
OS
ATO
M —
RU
-167
LEN
ING
RA
D 2
-4P
WR
VV
ER
V-4
9132
0011
7010
85 R
EA
RO
SA
TOM
— R
U -1
81N
IZH
EG
OR
OD
SK
-1P
WR
3200
1200
1115
RE
AR
OS
ATO
M —
RU
-182
NIZ
HE
GO
RO
DS
K-2
PW
R32
0012
0011
15 R
EA
RO
SA
TOM
— R
U -1
79P
EV
EK
-1P
WR
KLT
-40S
150
3532
RE
AR
OS
ATO
M —
RU
-180
PE
VE
K-2
PW
RK
LT-4
0S15
035
32 R
EA
RO
SA
TOM
— R
U -1
96P
RIM
OR
SK
-1P
WR
3200
1200
1115
RE
AR
OS
ATO
M —
RU
-197
PR
IMO
RS
K-2
PW
R32
0012
0011
15 R
EA
RO
SA
TOM
— R
U -1
87S
EV
ER
SK
-1P
WR
3200
1200
1115
RE
AR
OS
ATO
M —
RU
-188
SE
VE
RS
K-2
PW
R32
0012
0011
15 R
EA
RO
SA
TOM
— R
U -1
98S
MO
LEN
SK
2-1
PW
R32
0012
0011
15 R
EA
RO
SA
TOM
— R
U -1
99S
MO
LEN
SK
2-2
PW
R32
0012
0011
15 R
EA
RO
SA
TOM
— R
U -2
04S
OU
TH U
RA
LS 1
PW
R30
0012
0011
15 R
EA
RO
SA
TOM
— R
U -2
05S
OU
TH U
RA
LS 2
PW
R30
0012
0011
15 R
EA
RO
SA
TOM
—
TAB
LE 1
2. R
EAC
TOR
S PL
AN
NED
fO
R C
ON
STR
UC
TIO
N A
S K
NO
WN
ON
31
DEC
. 201
1 —
con
tinue
d
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
r
Exp
ecte
dco
nstru
ctio
nst
art
27
Cod
eN
ame
Ther
mal
Gro
ssN
et R
U -2
06S
OU
TH U
RA
LS 3
PW
R30
0012
0011
15 R
EA
RO
SA
TOM
— R
U -2
00TA
TAR
-1P
WR
3200
1200
1115
RE
AR
OS
ATO
M —
RU
-201
TATA
R-2
PW
R32
0012
0011
15 R
EA
RO
SA
TOM
— R
U -1
92TV
ER
SK
-1P
WR
3200
1200
1115
RE
AR
OS
ATO
M —
RU
-193
TVE
RS
K-2
PW
R32
0012
0011
15 R
EA
RO
SA
TOM
— R
U -1
94TV
ER
SK
-3P
WR
3200
1200
1115
RE
AR
OS
ATO
M —
RU
-195
TVE
RS
K-4
PW
R32
0012
0011
15 R
EA
RO
SA
TOM
—
US
A U
S -5
039
BE
LL B
EN
DP
WR
EP
R43
0017
2016
00A
RE
VA
— U
S -5
016
CA
LVE
RT
CLI
FFS
-3P
WR
US
-EP
R43
0017
2016
00 —
US
-503
4C
OM
AN
CH
E P
EA
K-3
PW
RU
S-A
PW
R17
00 —
US
-503
5C
OM
AN
CH
E P
EA
K-4
PW
RU
S-A
PW
R17
00 —
US
-503
3E
NR
ICO
FE
RM
I-3B
WR
ES
BW
R45
0016
0015
20 —
US
-502
9LE
VY
CO
UN
TY-1
PW
RA
P-1
000
3750
1250
1117
PR
OG
RE
SS
WH
— U
S -5
030
LEV
Y C
OU
NTY
-2P
WR
AP
-100
037
5012
5011
17W
H —
US
-501
7N
OR
TH A
NN
A-3
PW
RU
S-A
PW
R15
00 —
US
-502
2S
HE
AR
ON
HA
RR
IS-2
PW
RA
P-1
000
3750
1250
1117
— U
S -5
023
SH
EA
RO
N H
AR
RIS
-3P
WR
AP
-100
037
5012
5011
17 —
US
-501
2S
OU
TH T
EX
AS
-3B
WR
AB
WR
3926
1400
1350
— U
S -5
013
SO
UTH
TE
XA
S-4
BW
RA
BW
R39
2614
0013
50 —
US
-504
0TU
RK
EY
PO
INT-
6P
WR
AP
-100
037
5012
5011
17 —
US
-504
1TU
RK
EY
PO
INT-
7P
WR
AP
-100
037
5012
5011
17 —
US
-502
7V
IRG
IL C
. SU
MM
ER
-2P
WR
AP
-100
037
5012
5011
17 —
US
-502
8V
IRG
IL C
. SU
MM
ER
-3P
WR
AP
-100
037
5012
5011
17 —
US
-502
5V
OG
TLE
-3P
WR
AP
-100
037
5012
5011
17 —
US
-502
6V
OG
TLE
-4P
WR
AP
-100
037
5012
5011
17 —
US
-501
8W
ILLI
AM
STA
TES
LE
E II
I -1
PW
RA
P-1
000
3750
1250
1117
— U
S -5
019
WIL
LIA
M S
TATE
S L
EE
III -
2P
WR
AP
-100
037
5012
5011
17 —
VIE
TNA
M V
N -1
PH
UO
C D
INH
1P
WR
1000
EV
NR
OS
ATO
M —
VN
-2P
HU
OC
DIN
H 2
PW
R10
00 E
VN
RO
SA
TOM
—
Not
e: S
tatu
s as
of 3
1 D
ecem
ber 2
011,
114
reac
tors
(117
329
MW
) w
ere
know
n as
bei
ng p
lann
ed.
TAB
LE 1
2. R
EAC
TOR
S PL
AN
NED
fO
R C
ON
STR
UC
TIO
N A
S K
NO
WN
ON
31
DEC
. 201
1 —
con
tinue
d
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
r
Exp
ecte
dco
nstru
ctio
nst
art
28
Cod
eN
ame
Ther
mal
Gro
ssN
et A
RG
EN
TIN
A A
R -3
ATU
CH
A-2
PH
WR
PH
WR
KW
U21
6074
569
2 N
AS
AS
IEM
EN
S19
81-7
—20
12-7
—
BU
LGA
RIA
BG
-7B
ELE
NE
-1P
WR
VV
ER
V-4
6630
0010
0095
3 K
OZN
PP
AS
E19
87-1
——
— B
G -8
BE
LEN
E-2
PW
RV
VE
R V
-466
3000
1000
953
KO
ZNP
PA
SE
1987
-3—
——
BR
AZI
L B
R -3
AN
GR
A-3
PW
RP
RE
KO
NV
OI
3765
1350
1245
ELE
TRO
NU
KW
U20
10-6
——
2016
-1
CH
INA
CN
-51
CH
AN
GJI
AN
G 1
PW
RC
NP
-600
1930
650
610
HN
PC
DFE
C20
10-4
——
— C
N -5
2C
HA
NG
JIA
NG
2P
WR
CN
P-6
0019
3065
061
0 H
NP
CD
FEC
2010
-11
——
2015
-12
CN
-55
FAN
GC
HE
NG
GA
NG
1P
WR
CP
R-1
000
2905
1087
1000
GFN
PC
DFE
C20
10-7
——
— C
N -5
6FA
NG
CH
EN
GG
AN
G 2
PW
RC
PR
-100
029
0510
8710
00 G
FNP
CD
FEC
2010
-12
——
— C
N -2
8FA
NG
JIA
SH
AN
1P
WR
CN
P-1
000
2905
1087
1000
QN
PC
DFE
C20
08-1
2—
——
CN
-29
FAN
GJI
AS
HA
N 2
PW
RC
NP
-100
029
0510
8710
00 Q
NP
CD
FEC
2009
-7—
——
CN
-30
FUQ
ING
1P
WR
CP
R-1
000
2905
1087
1000
FQ
NP
DFE
C20
08-1
1—
——
CN
-31
FUQ
ING
2P
WR
CP
R-1
000
2905
1087
1000
FQ
NP
DFE
C20
09-6
——
— C
N -4
7FU
QIN
G 3
PW
RC
PR
-100
029
0510
8710
00 F
QN
PD
FEC
2010
-12
——
2015
-7 C
N -2
4H
AIY
AN
G 1
PW
RA
P-1
000
3750
1250
1000
SN
PC
WH
2009
-9—
——
CN
-25
HA
IYA
NG
2P
WR
AP
-100
037
5012
5010
00 S
NP
CW
H20
10-6
——
— C
N -2
0H
ON
GY
AN
HE
1P
WR
CP
R-1
000
2905
1080
1000
LH
NP
CD
FEC
2007
-8—
——
CN
-21
HO
NG
YA
NH
E 2
PW
RC
PR
-100
029
0510
8010
00 L
HN
PC
DFE
C20
08-3
——
— C
N -2
2H
ON
GY
AN
HE
3P
WR
CP
R-1
000
2905
1080
1000
LH
NP
CD
FEC
2009
-3—
——
CN
-23
HO
NG
YA
NH
E 4
PW
RC
PR
-100
029
0510
8010
00 L
HN
PC
DFE
C20
09-8
——
— C
N -3
6N
ING
DE
1P
WR
CP
R-1
000
2905
1087
1000
ND
NP
CD
FEC
2008
-2—
——
CN
-37
NIN
GD
E 2
PW
RC
PR
-100
029
0510
8010
00 N
DN
PC
DFE
C20
08-1
1—
——
CN
-38
NIN
GD
E 3
PW
RC
PR
-100
029
0510
8010
00 N
DN
PC
DFE
C20
10-1
——
— C
N -3
9N
ING
DE
4P
WR
CP
R-1
000
2905
1080
1000
ND
NP
CD
FEC
2010
-9—
——
CN
-16
SA
NM
EN
1P
WR
AP
-100
037
5012
5010
00 S
MN
PC
WH
/MH
I20
09-4
——
— C
N -1
7S
AN
ME
N 2
PW
RA
P-1
000
3750
1250
1000
SM
NP
CW
H/M
HI
2009
-12
——
— C
N -3
4TA
ISH
AN
1P
WR
EP
R-1
700
4500
1750
1700
TN
PC
AR
EV
A20
09-1
0—
——
Ope
rato
r
TAB
LE 1
3. R
EAC
TOR
S U
ND
ER C
ON
STR
UC
TIO
N, 3
1 D
EC. 2
011
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Com
mer
cial
oper
atio
nN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Firs
tcr
itica
lity
29
Cod
eN
ame
Ther
mal
Gro
ssN
et C
N -3
5TA
ISH
AN
2P
WR
EP
R-1
700
4500
1750
1700
TN
PC
AR
EV
A20
10-4
——
— C
N -1
8Y
AN
GJI
AN
G 1
PW
RC
PR
-100
029
0510
8710
00 Y
JNP
CD
FEC
2008
-12
——
— C
N -1
9Y
AN
GJI
AN
G 2
PW
RC
PR
-100
029
0510
8710
00 Y
JNP
CD
FEC
2009
-6—
——
CN
-43
YA
NG
JIA
NG
3P
WR
CP
R-1
000
2905
1087
1000
YJN
PC
DFE
C20
10-1
1—
——
FIN
LAN
D F
I -5
OLK
ILU
OTO
-3P
WR
EP
R43
0017
2016
00 T
VO
AR
EV
A20
05-8
——
2013
-8
FR
AN
CE
FR
-74
FLA
MA
NV
ILLE
-3P
WR
EP
R43
0016
5016
00 E
DF
AR
EV
A20
07-1
220
16-1
220
16-1
2—
IND
IA IN
-30
KA
KR
AP
AR
-3P
HW
RP
HW
R-7
0021
6670
063
0 N
PC
ILN
PC
IL20
10-1
120
14-1
220
15-3
2015
-6 IN
-31
KA
KR
AP
AR
-4P
HW
RP
HW
R-7
0021
6670
063
0 N
PC
ILN
PC
IL20
10-1
120
15-6
2015
-920
15-1
2 IN
-25
KU
DA
NK
ULA
M-1
PW
RV
VE
R V
-412
3000
1000
917
NP
CIL
MA
EP
2002
-3—
——
IN -2
6K
UD
AN
KU
LAM
-2P
WR
VV
ER
V-4
1230
0010
0091
7 N
PC
ILM
AE
P20
02-7
2012
-620
12-7
2012
-8 IN
-29
PFB
RFB
R12
5350
047
0 B
HA
VIN
I20
04-1
0—
——
IN -2
1R
AJA
STH
AN
-7P
HW
RH
oriz
onta
l Pre
2177
700
630
NP
CIL
NP
CIL
2011
-720
15-1
220
16-3
2016
-6 IN
-22
RA
JAS
THA
N-8
PH
WR
Hor
izon
tal P
re21
7770
063
0 N
PC
ILN
PC
IL20
11-9
2016
-620
16-9
2016
-12
JA
PA
N J
P -6
6O
HM
AB
WR
AB
WR
3926
1383
1325
EP
DC
H/G
2010
-5—
—20
14-1
1 J
P -6
5S
HIM
AN
E-3
BW
RA
BW
R39
2613
7313
25 C
HU
GO
KU
HIT
AC
HI
2007
-10
——
—
KO
RE
A, R
EP
. OF
KR
-22
SH
IN-K
OR
I-2P
WR
OP
R-1
000
2825
1000
960
KH
NP
DH
ICK
OP
C20
07-6
2011
-12
2012
-1—
KR
-25
SH
IN-K
OR
I-3P
WR
AP
R-1
400
3983
1400
1340
KH
NP
DH
ICK
OP
C20
08-1
0—
—20
13-9
KR
-26
SH
IN-K
OR
I-4P
WR
AP
R-1
400
3938
1400
1340
KH
NP
DH
ICK
OP
C20
09-8
——
2014
-9 K
R -2
3S
HIN
-WO
LSO
NG
-1P
WR
OP
R-1
000
2825
1000
960
KH
NP
DH
ICK
OP
C20
07-1
120
12-1
2012
-1—
KR
-24
SH
IN-W
OLS
ON
G-2
PW
RO
PR
-100
028
2510
0096
0 K
HN
PD
HIC
KO
PC
2008
-9—
——
PA
KIS
TAN
PK
-4C
HA
SN
UP
P 3
PW
RC
NP
-300
999
340
315
PA
EC
CZE
C20
11-5
2016
-820
16-9
2016
-12
PK
-5C
HA
SN
UP
P 4
PW
RC
NP
-300
999
340
315
PA
EC
CZE
C20
11-1
220
17-6
2017
-720
17-1
0
RU
SS
IA R
U -1
51A
KA
DE
MIK
LO
MO
NO
SO
V 1
PW
RK
LT-4
0S 'F
loat
150
3532
RE
AR
OS
ATO
M20
07-4
——
2013
-12
TAB
LE 1
3. R
EAC
TOR
S U
ND
ER C
ON
STR
UC
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tFi
rst
criti
calit
yG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
30
Cod
eN
ame
Ther
mal
Gro
ssN
et R
U -1
52A
KA
DE
MIK
LO
MO
NO
SO
V 2
PW
RK
LT-4
0S 'F
loat
150
3532
RE
AR
OS
ATO
M20
07-4
——
2013
-12
RU
-116
BE
LOY
AR
SK
Y-4
(BN
-800
)FB
RB
N-8
0021
0086
478
9 R
EA
RO
SA
TOM
2006
-7—
——
RU
-120
KU
RS
K-5
LWG
RR
BM
K-1
000
3200
1000
915
RE
AR
OS
ATO
M19
85-1
2—
——
RU
-163
LEN
ING
RA
D 2
-1P
WR
VV
ER
V-4
9132
0011
7010
85 R
EA
RO
SA
TOM
2008
-10
——
— R
U -1
64LE
NIN
GR
AD
2-2
PW
RV
VE
R V
-491
3200
1170
1085
RE
AR
OS
ATO
M20
10-4
——
— R
U -1
61N
OV
OV
OR
ON
EZH
2-1
PW
RV
VE
R V
-392
M32
0012
0011
14 R
EA
RO
SA
TOM
2008
-6—
—20
13-1
2 R
U -1
62N
OV
OV
OR
ON
EZH
2-2
PW
RV
VE
R V
-392
M32
0012
0011
14 R
EA
RO
SA
TOM
2009
-7—
——
RU
-63
RO
STO
V-3
PW
RV
VE
R V
-320
3000
1070
1011
RE
AR
OS
ATO
M20
09-9
——
— R
U -6
4R
OS
TOV
-4P
WR
VV
ER
V-3
2030
0010
7010
11 R
EA
RO
SA
TOM
2010
-6—
——
SLO
VA
KIA
SK
-10
MO
CH
OV
CE
-3P
WR
VV
ER
V-2
1313
7544
039
1 E
MO
SK
OD
A19
87-1
2012
-12
2012
-12
2013
-2 S
K -1
1M
OC
HO
VC
E-4
PW
RV
VE
R V
-213
1375
440
391
EM
OS
KO
DA
1987
-120
13-8
2013
-920
13-1
0
UK
RA
INE
UA
-51
KH
ME
LNIT
SK
I-3P
WR
VV
ER
V-3
92B
3200
1000
950
NN
EG
CA
SE
1986
-3—
2015
-1—
UA
-52
KH
ME
LNIT
SK
I-4P
WR
VV
ER
V-3
92B
3200
1000
950
NN
EG
CA
SE
1987
-2—
2016
-1—
US
A U
S -3
91W
ATT
S B
AR
-2P
WR
W (4
-loop
) (IC
3425
1218
1165
TV
AW
H19
72-1
2—
2012
-8—
Not
e: S
tatu
s as
of 3
1 D
ecem
ber 2
011,
65
reac
tors
(619
62 M
W)
wer
e un
der c
onst
ruct
ion,
incl
udin
g 2
units
(260
0 M
W) i
n Ta
iwan
, Chi
na:
TAIW
AN
, CN
TW
-7LU
NG
ME
N 1
BW
RA
BW
R39
2613
5013
00 T
PC
GE
1999
-3—
——
TAIW
AN
, CN
TW
-8LU
NG
ME
N 2
BW
RA
BW
R39
2613
5013
00 T
PC
GE
1999
-8—
——
TAB
LE 1
3. R
EAC
TOR
S U
ND
ER C
ON
STR
UC
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tFi
rst
criti
calit
yG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
31
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s A
RG
EN
TIN
A A
R -1
ATU
CH
A-1
PH
WR
PH
WR
KW
U11
7935
733
5 N
AS
AS
IEM
EN
S19
68-6
1974
-319
74-6
87.4
87.6
- A
R -2
EM
BA
LSE
PH
WR
CA
ND
U 6
2015
648
600
NA
SA
AE
CL
1974
-419
83-4
1984
-180
.180
.2-
AR
ME
NIA
AM
-19
AR
ME
NIA
-2P
WR
VV
ER
V-2
7013
7540
837
5 A
NP
PJS
CFA
EA
1975
-719
80-1
1980
-571
.272
.3-
BE
LGIU
M B
E -2
DO
EL-
1P
WR
WE
(2 lo
ops)
1311
454
433
ELE
CTR
AB
AC
EC
OW
EN
1969
-719
74-8
1975
-284
.984
.9-
BE
-4D
OE
L-2
PW
RW
E (2
loop
s)13
1145
443
3 E
LEC
TRA
BA
CE
CO
WE
N19
71-9
1975
-819
75-1
290
.790
.7-
BE
-5D
OE
L-3
PW
RW
E 3
-loop
s30
5410
5610
06 E
LEC
TRA
BFR
AM
AC
EC
1975
-119
82-6
1982
-10
86.8
87.1
- B
E -7
DO
EL-
4P
WR
WE
3-lo
ops
2988
1090
1039
ELE
CTR
AB
AC
EC
OW
EN
1978
-12
1985
-419
85-7
86.4
86.4
- B
E -3
TIH
AN
GE
-1P
WR
Fram
atom
e 3
lo28
7310
0996
2 E
LEC
TRA
BA
CLF
1970
-619
75-3
1975
-10
87.1
88.1
- B
E -6
TIH
AN
GE
-2P
WR
WE
3-lo
ops
3064
1055
1008
ELE
CTR
AB
FRA
MA
CE
C19
76-4
1982
-10
1983
-689
.890
.1-
BE
-8TI
HA
NG
E-3
PW
RW
E 3
-loop
s30
0010
9410
46 E
LEC
TRA
BA
CE
CO
WE
N19
78-1
119
85-6
1985
-988
.388
.9-
BR
AZI
L B
R -1
AN
GR
A-1
PW
R2-
loop
WE
1882
640
609
ELE
TRO
NU
WH
1971
-519
82-4
1985
-173
.073
.1-
BR
-2A
NG
RA
-2P
WR
PR
E K
ON
VO
I37
6413
5012
75 E
LETR
ON
UK
WU
1976
-120
00-7
2001
-290
.390
.9-
BU
LGA
RIA
BG
-5K
OZL
OD
UY
-5P
WR
VV
ER
V-3
2030
0010
0095
3 K
OZN
PP
AE
E19
80-7
1987
-11
1988
-12
86.3
86.7
DH
BG
-6K
OZL
OD
UY
-6P
WR
VV
ER
V-3
2030
0010
0095
3 K
OZN
PP
AE
E19
82-4
1991
-819
93-1
286
.186
.7D
H
CA
NA
DA
CA
-10
BR
UC
E-3
PH
WR
CA
ND
U 7
50A
2832
805
730
BR
UC
EP
OW
OH
/AE
CL
1972
-719
77-1
219
78-2
76.6
77.2
- C
A -1
1B
RU
CE
-4P
HW
RC
AN
DU
750
A28
3280
573
0 B
RU
CE
PO
WO
H/A
EC
L19
72-9
1978
-12
1979
-186
.987
.4-
CA
-18
BR
UC
E-5
PH
WR
CA
ND
U 7
50B
2832
872
817
BR
UC
EP
OW
OH
/AE
CL
1978
-619
84-1
219
85-3
90.7
91.0
- C
A -1
9B
RU
CE
-6P
HW
RC
AN
DU
750
B26
9089
181
7 B
RU
CE
PO
WO
H/A
EC
L19
78-1
1984
-619
84-9
85.8
85.9
- C
A -2
0B
RU
CE
-7P
HW
RC
AN
DU
750
B28
3287
281
7 B
RU
CE
PO
WO
H/A
EC
L19
79-5
1986
-219
86-4
89.9
90.0
- C
A -2
1B
RU
CE
-8P
HW
RC
AN
DU
750
B26
9084
581
7 B
RU
CE
PO
WO
H/A
EC
L19
79-8
1987
-319
87-5
91.7
91.9
- C
A -2
2D
AR
LIN
GTO
N-1
PH
WR
CA
ND
U 8
5027
7693
487
8 O
PG
OH
/AE
CL
1982
-419
90-1
219
92-1
188
.589
.6-
CA
-23
DA
RLI
NG
TON
-2P
HW
RC
AN
DU
850
2776
934
878
OP
GO
H/A
EC
L19
81-9
1990
-119
90-1
089
.590
.4-
CA
-24
DA
RLI
NG
TON
-3P
HW
RC
AN
DU
850
2776
934
878
OP
GO
H/A
EC
L19
84-9
1992
-12
1993
-292
.593
.4-
CA
-25
DA
RLI
NG
TON
-4P
HW
RC
AN
DU
850
2776
934
878
OP
GO
H/A
EC
L19
85-7
1993
-419
93-6
87.8
88.6
-
Not
e: T
he c
olum
n "N
on-e
lect
rical
app
licat
ions
" ind
icat
es th
e us
e of
the
faci
lity
to p
rovi
de: D
H d
istri
ct h
eatin
g.
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
Grid
conn
ectio
nC
omm
erci
alop
erat
ion
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
Sta
rtC
ount
ryR
eact
orTy
peM
odel
Cap
acity
(MW
)
32
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s C
A -1
2G
EN
TILL
Y-2
PH
WR
CA
ND
U 6
2156
675
635
HQ
AE
CL
1974
-419
82-1
219
83-1
066
.769
.6-
CA
-4P
ICK
ER
ING
-1P
HW
RC
AN
DU
500
A17
4454
251
5 O
PG
OH
/AE
CL
1966
-619
71-4
1971
-765
.265
.4-
CA
-7P
ICK
ER
ING
-4P
HW
RC
AN
DU
500
A17
4454
251
5 O
PG
OH
/AE
CL
1968
-519
73-5
1973
-656
.957
.1-
CA
-13
PIC
KE
RIN
G-5
PH
WR
CA
ND
U 5
00B
1744
540
516
OP
GO
H/A
EC
L19
74-1
119
82-1
219
83-5
68.6
69.3
- C
A -1
4P
ICK
ER
ING
-6P
HW
RC
AN
DU
500
B17
4454
051
6 O
PG
OH
/AE
CL
1975
-10
1983
-11
1984
-280
.280
.5-
CA
-15
PIC
KE
RIN
G-7
PH
WR
CA
ND
U 5
00B
1744
540
516
OP
GO
H/A
EC
L19
76-3
1984
-11
1985
-174
.274
.5-
CA
-16
PIC
KE
RIN
G-8
PH
WR
CA
ND
U 5
00B
1744
540
516
OP
GO
H/A
EC
L19
76-9
1986
-119
86-2
79.7
80.5
- C
A -1
7P
OIN
T LE
PR
EA
UP
HW
RC
AN
DU
621
8068
063
5 N
BE
PC
AE
CL
1975
-519
82-9
1983
-222
.022
.0-
CH
INA
CN
-84
CE
FRFB
RB
N-2
065
2520
CIA
EIZ
2000
-520
11-7
—-
CN
-2G
UA
NG
DO
NG
-1P
WR
M31
029
0598
494
4 G
NP
JVC
FRA
M19
87-8
1993
-819
94-2
94.2
94.2
- C
N -3
GU
AN
GD
ON
G-2
PW
RM
310
2905
984
944
GN
PJV
CFR
AM
1988
-419
94-2
1994
-590
.890
.8-
CN
-6LI
NG
AO
1P
WR
M31
029
0599
093
8 L
AN
PC
FRA
M19
97-5
2002
-220
02-5
89.9
90.1
- C
N -7
LIN
GA
O 2
PW
RM
310
2905
990
938
LA
NP
CFR
AM
1997
-11
2002
-12
2003
-189
.789
.7-
CN
-12
LIN
GA
O 3
PW
RC
PR
-100
029
0510
8010
07 L
DN
PC
DFE
C20
05-1
220
10-7
2010
-973
.273
.2-
CN
-13
LIN
GA
O 4
PW
RC
PR
-100
029
0510
8010
07 L
DN
PC
DFE
C20
06-6
2011
-520
11-8
99.5
99.5
- C
N -1
QIN
SH
AN
1P
WR
CN
P-3
0096
631
029
8 Q
NP
CC
NN
C19
85-3
1991
-12
1994
-487
.287
.3-
CN
-4Q
INS
HA
N 2
-1P
WR
CN
P-6
0019
3065
061
0 N
PQ
JVC
CN
NC
1996
-620
02-2
2002
-479
.579
.5-
CN
-5Q
INS
HA
N 2
-2P
WR
CN
P-6
0019
3065
061
0 N
PQ
JVC
CN
NC
1997
-420
04-3
2004
-587
.887
.9-
CN
-14
QIN
SH
AN
2-3
PW
RC
NP
-600
1930
650
610
NP
QJV
CC
NN
C20
06-3
2010
-820
10-1
083
.183
.1-
CN
-15
QIN
SH
AN
2-4
PW
RC
NP
600
1930
650
610
NP
QJV
CC
NN
C20
07-1
2011
-11
2011
-12
- C
N -8
QIN
SH
AN
3-1
PH
WR
CA
ND
U 6
2064
700
650
TQ
NP
CA
EC
L19
98-6
2002
-11
2002
-12
90.3
90.4
- C
N -9
QIN
SH
AN
3-2
PH
WR
CA
ND
U 6
2064
700
650
TQ
NP
CA
EC
L19
98-9
2003
-620
03-7
92.5
92.7
- C
N -1
0TI
AN
WA
N 1
PW
RV
VE
R V
-428
3000
1060
990
JN
PC
IZ19
99-1
020
06-5
2007
-580
.180
.1-
CN
-11
TIA
NW
AN
2P
WR
VV
ER
V-4
2830
0010
6099
0 J
NP
CIZ
2000
-10
2007
-520
07-8
84.2
84.2
-
CZE
CH
RE
P.
CZ
-4D
UK
OV
AN
Y-1
PW
RV
VE
R V
-213
1375
498
471
CE
ZS
KO
DA
1979
-119
85-2
1985
-587
.287
.4-
CZ
-5D
UK
OV
AN
Y-2
PW
RV
VE
R V
-213
1375
456
427
CE
ZS
KO
DA
1979
-119
86-1
1986
-388
.889
.3-
CZ
-8D
UK
OV
AN
Y-3
PW
RV
VE
R V
-213
1444
498
471
CE
ZS
KO
DA
1979
-319
86-1
119
86-1
285
.386
.0-
CZ
-9D
UK
OV
AN
Y-4
PW
RV
VE
R V
-213
1375
498
471
CE
ZS
KO
DA
1979
-319
87-6
1987
-785
.285
.8-
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
33
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s C
Z -2
3TE
ME
LIN
-1P
WR
VV
ER
V-3
2030
0010
1396
3 C
EZ
SK
OD
A19
87-2
2000
-12
2002
-668
.868
.9D
H C
Z -2
4TE
ME
LIN
-2P
WR
VV
ER
V-3
2030
0010
1396
3 C
EZ
SK
OD
A19
87-2
2002
-12
2003
-478
.779
.2D
H
FIN
LAN
D F
I -1
LOV
IISA
-1P
WR
VV
ER
V-2
1315
0051
048
8 F
OR
TUM
PH
AE
E19
71-5
1977
-219
77-5
91.7
92.1
- F
I -2
LOV
IISA
-2P
WR
VV
ER
V-2
1315
0051
048
8 F
OR
TUM
PH
AE
E19
72-8
1980
-11
1981
-192
.793
.4-
FI -
3O
LKIL
UO
TO-1
BW
RB
WR
-250
025
0091
088
0 T
VO
AS
EA
STA
L19
74-2
1978
-919
79-1
094
.695
.1-
FI -
4O
LKIL
UO
TO-2
BW
RB
WR
-250
025
0091
088
0 T
VO
AS
EA
STA
L19
75-1
119
80-2
1982
-793
.794
.4-
FR
AN
CE
FR
-54
BE
LLE
VIL
LE-1
PW
RP
4 R
EP
130
038
1713
6313
10 E
DF
FRA
M19
80-5
1987
-10
1988
-670
.671
.6-
FR
-55
BE
LLE
VIL
LE-2
PW
RP
4 R
EP
130
038
1713
6313
10 E
DF
FRA
M19
80-8
1988
-719
89-1
80.5
83.3
- F
R -3
2B
LAY
AIS
-1P
WR
CP
127
8595
191
0 E
DF
FRA
M19
77-1
1981
-619
81-1
279
.483
.3-
FR
-33
BLA
YA
IS-2
PW
RC
P1
2785
951
910
ED
FFR
AM
1977
-119
82-7
1983
-279
.682
.0-
FR
-34
BLA
YA
IS-3
PW
RC
P1
2785
951
910
ED
FFR
AM
1978
-419
83-8
1983
-11
84.3
87.3
- F
R -3
5B
LAY
AIS
-4P
WR
CP
127
8595
191
0 E
DF
FRA
M19
78-4
1983
-519
83-1
078
.881
.8-
FR
-13
BU
GE
Y-2
PW
RC
P0
2785
945
910
ED
FFR
AM
1972
-11
1978
-519
79-3
73.8
76.1
- F
R -1
4B
UG
EY
-3P
WR
CP
027
8594
591
0 E
DF
FRA
M19
73-9
1978
-919
79-3
56.3
61.5
- F
R -1
5B
UG
EY
-4P
WR
CP
027
8591
788
0 E
DF
FRA
M19
74-6
1979
-319
79-7
71.8
73.8
- F
R -1
6B
UG
EY
-5P
WR
CP
027
8591
788
0 E
DF
FRA
M19
74-7
1979
-719
80-1
73.9
77.8
- F
R -5
0C
ATT
EN
OM
-1P
WR
P4
RE
P 1
300
3817
1362
1300
ED
FFR
AM
1979
-10
1986
-11
1987
-484
.987
.4-
FR
-53
CA
TTE
NO
M-2
PW
RP
4 R
EP
130
038
1713
6213
00 E
DF
FRA
M19
80-7
1987
-919
88-2
78.8
81.8
- F
R -6
0C
ATT
EN
OM
-3P
WR
P4
RE
P 1
300
3817
1362
1300
ED
FFR
AM
1982
-619
90-7
1991
-277
.478
.8-
FR
-65
CA
TTE
NO
M-4
PW
RP
4 R
EP
130
038
1713
6213
00 E
DF
FRA
M19
83-9
1991
-519
92-1
83.7
85.8
- F
R -4
0C
HIN
ON
-B-1
PW
RC
P2
2785
954
905
ED
FFR
AM
1977
-319
82-1
119
84-2
65.2
70.9
- F
R -4
1C
HIN
ON
-B-2
PW
RC
P2
2785
954
905
ED
FFR
AM
1977
-319
83-1
119
84-8
75.8
77.6
- F
R -5
6C
HIN
ON
-B-3
PW
RC
P2
2785
954
905
ED
FFR
AM
1980
-10
1986
-10
1987
-372
.775
.2-
FR
-57
CH
INO
N-B
-4P
WR
CP
227
8595
490
5 E
DF
FRA
M19
81-2
1987
-11
1988
-473
.778
.2-
FR
-62
CH
OO
Z-B
-1P
WR
N4
RE
P 1
450
4270
1560
1500
ED
FFR
AM
1984
-119
96-8
2000
-577
.578
.8-
FR
-70
CH
OO
Z-B
-2P
WR
N4
RE
P 1
450
4270
1560
1500
ED
FFR
AM
1985
-12
1997
-420
00-9
81.4
84.1
- F
R -7
2C
IVA
UX
-1P
WR
N4
RE
P 1
450
4270
1561
1495
ED
FFR
AM
1988
-10
1997
-12
2002
-173
.574
.6-
FR
-73
CIV
AU
X-2
PW
RN
4 R
EP
145
042
7015
6114
95 E
DF
FRA
M19
91-4
1999
-12
2002
-484
.487
.2-
Not
e: T
he c
olum
n "N
on-e
lect
rical
app
licat
ions
" ind
icat
es th
e us
e of
the
faci
lity
to p
rovi
de: D
H d
istri
ct h
eatin
g.
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
34
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s F
R -4
2C
RU
AS
-1P
WR
CP
227
8595
691
5 E
DF
FRA
M19
78-8
1983
-419
84-4
70.7
74.9
- F
R -4
3C
RU
AS
-2P
WR
CP
227
8595
691
5 E
DF
FRA
M19
78-1
119
84-9
1985
-468
.272
.0-
FR
-44
CR
UA
S-3
PW
RC
P2
2785
956
915
ED
FFR
AM
1979
-419
84-5
1984
-974
.476
.4-
FR
-45
CR
UA
S-4
PW
RC
P2
2785
956
915
ED
FFR
AM
1979
-10
1984
-10
1985
-274
.376
.8-
FR
-22
DA
MP
IER
RE
-1P
WR
CP
127
8593
789
0 E
DF
FRA
M19
75-2
1980
-319
80-9
78.3
81.4
- F
R -2
9D
AM
PIE
RR
E-2
PW
RC
P1
2785
937
890
ED
FFR
AM
1975
-419
80-1
219
81-2
83.5
85.5
- F
R -3
0D
AM
PIE
RR
E-3
PW
RC
P1
2785
937
890
ED
FFR
AM
1975
-919
81-1
1981
-580
.482
.3-
FR
-31
DA
MP
IER
RE
-4P
WR
CP
127
8593
789
0 E
DF
FRA
M19
75-1
219
81-8
1981
-11
79.4
82.0
- F
R -1
1FE
SS
EN
HE
IM-1
PW
RC
P0
2660
920
880
ED
FFR
AM
1971
-919
77-4
1978
-166
.867
.8-
FR
-12
FES
SE
NH
EIM
-2P
WR
CP
026
6092
088
0 E
DF
FRA
M19
72-2
1977
-10
1978
-457
.359
.5-
FR
-46
FLA
MA
NV
ILLE
-1P
WR
P4
RE
P 1
300
3817
1382
1330
ED
FFR
AM
1979
-12
1985
-12
1986
-12
71.5
73.5
- F
R -4
7FL
AM
AN
VIL
LE-2
PW
RP
4 R
EP
130
038
1713
8213
30 E
DF
FRA
M19
80-5
1986
-719
87-3
74.3
77.2
- F
R -6
1G
OLF
EC
H-1
PW
RP
4 R
EP
130
038
1713
6313
10 E
DF
FRA
M19
82-1
119
90-6
1991
-288
.590
.1-
FR
-68
GO
LFE
CH
-2P
WR
P4
RE
P 1
300
3817
1363
1310
ED
FFR
AM
1984
-10
1993
-619
94-3
85.5
87.3
- F
R -2
0G
RA
VE
LIN
ES
-1P
WR
CP
127
8595
191
0 E
DF
FRA
M19
75-2
1980
-319
80-1
175
.176
.8-
FR
-21
GR
AV
ELI
NE
S-2
PW
RC
P1
2785
951
910
ED
FFR
AM
1975
-319
80-8
1980
-12
80.7
82.3
- F
R -2
7G
RA
VE
LIN
ES
-3P
WR
CP
127
8595
191
0 E
DF
FRA
M19
75-1
219
80-1
219
81-6
74.6
76.5
- F
R -2
8G
RA
VE
LIN
ES
-4P
WR
CP
127
8595
191
0 E
DF
FRA
M19
76-4
1981
-619
81-1
083
.384
.6-
FR
-51
GR
AV
ELI
NE
S-5
PW
RC
P1
2785
951
910
ED
FFR
AM
1979
-10
1984
-819
85-1
83.3
84.9
- F
R -5
2G
RA
VE
LIN
ES
-6P
WR
CP
127
8595
191
0 E
DF
FRA
M19
79-1
019
85-8
1985
-10
79.6
80.0
- F
R -5
8N
OG
EN
T-1
PW
RP
4 R
EP
130
038
1713
6313
10 E
DF
FRA
M19
81-5
1987
-10
1988
-283
.186
.5-
FR
-59
NO
GE
NT-
2P
WR
P4
RE
P 1
300
3817
1363
1310
ED
FFR
AM
1982
-119
88-1
219
89-5
75.6
76.8
- F
R -3
6P
ALU
EL-
1P
WR
P4
RE
P 1
300
3817
1382
1330
ED
FFR
AM
1977
-819
84-6
1985
-12
79.8
84.9
- F
R -3
7P
ALU
EL-
2P
WR
P4
RE
P 1
300
3817
1382
1330
ED
FFR
AM
1978
-119
84-9
1985
-12
81.3
83.4
- F
R -3
8P
ALU
EL-
3P
WR
P4
RE
P 1
300
3817
1382
1330
ED
FFR
AM
1979
-219
85-9
1986
-262
.564
.6-
FR
-39
PA
LUE
L-4
PW
RP
4 R
EP
130
038
1713
8213
30 E
DF
FRA
M19
80-2
1986
-419
86-6
77.5
79.3
- F
R -6
3P
EN
LY-1
PW
RP
4 R
EP
130
038
1713
8213
30 E
DF
FRA
M19
82-9
1990
-519
90-1
277
.778
.4-
FR
-64
PE
NLY
-2P
WR
P4
RE
P 1
300
3817
1382
1330
ED
FFR
AM
1984
-819
92-2
1992
-11
85.1
87.0
- F
R -4
8S
T. A
LBA
N-1
PW
RP
4 R
EP
130
038
1713
8113
35 E
DF
FRA
M19
79-1
1985
-819
86-5
65.0
66.4
- F
R -4
9S
T. A
LBA
N-2
PW
RP
4 R
EP
130
038
1713
8113
35 E
DF
FRA
M19
79-7
1986
-719
87-3
79.0
81.4
-
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
35
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s F
R -1
7S
T. L
AU
RE
NT-
B-1
PW
RC
P2
2785
956
915
ED
FFR
AM
1976
-519
81-1
1983
-881
.385
.1-
FR
-23
ST.
LA
UR
EN
T-B
-2P
WR
CP
227
8595
691
5 E
DF
FRA
M19
76-7
1981
-619
83-8
77.6
80.7
- F
R -1
8TR
ICA
STI
N-1
PW
RC
P1
2785
955
915
ED
FFR
AM
1974
-11
1980
-519
80-1
278
.580
.6-
FR
-19
TRIC
AS
TIN
-2P
WR
CP
127
8595
591
5 E
DF
FRA
M19
74-1
219
80-8
1980
-12
74.9
77.0
- F
R -2
5TR
ICA
STI
N-3
PW
RC
P1
2785
955
915
ED
FFR
AM
1975
-419
81-2
1981
-578
.379
.6-
FR
-26
TRIC
AS
TIN
-4P
WR
CP
127
8595
591
5 E
DF
FRA
M19
75-5
1981
-619
81-1
183
.284
.9-
GE
RM
AN
Y D
E -3
2B
RO
KD
OR
F (K
BR
)P
WR
PW
R39
0014
8014
10 E
.ON
KW
U19
76-1
1986
-10
1986
-12
91.0
91.2
- D
E -3
3E
MS
LAN
D (K
KE
)P
WR
Kon
voi
3850
1400
1329
KLE
KW
U19
82-8
1988
-419
88-6
94.1
94.2
- D
E -2
3G
RA
FEN
RH
EIN
FELD
(KK
G)
PW
RP
WR
3765
1345
1275
E.O
NK
WU
1975
-119
81-1
219
82-6
84.2
84.3
- D
E -2
7G
RO
HN
DE
(KW
G)
PW
RP
WR
3900
1430
1360
KW
GK
WU
1976
-619
84-9
1985
-290
.191
.4-
DE
-26
GU
ND
RE
MM
ING
EN
-B (G
UN
-B)
BW
RB
WR
-72
3840
1344
1284
KG
GK
WU
1976
-719
84-3
1984
-788
.989
.1-
DE
-28
GU
ND
RE
MM
ING
EN
-C (G
UN
-C)
BW
RB
WR
-72
3840
1344
1288
KG
GK
WU
1976
-719
84-1
119
85-1
88.3
88.4
- D
E -3
1IS
AR
-2 (K
KI 2
)P
WR
Kon
voi
3950
1485
1410
E.O
NK
WU
1982
-919
88-1
1988
-493
.893
.9-
DE
-44
NE
CK
AR
WE
STH
EIM
-2 (G
KN
2)
PW
RK
onvo
i38
5014
0013
10 E
nKK
KW
U19
82-1
119
89-1
1989
-492
.592
.8-
DE
-24
PH
ILIP
PS
BU
RG
-2 (K
KP
2)
PW
RP
WR
3950
1468
1402
EnK
KK
WU
1977
-719
84-1
219
85-4
90.7
91.9
-
HU
NG
AR
Y H
U -1
PA
KS
-1P
WR
VV
ER
V-2
1314
8550
047
0 P
AK
S Z
rtA
EE
1974
-819
82-1
219
83-8
86.7
86.7
- H
U -2
PA
KS
-2P
WR
VV
ER
V-2
1314
8550
047
3 P
AK
S Z
rtA
EE
1974
-819
84-9
1984
-11
87.6
87.6
DH
HU
-3P
AK
S-3
PW
RV
VE
R V
-213
1485
500
473
PA
KS
Zrt
AE
E19
79-1
019
86-9
1986
-12
88.2
88.2
DH
HU
-4P
AK
S-4
PW
RV
VE
R V
-213
1485
500
473
PA
KS
Zrt
AE
E19
79-1
019
87-8
1987
-11
88.3
88.3
DH
IND
IA IN
-13
KA
IGA
-1P
HW
RH
oriz
onta
l Pre
801
220
202
NP
CIL
NP
CIL
1989
-920
00-1
020
00-1
157
.690
.0-
IN -1
4K
AIG
A-2
PH
WR
Hor
izon
tal P
re80
122
020
2 N
PC
ILN
PC
IL19
89-1
219
99-1
220
00-3
56.4
92.6
- IN
-15
KA
IGA
-3P
HW
RH
oriz
onta
l Pre
800
220
202
NP
CIL
NP
CIL
2002
-320
07-4
2007
-545
.172
.9-
IN -1
6K
AIG
A-4
PH
WR
Hor
izon
tal P
re80
022
020
2 N
PC
ILN
PC
IL20
02-5
2011
-120
11-1
71.7
93.5
- IN
-9K
AK
RA
PA
R-1
PH
WR
Hor
izon
tal P
re80
122
020
2 N
PC
ILN
PC
IL19
84-1
219
92-1
119
93-5
35.9
45.3
- IN
-10
KA
KR
AP
AR
-2P
HW
RH
oriz
onta
l Pre
801
220
202
NP
CIL
NP
CIL
1985
-419
95-3
1995
-962
.594
.3-
IN -5
MA
DR
AS
-1P
HW
RH
oriz
onta
l Pre
801
220
205
NP
CIL
NP
CIL
1971
-119
83-7
1984
-147
.580
.7D
S IN
-6M
AD
RA
S-2
PH
WR
Hor
izon
tal P
re80
122
020
5 N
PC
ILN
PC
IL19
72-1
019
85-9
1986
-350
.991
.2D
S
Not
e: T
he c
olum
n "N
on-e
lect
rical
app
licat
ions
" ind
icat
es th
e us
e of
the
faci
lity
to p
rovi
de: D
H d
istri
ct h
eatin
g, D
S d
esal
inat
ion.
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
36
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s IN
-7N
AR
OR
A-1
PH
WR
Hor
izon
tal P
re80
122
020
2 N
PC
ILN
PC
IL19
76-1
219
89-7
1991
-136
.868
.0-
IN -8
NA
RO
RA
-2P
HW
RH
oriz
onta
l Pre
801
220
202
NP
CIL
NP
CIL
1977
-11
1992
-119
92-7
18.7
34.8
- IN
-3R
AJA
STH
AN
-1P
HW
RH
oriz
onta
l Pre
346
100
90 N
PC
ILA
EC
L19
65-8
1972
-11
1973
-12
0.0
0.0
PH
IN -4
RA
JAS
THA
N-2
PH
WR
Hor
izon
tal P
re69
320
018
7 N
PC
ILA
EC
L/D
AE
1968
-419
80-1
119
81-4
50.3
53.4
PH
IN -1
1R
AJA
STH
AN
-3P
HW
RH
oriz
onta
l Pre
801
220
202
NP
CIL
NP
CIL
1990
-220
00-3
2000
-671
.591
.4P
H IN
-12
RA
JAS
THA
N-4
PH
WR
Hor
izon
tal P
re80
122
020
2 N
PC
ILN
PC
IL19
90-1
020
00-1
120
00-1
270
.189
.6P
H IN
-19
RA
JAS
THA
N-5
PH
WR
Hor
izon
tal P
re80
122
020
2 N
PC
ILN
PC
IL20
02-9
2009
-12
2010
-290
.791
.7-
IN -2
0R
AJA
STH
AN
-6P
HW
RH
oriz
onta
l Pre
801
220
202
NP
CIL
NP
CIL
2003
-120
10-3
2010
-365
.366
.1-
IN -1
TAR
AP
UR
-1B
WR
BW
R-1
, Mar
k 2
530
160
150
NP
CIL
GE
1964
-10
1969
-419
69-1
085
.886
.4-
IN -2
TAR
AP
UR
-2B
WR
BW
R-1
, Mar
k 2
530
160
150
NP
CIL
GE
1964
-10
1969
-519
69-1
091
.491
.9-
IN -2
3TA
RA
PU
R-3
PH
WR
Hor
izon
tal P
re17
3054
049
0 N
PC
ILN
PC
IL20
00-5
2006
-620
06-8
66.3
92.1
- IN
-24
TAR
AP
UR
-4P
HW
RH
oriz
onta
l Pre
1730
540
490
NP
CIL
NP
CIL
2000
-320
05-6
2005
-956
.184
.9-
IRA
N, I
SL.
RE
P.
IR -1
BU
SH
EH
R 1
PW
RV
VE
R V
-446
3000
1000
915
NP
PD
CO
AS
E19
75-5
2011
-920
12-7
-
JA
PA
N J
P -1
7FU
KU
SH
IMA
-DA
IICH
I-5B
WR
BW
R-4
2381
784
760
TE
PC
OTO
SH
IBA
1972
-519
77-9
1978
-461
.661
.6-
JP
-18
FUK
US
HIM
A-D
AIIC
HI-6
BW
RB
WR
-532
9311
0010
67 T
EP
CO
GE
/T19
73-1
019
79-5
1979
-10
59.0
60.4
- J
P -2
5FU
KU
SH
IMA
-DA
INI-1
BW
RB
WR
-532
9311
0010
67 T
EP
CO
TOS
HIB
A19
76-3
1981
-719
82-4
69.1
70.2
- J
P -2
6FU
KU
SH
IMA
-DA
INI-2
BW
RB
WR
-532
9311
0010
67 T
EP
CO
HIT
AC
HI
1979
-519
83-6
1984
-265
.466
.6-
JP
-35
FUK
US
HIM
A-D
AIN
I-3B
WR
BW
R-5
3293
1100
1067
TE
PC
OTO
SH
IBA
1981
-319
84-1
219
85-6
68.5
69.7
- J
P -3
8FU
KU
SH
IMA
-DA
INI-4
BW
RB
WR
-532
9311
0010
67 T
EP
CO
HIT
AC
HI
1981
-519
86-1
219
87-8
62.3
63.5
- J
P -1
2G
EN
KA
I-1P
WR
M (2
-loop
)16
5055
952
9 K
YU
SH
UM
HI
1971
-919
75-2
1975
-10
85.0
85.0
- J
P -2
7G
EN
KA
I-2P
WR
M (2
-loop
)16
5055
952
9 K
YU
SH
UM
HI
1977
-219
80-6
1981
-364
.464
.4-
JP
-45
GE
NK
AI-3
PW
RM
(4-lo
op)
3423
1180
1127
KY
US
HU
MH
I19
88-6
1993
-619
94-3
67.0
67.0
DS
JP
-46
GE
NK
AI-4
PW
RM
(4-lo
op)
3423
1180
1127
KY
US
HU
MH
I19
92-7
1996
-11
1997
-786
.686
.6D
S J
P -3
6H
AM
AO
KA
-3B
WR
BW
R-5
3293
1100
1056
CH
UB
UTO
SH
IBA
1983
-419
87-1
1987
-866
.767
.0-
JP
-49
HA
MA
OK
A-4
BW
RB
WR
-532
9311
3710
92 C
HU
BU
TOS
HIB
A19
89-1
019
93-1
1993
-979
.181
.2-
JP
-60
HA
MA
OK
A-5
BW
RA
BW
R39
2613
8013
25 C
HU
BU
TOS
HIB
A20
00-7
2004
-420
05-1
49.2
61.0
- J
P -5
8H
IGA
SH
I DO
RI 1
(TO
HO
KU
)B
WR
BW
R-5
3293
1100
1067
TO
HO
KU
TOS
HIB
A20
00-1
120
05-3
2005
-12
63.9
63.9
- J
P -2
3IK
ATA
-1P
WR
M (2
-loop
)16
5056
653
8 S
HIK
OK
UM
HI
1973
-919
77-2
1977
-976
.476
.5D
S
Not
e: T
he c
olum
n "N
on-e
lect
rical
app
licat
ions
" ind
icat
es th
e us
e of
the
faci
lity
to p
rovi
de: P
H p
roce
ss h
eatin
g, D
S d
esal
inat
ion.
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
37
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s J
P -3
2IK
ATA
-2P
WR
M (2
-loop
)16
5056
653
8 S
HIK
OK
UM
HI
1978
-819
81-8
1982
-385
.185
.2D
S J
P -4
7IK
ATA
-3P
WR
M (3
-loop
)26
6089
084
6 S
HIK
OK
UM
HI
1990
-10
1994
-319
94-1
277
.777
.7D
S J
P -3
3K
AS
HIW
AZA
KI K
AR
IWA
-1B
WR
BW
R-5
3293
1100
1067
TE
PC
OTO
SH
IBA
1980
-619
85-2
1985
-929
.935
.5-
JP
-39
KA
SH
IWA
ZAK
I KA
RIW
A-2
BW
RB
WR
-532
9311
0010
67 T
EP
CO
TOS
HIB
A19
85-1
119
90-2
1990
-94.
04.
0-
JP
-52
KA
SH
IWA
ZAK
I KA
RIW
A-3
BW
RB
WR
-532
9311
0010
67 T
EP
CO
TOS
HIB
A19
89-3
1992
-12
1993
-810
.714
.3-
JP
-53
KA
SH
IWA
ZAK
I KA
RIW
A-4
BW
RB
WR
-532
9311
0010
67 T
EP
CO
HIT
AC
HI
1990
-319
93-1
219
94-8
10.8
20.0
- J
P -4
0K
AS
HIW
AZA
KI K
AR
IWA
-5B
WR
BW
R-5
3293
1100
1067
TE
PC
OH
ITA
CH
I19
85-6
1989
-919
90-4
21.7
31.9
- J
P -5
5K
AS
HIW
AZA
KI K
AR
IWA
-6B
WR
AB
WR
3926
1356
1315
TE
PC
OTO
SH
IBA
1992
-11
1996
-119
96-1
147
.255
.4-
JP
-56
KA
SH
IWA
ZAK
I KA
RIW
A-7
BW
RA
BW
R39
2613
5613
15 T
EP
CO
HIT
AC
HI
1993
-719
96-1
219
97-7
47.9
54.6
- J
P -4
MIH
AM
A-1
PW
RW
(2-lo
op)
1031
340
320
KE
PC
OW
H19
67-2
1970
-819
70-1
153
.153
.4-
JP
-6M
IHA
MA
-2P
WR
M (2
-loop
)14
5650
047
0 K
EP
CO
MH
I19
68-5
1972
-419
72-7
64.2
64.4
- J
P -1
4M
IHA
MA
-3P
WR
M (3
-loop
)24
4082
678
0 K
EP
CO
MH
I19
72-8
1976
-219
76-1
271
.671
.6-
JP
-15
OH
I-1P
WR
W (4
-loop
)34
2311
7511
20 K
EP
CO
WH
1972
-10
1977
-12
1979
-363
.563
.5D
S J
P -1
9O
HI-2
PW
RW
(4-lo
op)
3423
1175
1120
KE
PC
OW
H19
72-1
219
78-1
019
79-1
277
.077
.0D
S J
P -5
0O
HI-3
PW
RM
(4-lo
op)
3423
1180
1127
KE
PC
OM
HI
1987
-10
1991
-619
91-1
262
.062
.0-
JP
-51
OH
I-4P
WR
M (4
-loop
)34
2311
8011
27 K
EP
CO
MH
I19
88-6
1992
-619
93-2
75.8
75.8
- J
P -2
2O
NA
GA
WA
-1B
WR
BW
R-4
1593
524
498
TO
HO
KU
TOS
HIB
A19
80-7
1983
-11
1984
-642
.452
.3-
JP
-54
ON
AG
AW
A-2
BW
RB
WR
-524
3682
579
6 T
OH
OK
UTO
SH
IBA
1991
-419
94-1
219
95-7
59.8
69.2
- J
P -5
7O
NA
GA
WA
-3B
WR
BW
R-5
2436
825
796
TO
HO
KU
TOS
HIB
A19
98-1
2001
-520
02-1
52.4
62.4
- J
P -2
8S
EN
DA
I-1P
WR
M (3
-loop
)26
6089
084
6 K
YU
SH
UM
HI
1979
-12
1983
-919
84-7
69.0
69.0
- J
P -3
7S
EN
DA
I-2P
WR
M (3
-loop
)26
6089
084
6 K
YU
SH
UM
HI
1981
-10
1985
-419
85-1
178
.778
.7-
JP
-48
SH
IKA
-1B
WR
BW
R-5
1593
540
505
HO
KU
RIK
UH
ITA
CH
I19
89-7
1993
-119
93-7
35.9
35.9
- J
P -5
9S
HIK
A-2
BW
RA
BW
R39
2612
0611
08 H
OK
UR
IKU
HIT
AC
HI
2001
-820
05-7
2006
-342
.742
.7-
JP
-7S
HIM
AN
E-1
BW
RB
WR
-313
8046
043
9 C
HU
GO
KU
HIT
AC
HI
1970
-719
73-1
219
74-3
46.4
46.4
- J
P -4
1S
HIM
AN
E-2
BW
RB
WR
-524
3682
078
9 C
HU
GO
KU
HIT
AC
HI
1985
-219
88-7
1989
-270
.670
.6-
JP
-8TA
KA
HA
MA
-1P
WR
M (3
-loop
)24
4082
678
0 K
EP
CO
WH
/MH
I19
70-4
1974
-319
74-1
167
.467
.4-
JP
-13
TAK
AH
AM
A-2
PW
RM
(3-lo
op)
2440
826
780
KE
PC
OM
HI
1971
-319
75-1
1975
-11
71.2
71.2
- J
P -2
9TA
KA
HA
MA
-3P
WR
M (3
-loop
)26
6087
083
0 K
EP
CO
MH
I19
80-1
219
84-5
1985
-176
.876
.8D
S J
P -3
0TA
KA
HA
MA
-4P
WR
M (3
-loop
)26
6087
083
0 K
EP
CO
MH
I19
81-3
1984
-11
1985
-673
.273
.2D
S J
P -2
1TO
KA
I-2B
WR
BW
R-5
3293
1100
1060
JA
PC
OG
E19
73-1
019
78-3
1978
-11
56.1
59.9
-
Not
e: T
he c
olum
n "N
on-e
lect
rical
app
licat
ions
" ind
icat
es th
e us
e of
the
faci
lity
to p
rovi
de: D
S d
esal
inat
ion.
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
38
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s J
P -4
3TO
MA
RI-1
PW
RM
(2-lo
op)
1650
579
550
HE
PC
OM
HI
1985
-419
88-1
219
89-6
71.1
71.1
- J
P -4
4TO
MA
RI-2
PW
RM
(2-lo
op)
1650
579
550
HE
PC
OM
HI
1985
-619
90-8
1991
-474
.674
.6-
JP
-64
TOM
AR
I-3P
WR
M (3
-loop
)26
6091
286
6 H
EP
CO
MH
I20
04-1
120
09-3
2009
-12
91.4
91.4
- J
P -3
TSU
RU
GA
-1B
WR
BW
R-2
1070
357
340
JA
PC
OG
E19
66-1
119
69-1
119
70-3
42.8
43.0
- J
P -3
4TS
UR
UG
A-2
PW
RM
(4-lo
op)
3411
1160
1108
JA
PC
OM
HI
1982
-11
1986
-619
87-2
50.9
51.7
-
KO
RE
A, R
EP
. OF
KR
-1K
OR
I-1P
WR
WH
	
651;
6017
2960
357
6 K
HN
PW
H19
72-4
1977
-619
78-4
94.4
95.0
- K
R -2
KO
RI-2
PW
RW
H F
1882
675
637
KH
NP
WH
1977
-12
1983
-419
83-7
91.4
91.4
- K
R -5
KO
RI-3
PW
RW
H F
2912
1042
1011
KH
NP
WH
1979
-10
1985
-119
85-9
92.9
92.9
- K
R -6
KO
RI-4
PW
RW
H F
2912
1042
1009
KH
NP
WH
1980
-419
85-1
119
86-4
92.2
92.4
- K
R -2
1S
HIN
-KO
RI-1
PW
RO
PR
-100
028
2510
3898
5 K
HN
PD
HIC
KO
PC
2006
-620
10-8
2011
-299
.610
0.0
- K
R -9
ULC
HIN
-1P
WR
Fran
ce C
PI
2785
985
945
KH
NP
FRA
M19
83-1
1988
-419
88-9
93.4
93.6
- K
R -1
0U
LCH
IN-2
PW
RFr
ance
CP
I27
7598
494
2 K
HN
PFR
AM
1983
-719
89-4
1989
-989
.689
.6-
KR
-13
ULC
HIN
-3P
WR
OP
R-1
000
2825
1047
994
KH
NP
DH
ICK
OP
C19
93-7
1998
-119
98-8
93.0
93.1
- K
R -1
4U
LCH
IN-4
PW
RO
PR
-100
028
2510
4599
8 K
HN
PD
HIC
KO
PC
1993
-11
1998
-12
1999
-12
88.5
88.6
- K
R -1
9U
LCH
IN-5
PW
RO
PR
-100
028
1510
4899
7 K
HN
PD
HIC
KO
PC
1999
-10
2003
-12
2004
-793
.693
.7-
KR
-20
ULC
HIN
-6P
WR
OP
R-1
000
2825
1048
997
KH
NP
DH
ICK
OP
C20
00-9
2005
-120
05-4
93.4
93.6
- K
R -3
WO
LSO
NG
-1P
HW
RC
AN
DU
620
6168
966
0 K
HN
PA
EC
L19
77-1
019
82-1
219
83-4
50.1
50.1
- K
R -4
WO
LSO
NG
-2P
HW
RC
AN
DU
620
6174
071
0 K
HN
PA
EC
L/D
HI
1992
-619
97-4
1997
-793
.593
.7-
KR
-15
WO
LSO
NG
-3P
HW
RC
AN
DU
620
6172
970
7 K
HN
PA
EC
L/D
HI
1994
-319
98-3
1998
-794
.794
.8-
KR
-16
WO
LSO
NG
-4P
HW
RC
AN
DU
620
6173
070
8 K
HN
PA
EC
L/D
HI
1994
-719
99-5
1999
-10
93.3
93.4
- K
R -7
YO
NG
GW
AN
G-1
PW
RW
H F
2787
985
953
KH
NP
WH
1981
-619
86-3
1986
-891
.691
.9-
KR
-8Y
ON
GG
WA
NG
-2P
WR
WH
F27
8797
894
7 K
HN
PW
H19
81-1
219
86-1
119
87-6
90.5
90.8
- K
R -1
1Y
ON
GG
WA
NG
-3P
WR
OP
R-1
000
2825
1039
997
KH
NP
DH
ICK
AE
C19
89-1
219
94-1
019
95-3
92.3
92.5
- K
R -1
2Y
ON
GG
WA
NG
-4P
WR
OP
R-1
000
2825
1039
994
KH
NP
DH
ICK
AE
C19
90-5
1995
-719
96-1
91.5
91.8
- K
R -1
7Y
ON
GG
WA
NG
-5P
WR
OP
R-1
000
2825
1046
988
KH
NP
DH
ICK
OP
C19
97-6
2001
-12
2002
-594
.294
.2-
KR
-18
YO
NG
GW
AN
G-6
PW
RO
PR
-100
028
2510
5099
6 K
HN
PD
HIC
KO
PC
1997
-11
2002
-920
02-1
292
.592
.8-
ME
XIC
O M
X -1
LAG
UN
A V
ER
DE
-1B
WR
BW
R-5
2027
682
650
CFE
GE
1976
-10
1989
-419
90-7
75.8
76.1
- M
X -2
LAG
UN
A V
ER
DE
-2B
WR
BW
R-5
2027
682
650
CFE
GE
1977
-619
94-1
119
95-4
82.3
82.8
-
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
39
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s N
ETH
ER
LAN
DS
NL
-2B
OR
SS
ELE
PW
RLW
R -
PW
R13
6651
548
2 E
PZ
S/K
WU
1969
-719
73-7
1973
-10
92.7
93.0
-
PA
KIS
TAN
PK
-2C
HA
SN
UP
P 1
PW
RC
NP
-300
999
325
300
PA
EC
CN
NC
1993
-820
00-6
2000
-974
.074
.1-
PK
-3C
HA
SN
UP
P 2
PW
RP
WR
999
325
300
PA
EC
CN
NC
2005
-12
2011
-320
11-5
88.3
88.3
- P
K -1
KA
NU
PP
PH
WR
CA
ND
U-1
37 M
W43
313
712
5 P
AE
CC
GE
1966
-819
71-1
019
72-1
245
.745
.7D
S
RO
MA
NIA
RO
-1C
ER
NA
VO
DA
-1P
HW
RC
AN
DU
621
8070
665
0 S
NN
AE
CL
1982
-719
96-7
1996
-12
93.6
94.1
DH
RO
-2C
ER
NA
VO
DA
-2P
HW
RC
AN
DU
621
8070
665
0 S
NN
AE
CL
1983
-720
07-8
2007
-10
93.8
94.6
DH
RU
SS
IA R
U -9
6B
ALA
KO
VO
-1P
WR
VV
ER
V-3
2030
0010
0095
0 R
EA
RO
SA
TOM
1980
-12
1985
-12
1986
-586
.987
.4D
H, P
H R
U -9
7B
ALA
KO
VO
-2P
WR
VV
ER
V-3
2030
0010
0095
0 R
EA
RO
SA
TOM
1981
-819
87-1
019
88-1
88.1
89.2
DH
, PH
RU
-98
BA
LAK
OV
O-3
PW
RV
VE
R V
-320
3000
1000
950
RE
AR
OS
ATO
M19
82-1
119
88-1
219
89-4
88.5
89.5
DH
, PH
RU
-99
BA
LAK
OV
O-4
PW
RV
VE
R V
-320
3200
1000
950
RE
AR
OS
ATO
M19
84-4
1993
-419
93-1
288
.088
.8D
H, P
H R
U -2
1B
ELO
YA
RS
KY
-3 (B
N-6
00)
FBR
BN
-600
1470
600
560
RE
AR
OS
ATO
M19
69-1
1980
-419
81-1
176
.576
.6D
H, P
H R
U -1
41B
ILIB
INO
-1LW
GR
EG
P-6
6212
11 R
EA
RO
SA
TOM
1970
-119
74-1
1974
-444
.353
.3D
H R
U -1
42B
ILIB
INO
-2LW
GR
EG
P-6
6212
11 R
EA
RO
SA
TOM
1970
-119
74-1
219
75-2
75.5
84.8
DH
RU
-143
BIL
IBIN
O-3
LWG
RE
GP
-662
1211
RE
AR
OS
ATO
M19
70-1
1975
-12
1976
-276
.385
.7D
H R
U -1
44B
ILIB
INO
-4LW
GR
EG
P-6
6212
11 R
EA
RO
SA
TOM
1970
-119
76-1
219
77-1
74.2
83.4
DH
RU
-30
KA
LIN
IN-1
PW
RV
VE
R V
-338
3000
1000
950
RE
AR
OS
ATO
M19
77-2
1984
-519
85-6
84.7
84.9
DH
, PH
RU
-31
KA
LIN
IN-2
PW
RV
VE
R V
-338
3000
1000
950
RE
AR
OS
ATO
M19
82-2
1986
-12
1987
-385
.986
.2D
H, P
H R
U -3
6K
ALI
NIN
-3P
WR
VV
ER
V-3
2032
0010
0095
0 R
EA
RO
SA
TOM
1985
-10
2004
-12
2005
-11
85.1
85.3
PH
RU
-37
KA
LIN
IN-4
PW
RV
VE
R V
-320
3200
1000
950
RE
AR
OS
ATO
M19
86-8
2011
-11
—-
RU
-12
KO
LA-1
PW
RV
VE
R V
-230
1375
440
411
RE
AR
OS
ATO
M19
70-5
1973
-619
73-1
282
.485
.7D
H, P
H R
U -1
3K
OLA
-2P
WR
VV
ER
V-2
3013
7544
041
1 R
EA
RO
SA
TOM
1970
-519
74-1
219
75-2
82.4
86.0
DH
, PH
RU
-32
KO
LA-3
PW
RV
VE
R V
-213
1375
440
411
RE
AR
OS
ATO
M19
77-4
1981
-319
82-1
272
.278
.7D
H, P
H R
U -3
3K
OLA
-4P
WR
VV
ER
V-2
1313
7544
041
1 R
EA
RO
SA
TOM
1976
-819
84-1
019
84-1
280
.984
.6D
H, P
H R
U -1
7K
UR
SK
-1LW
GR
RB
MK
-100
032
0010
0092
5 R
EA
RO
SA
TOM
1972
-619
76-1
219
77-1
082
.884
.8D
H, P
H R
U -2
2K
UR
SK
-2LW
GR
RB
MK
-100
032
0010
0092
5 R
EA
RO
SA
TOM
1973
-119
79-1
1979
-878
.478
.6D
H, P
H R
U -3
8K
UR
SK
-3LW
GR
RB
MK
-100
032
0010
0092
5 R
EA
RO
SA
TOM
1978
-419
83-1
019
84-3
70.7
71.4
DH
, PH
RU
-39
KU
RS
K-4
LWG
RR
BM
K-1
000
3200
1000
925
RE
AR
OS
ATO
M19
81-5
1985
-12
1986
-274
.775
.6D
H, P
H
Not
e: T
he c
olum
n "N
on-e
lect
rical
app
licat
ions
" ind
icat
es th
e us
e of
the
faci
lity
to p
rovi
de: D
S d
esal
inat
ion,
DH
dis
trict
hea
ting,
PH
pro
cess
hea
ting.
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
40
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s R
U -1
5LE
NIN
GR
AD
-1LW
GR
RB
MK
-100
032
0010
0092
5 R
EA
RO
SA
TOM
1970
-319
73-1
219
74-1
179
.280
.2D
H, P
H R
U -1
6LE
NIN
GR
AD
-2LW
GR
RB
MK
-100
032
0010
0092
5 R
EA
RO
SA
TOM
1970
-619
75-7
1976
-286
.987
.3D
H, P
H R
U -3
4LE
NIN
GR
AD
-3LW
GR
RB
MK
-100
032
0010
0092
5 R
EA
RO
SA
TOM
1973
-12
1979
-12
1980
-671
.372
.8D
H, P
H R
U -3
5LE
NIN
GR
AD
-4LW
GR
RB
MK
-100
032
0010
0092
5 R
EA
RO
SA
TOM
1975
-219
81-2
1981
-870
.571
.7D
H, P
H R
U -9
NO
VO
VO
RO
NE
ZH-3
PW
RV
VE
R V
-179
1375
417
385
RE
AR
OS
ATO
M19
67-7
1971
-12
1972
-665
.266
.0D
H, P
H R
U -1
1N
OV
OV
OR
ON
EZH
-4P
WR
VV
ER
V-1
7913
7541
738
5 R
EA
RO
SA
TOM
1967
-719
72-1
219
73-3
80.6
81.8
DH
, PH
RU
-20
NO
VO
VO
RO
NE
ZH-5
PW
RV
VE
R V
-187
3000
1000
950
RE
AR
OS
ATO
M19
74-3
1980
-519
81-2
67.0
67.8
DH
, PH
RU
-59
RO
STO
V-1
PW
RV
VE
R V
-320
I32
0010
0095
0 R
EA
RO
SA
TOM
1981
-920
01-3
2001
-12
88.2
88.3
- R
U -6
2R
OS
TOV
-2P
WR
VV
ER
V-3
20I
3200
1000
950
RE
AR
OS
ATO
M19
83-5
2010
-320
10-1
289
.490
.2-
RU
-23
SM
OLE
NS
K-1
LWG
RR
BM
K-1
000
3200
1000
925
RE
AR
OS
ATO
M19
75-1
019
82-1
219
83-9
75.9
76.3
DH
, PH
RU
-24
SM
OLE
NS
K-2
LWG
RR
BM
K-1
000
3200
1000
925
RE
AR
OS
ATO
M19
76-6
1985
-519
85-7
79.7
80.2
DH
, PH
RU
-67
SM
OLE
NS
K-3
LWG
RR
BM
K-1
000
3200
1000
925
RE
AR
OS
ATO
M19
84-5
1990
-119
90-1
079
.179
.3D
H, P
H
SLO
VA
KIA
SK
-13
BO
HU
NIC
E-3
PW
RV
VE
R V
-213
1471
505
472
SE
,plc
SK
OD
A19
76-1
219
84-8
1985
-283
.585
.8D
H, P
H S
K -1
4B
OH
UN
ICE
-4P
WR
VV
ER
V-2
1314
7150
547
2 S
E,p
lcS
KO
DA
1976
-12
1985
-819
85-1
284
.786
.7D
H, P
H S
K -6
MO
CH
OV
CE
-1P
WR
VV
ER
V-2
1314
7147
043
6 S
E,p
lcS
KO
DA
1983
-10
1998
-719
98-1
089
.289
.6-
SK
-7M
OC
HO
VC
E-2
PW
RV
VE
R V
-213
1471
470
436
SE
,plc
SK
OD
A19
83-1
019
99-1
220
00-4
89.1
89.8
-
SLO
VE
NIA
SI -
1K
RS
KO
PW
RW
estin
ghou
se 2
1994
727
688
NE
KW
H19
75-3
1981
-10
1983
-193
.793
.8-
SO
UTH
AFR
ICA
ZA
-1K
OE
BE
RG
-1P
WR
CP
127
7597
093
0 E
SK
OM
FRA
M19
76-7
1984
-419
84-7
80.9
81.4
- Z
A -2
KO
EB
ER
G-2
PW
RC
P1
2775
940
900
ES
KO
MFR
AM
1976
-719
85-7
1985
-11
79.1
81.8
-
SP
AIN
ES
-6A
LMA
RA
Z-1
PW
RW
E 3
-loop
s29
4710
4510
11 C
NA
TW
H19
73-7
1981
-519
83-9
88.6
89.6
- E
S -7
ALM
AR
AZ-
2P
WR
WE
3-lo
ops
2947
1044
1006
CN
AT
WH
1973
-719
83-1
019
84-7
87.8
88.8
- E
S -8
AS
CO
-1P
WR
WE
3-lo
ops
2941
1033
995
AN
AV
WH
1974
-519
83-8
1984
-12
80.8
82.0
- E
S -9
AS
CO
-2P
WR
WE
3-lo
ops
2941
1027
997
AN
AV
WH
1975
-319
85-1
019
86-3
83.8
85.6
- E
S -1
0C
OFR
EN
TES
BW
RB
WR
-632
3710
9210
64 ID
GE
1975
-919
84-1
019
85-3
82.4
83.9
- E
S -2
SA
NTA
MA
RIA
DE
GA
RO
NA
BW
RB
WR
-313
8146
644
6 N
UC
LEN
OR
GE
1966
-919
71-3
1971
-591
.191
.5-
ES
-11
TRIL
LO-1
PW
RP
WR
3 lo
ops
3010
1066
1003
CN
AT
KW
U19
79-8
1988
-519
88-8
87.9
88.3
-
Not
e: T
he c
olum
n "N
on-e
lect
rical
app
licat
ions
" ind
icat
es th
e us
e of
the
faci
lity
to p
rovi
de: D
H d
istri
ct h
eatin
g, P
H p
roce
ss h
eatin
g.
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
41
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s E
S -1
6V
AN
DE
LLO
S-2
PW
RW
E 3
-loop
s29
4110
8710
45 A
NA
VW
H19
80-1
219
87-1
219
88-3
72.2
73.2
-
SW
ED
EN
SE
-9FO
RS
MA
RK
-1B
WR
BW
R-7
529
2810
2298
4 F
KA
AB
BA
TOM
1973
-619
80-6
1980
-12
84.1
84.7
- S
E -1
1FO
RS
MA
RK
-2B
WR
BW
R-7
529
2810
3499
6 F
KA
AB
BA
TOM
1975
-119
81-1
1981
-771
.972
.4-
SE
-14
FOR
SM
AR
K-3
BW
RB
WR
-300
033
0012
1211
70 F
KA
AB
BA
TOM
1979
-119
85-3
1985
-881
.382
.1-
SE
-2O
SK
AR
SH
AM
N-1
BW
RA
BB
BW
R13
7549
247
3 O
KG
AB
BA
TOM
1966
-819
71-8
1972
-273
.875
.1-
SE
-3O
SK
AR
SH
AM
N-2
BW
RA
BB
BW
R18
0066
163
8 O
KG
AB
BA
TOM
1969
-919
74-1
019
75-1
81.4
82.8
- S
E -1
2O
SK
AR
SH
AM
N-3
BW
RB
WR
-75
3900
1450
1400
OK
GA
BB
ATO
M19
80-5
1985
-319
85-8
54.7
55.6
- S
E -4
RIN
GH
ALS
-1B
WR
BW
R25
4089
385
4 R
AB
AB
BA
TOM
1969
-219
74-1
019
76-1
56.9
58.1
- S
E -5
RIN
GH
ALS
-2P
WR
WE
(3 lo
ops)
2660
917
809
RA
BW
H19
70-1
019
74-8
1975
-561
.262
.5-
SE
-7R
ING
HA
LS-3
PW
RW
E (3
loop
s)31
3511
0210
57 R
AB
WH
1972
-919
80-9
1981
-980
.182
.1-
SE
-10
RIN
GH
ALS
-4P
WR
WE
(3 lo
ops)
2775
981
945
RA
BW
H19
73-1
119
82-6
1983
-11
81.1
82.9
-
SW
ITZE
RLA
ND
CH
-1B
EZN
AU
-1P
WR
WH
- 2
loop
s11
3038
036
5 A
xpo
AG
WH
1965
-919
69-7
1969
-993
.193
.1D
H C
H -3
BE
ZNA
U-2
PW
RW
H -
2 lo
ops
1130
380
365
Axp
o A
GW
H19
68-1
1971
-10
1971
-12
90.0
90.0
DH
CH
-4G
OE
SG
EN
PW
RP
WR
3 L
oop
3002
1035
970
KK
GK
WU
1973
-12
1979
-219
79-1
193
.293
.4P
H C
H -5
LEIB
STA
DT
BW
RB
WR
-636
0012
4511
90 K
KL
GE
TSC
O19
74-1
1984
-519
84-1
290
.391
.2-
CH
-2M
UE
HLE
BE
RG
BW
RB
WR
-410
9739
037
3 B
KW
GE
TSC
O19
67-3
1971
-719
72-1
187
.988
.0-
UK
GB
-18A
DU
NG
EN
ES
S-B
1G
CR
AG
R15
0061
552
0 B
EA
PC
1965
-10
1983
-419
85-4
36.3
36.3
- G
B -1
8BD
UN
GE
NE
SS
-B2
GC
RA
GR
1500
615
520
BE
AP
C19
65-1
019
85-1
219
89-4
45.1
45.1
- G
B -1
9AH
AR
TLE
PO
OL-
A1
GC
RA
GR
1500
655
595
BE
NP
C19
68-1
019
83-8
1989
-456
.656
.6-
GB
-19B
HA
RTL
EP
OO
L-A
2G
CR
AG
R15
0065
559
5 B
EN
PC
1968
-10
1984
-10
1989
-455
.755
.7-
GB
-20A
HE
YS
HA
M-A
1G
CR
AG
R15
0062
558
5 B
EN
PC
1970
-12
1983
-719
89-4
52.6
52.6
- G
B -2
0BH
EY
SH
AM
-A2
GC
RA
GR
1500
625
575
BE
NP
C19
70-1
219
84-1
019
89-4
48.6
48.6
- G
B -2
2AH
EY
SH
AM
-B1
GC
RA
GR
1550
680
605
BE
NP
C19
80-8
1988
-719
89-4
82.4
82.7
- G
B -2
2BH
EY
SH
AM
-B2
GC
RA
GR
1550
680
605
BE
NP
C19
80-8
1988
-11
1989
-469
.570
.0-
GB
-16A
HIN
KLE
Y P
OIN
T-B
1G
CR
AG
R14
9465
543
5 B
ETN
PG
1967
-919
76-1
019
78-1
067
.667
.9-
GB
-16B
HIN
KLE
Y P
OIN
T-B
2G
CR
AG
R14
9465
543
5 B
ETN
PG
1967
-919
76-2
1976
-970
.470
.4-
GB
-17A
HU
NTE
RS
TON
-B1
GC
RA
GR
1496
644
460
BE
TNP
G19
67-1
119
76-2
1976
-267
.967
.9-
Not
e: T
he c
olum
n N
on-E
lect
rical
App
licat
ions
indi
cate
s th
e us
e of
the
faci
lity
to p
rovi
de: D
H d
istri
ct h
eatin
g, P
H p
roce
ss h
eatin
g,
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
42
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s G
B -1
7BH
UN
TER
STO
N-B
2G
CR
AG
R14
9664
443
0 B
ETN
PG
1967
-11
1977
-319
77-3
70.0
70.1
- G
B -1
1AO
LDB
UR
Y-A
1G
CR
MA
GN
OX
730
230
217
ME
LTN
PG
1962
-519
67-1
119
67-1
241
.141
.1-
GB
-24
SIZ
EW
ELL
-BP
WR
SN
UP
PS
3425
1250
1191
BE
PP
C19
88-7
1995
-219
95-9
80.7
80.7
- G
B -2
3ATO
RN
ES
S 1
GC
RA
GR
1623
682
600
BE
NN
C19
80-8
1988
-519
88-5
75.5
76.1
- G
B -2
3BTO
RN
ES
S 2
GC
RA
GR
1623
682
605
BE
NN
C19
80-8
1989
-219
89-2
84.8
85.8
- G
B -1
3AW
YLF
A 1
GC
RM
AG
NO
X19
2054
049
0 M
EL
EE
/B&
W/T
1963
-919
71-1
1971
-11
63.4
63.7
- G
B -1
3BW
YLF
A 2
GC
RM
AG
NO
X19
2054
049
0 M
EL
EE
/B&
W/T
1963
-919
71-7
1972
-159
.459
.6-
UK
RA
INE
UA
-40
KH
ME
LNIT
SK
I-1P
WR
VV
ER
V-3
2030
0010
0095
0 N
NE
GC
PA
IP19
81-1
119
87-1
219
88-8
80.7
81.4
DH
UA
-41
KH
ME
LNIT
SK
I-2P
WR
VV
ER
V-3
2030
0010
0095
0 N
NE
GC
PA
IP19
85-2
2004
-820
05-1
274
.074
.8D
H U
A -2
7R
OV
NO
-1P
WR
VV
ER
V-2
1313
7542
038
1 N
NE
GC
PA
IP19
73-8
1980
-12
1981
-958
.058
.4D
H U
A -2
8R
OV
NO
-2P
WR
VV
ER
V-2
1313
7541
537
6 N
NE
GC
PA
IP19
73-1
019
81-1
219
82-7
70.7
71.4
DH
UA
-29
RO
VN
O-3
PW
RV
VE
R V
-320
3000
1000
950
NN
EG
CP
AIP
1980
-219
86-1
219
87-5
67.1
69.1
DH
UA
-69
RO
VN
O-4
PW
RV
VE
R V
-320
3000
1000
950
NN
EG
CP
AA
1986
-820
04-1
020
06-4
70.0
72.6
DH
UA
-44
SO
UTH
UK
RA
INE
-1P
WR
VV
ER
V-3
0230
0010
0095
0 N
NE
GC
PA
A19
77-3
1982
-12
1983
-10
73.1
77.7
DH
UA
-45
SO
UTH
UK
RA
INE
-2P
WR
VV
ER
V-3
3830
0010
0095
0 N
NE
GC
PA
A19
79-1
019
85-1
1985
-477
.779
.5D
H U
A -4
8S
OU
TH U
KR
AIN
E-3
PW
RV
VE
R V
-320
3000
1000
950
NN
EG
CP
AA
1985
-219
89-9
1989
-12
65.5
71.4
DH
UA
-54
ZAP
OR
OZH
E-1
PW
RV
VE
R V
-320
3000
1000
950
NN
EG
CP
AIP
1980
-419
84-1
219
85-1
280
.481
.4D
H U
A -5
6ZA
PO
RO
ZHE
-2P
WR
VV
ER
V-3
2030
0010
0095
0 N
NE
GC
PA
IP19
81-1
1985
-719
86-2
81.0
82.1
DH
UA
-78
ZAP
OR
OZH
E-3
PW
RV
VE
R V
-320
3000
1000
950
NN
EG
CP
AIP
1982
-419
86-1
219
87-3
82.8
85.5
DH
UA
-79
ZAP
OR
OZH
E-4
PW
RV
VE
R V
-320
3000
1000
950
NN
EG
CP
AIP
1983
-419
87-1
219
88-4
82.1
83.6
DH
UA
-126
ZAP
OR
OZH
E-5
PW
RV
VE
R V
-320
3000
1000
950
NN
EG
CP
AIP
1985
-11
1989
-819
89-1
081
.783
.0D
H U
A -1
27ZA
PO
RO
ZHE
-6P
WR
VV
ER
V-3
2030
0010
0095
0 N
NE
GC
PA
IP19
86-6
1995
-10
1996
-982
.482
.8D
H
US
A U
S -3
13A
RK
AN
SA
S O
NE
-1P
WR
B&
W (L
-loop
) D25
6888
084
2 E
NTE
RG
YB
&W
1968
-10
1974
-819
74-1
291
.491
.4-
US
-368
AR
KA
NS
AS
ON
E-2
PW
RC
E (2
-loop
) DR
3026
1040
993
EN
TER
GY
CE
1968
-12
1978
-12
1980
-393
.993
.9-
US
-334
BE
AV
ER
VA
LLE
Y-1
PW
RW
(3-lo
op)
2689
923
892
FE
NO
CW
H19
70-6
1976
-619
76-1
094
.694
.6-
US
-412
BE
AV
ER
VA
LLE
Y-2
PW
RW
(3-lo
op)
2689
923
885
FE
NO
CW
H19
74-5
1987
-819
87-1
193
.093
.0-
US
-456
BR
AID
WO
OD
-1P
WR
W (4
-loop
)35
8712
4011
78 E
XE
LON
WH
1975
-819
87-7
1988
-795
.295
.3-
US
-457
BR
AID
WO
OD
-2P
WR
W (4
-loop
) DR
Y35
8712
1311
52 E
XE
LON
WH
1975
-819
88-5
1988
-10
95.2
95.3
-
Not
e: T
he c
olum
n N
on-E
lect
rical
App
licat
ions
indi
cate
s th
e us
e of
the
faci
lity
to p
rovi
de: D
H d
istri
ct h
eatin
g,
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
43
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s U
S -2
59B
RO
WN
S F
ER
RY
-1B
WR
BW
R-4
(Mar
k 1
3458
1152
1101
TV
AG
E19
67-5
1973
-10
1974
-890
.391
.7-
US
-260
BR
OW
NS
FE
RR
Y-2
BW
RB
WR
-4 (M
ark
134
5811
5511
04 T
VA
GE
1967
-519
74-8
1975
-387
.689
.1-
US
-296
BR
OW
NS
FE
RR
Y-3
BW
RB
WR
-4 (M
ark
134
5814
0011
05 T
VA
GE
1968
-719
76-9
1977
-388
.690
.5-
US
-325
BR
UN
SW
ICK
-1B
WR
BW
R-4
(Mar
k 1
2923
990
938
PR
OG
RE
SS
GE
1970
-219
76-1
219
77-3
91.6
91.6
- U
S -3
24B
RU
NS
WIC
K-2
BW
RB
WR
-4 (M
ark
129
2398
992
0 P
RO
GR
ES
SG
E19
70-2
1975
-419
75-1
188
.588
.5-
US
-454
BY
RO
N-1
PW
RW
(4-lo
op) (
DR
3587
1225
1164
EX
ELO
NW
H19
75-4
1985
-319
85-9
94.6
94.6
- U
S -4
55B
YR
ON
-2P
WR
W (4
-Loo
p) (D
R35
8711
9611
36 E
XE
LON
WH
1975
-419
87-2
1987
-894
.194
.1-
US
-483
CA
LLA
WA
Y-1
PW
RW
(4-lo
op) D
RY
3565
1236
1190
Am
eren
UE
WH
1975
-919
84-1
019
84-1
289
.489
.4-
US
-317
CA
LVE
RT
CLI
FFS
-1P
WR
CE
(2-lo
op) (
D27
0091
885
5 C
ON
STE
LLC
E19
68-6
1975
-119
75-5
96.1
96.3
- U
S -3
18C
ALV
ER
T C
LIFF
S-2
PW
RC
E (2
-loop
) (D
2700
911
850
CO
NS
TELL
CE
1968
-619
76-1
219
77-4
94.6
94.6
- U
S -4
13C
ATA
WB
A-1
PW
RW
(4-lo
op) (
IC34
1111
8811
29 D
UK
EE
NE
RW
H19
74-5
1985
-119
85-6
92.3
92.3
- U
S -4
14C
ATA
WB
A-2
PW
RW
(4-lo
op) (
IC34
1111
8811
29 D
UK
EE
NE
RW
H19
74-5
1986
-519
86-8
92.2
92.2
- U
S -4
61C
LIN
TON
-1B
WR
BW
R-6
(Mar
k 3
3473
1098
1065
EX
ELO
NG
E19
75-1
019
87-4
1987
-11
94.8
94.8
- U
S -3
97C
OLU
MB
IAB
WR
BW
R-5
(Mar
k 2
3486
1200
1131
EN
ER
GY
NW
GE
1972
-819
84-5
1984
-12
81.4
81.6
- U
S -4
45C
OM
AN
CH
E P
EA
K-1
PW
RW
(4-lo
op) D
RY
3612
1259
1209
LU
MIN
AN
TW
H19
74-1
219
90-4
1990
-892
.792
.7-
US
-446
CO
MA
NC
HE
PE
AK
-2P
WR
W (4
-loop
) DR
Y34
5812
5011
97 L
UM
INA
NT
WH
1974
-12
1993
-419
93-8
95.9
95.9
- U
S -2
98C
OO
PE
RB
WR
BW
R-4
(Mar
k 1
2381
801
774
EN
TER
GY
GE
1968
-619
74-5
1974
-791
.691
.6-
US
-302
CR
YS
TAL
RIV
ER
-3P
WR
B&
W (L
-loop
)25
6889
086
0 P
RO
GR
ES
SB
&W
1968
-919
77-1
1977
-350
.850
.8-
US
-346
DA
VIS
BE
SS
E-1
PW
RB
&W
(R-lo
op)
2772
925
894
FE
NO
CB
&W
1970
-919
77-8
1978
-785
.785
.7-
US
-275
DIA
BLO
CA
NY
ON
-1P
WR
W (4
-loop
)33
3811
3611
22 P
G&
EW
H19
68-4
1984
-11
1985
-592
.392
.3-
US
-323
DIA
BLO
CA
NY
ON
-2P
WR
W (4
-loop
)34
1111
6411
18 P
G&
EW
H19
70-1
219
85-1
019
86-3
90.0
90.2
- U
S -3
15D
ON
ALD
CO
OK
-1P
WR
W (4
-loop
) IC
E33
0410
7710
09 A
EP
WH
1969
-319
75-2
1975
-868
.568
.5-
US
-316
DO
NA
LD C
OO
K-2
PW
RW
(4-lo
op) I
CE
3468
1133
1077
AE
PW
H19
69-3
1978
-319
78-7
90.4
90.4
- U
S -2
37D
RE
SD
EN
-2B
WR
BW
R-3
(Mar
k 1
2527
913
867
EX
ELO
NG
E19
66-1
1970
-419
70-6
95.2
95.2
- U
S -2
49D
RE
SD
EN
-3B
WR
BW
R-3
(Mar
k 1
2527
913
867
EX
ELO
NG
E19
66-1
019
71-7
1971
-11
96.4
96.4
- U
S -3
31D
UA
NE
AR
NO
LD-1
BW
RB
WR
-4 (M
ark
119
1261
460
1 N
EX
TER
AG
E19
70-6
1974
-519
75-2
92.2
92.2
- U
S -3
41E
NR
ICO
FE
RM
I-2B
WR
BW
R-4
(Mar
k 1
3430
1154
1085
DTE
DIS
ON
GE
1972
-919
86-9
1988
-189
.189
.1-
US
-348
FAR
LEY
-1P
WR
W (3
-loop
)27
7589
587
4 S
OU
THE
RN
WH
1970
-10
1977
-819
77-1
293
.093
.0-
US
-364
FAR
LEY
-2P
WR
W (3
-loop
) DR
Y27
7590
586
0 S
OU
THE
RN
WH
1970
-10
1981
-519
81-7
90.2
90.2
- U
S -3
33FI
TZP
ATR
ICK
BW
RB
WR
-4 (M
ark
125
3688
285
5 E
NTE
RG
YG
E19
68-9
1975
-219
75-7
95.5
96.1
-
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
44
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s U
S -2
85FO
RT
CA
LHO
UN
-1P
WR
CE
(2-lo
op)
1500
512
482
OP
PD
CE
1968
-619
73-8
1973
-978
.978
.9-
US
-416
GR
AN
D G
ULF
-1B
WR
BW
R-6
(Mar
k 3
3833
1333
1251
EN
TER
GY
GE
1974
-519
84-1
019
85-7
92.9
92.9
- U
S -2
61H
.B. R
OB
INS
ON
-2P
WR
W (3
-loop
) DR
Y23
3974
572
4 P
RO
GR
ES
SW
H19
67-4
1970
-919
71-3
85.6
85.6
- U
S -3
21H
ATC
H-1
BW
RB
WR
-4 (M
ark
128
0489
887
6 S
OU
THE
RN
GE
1968
-919
74-1
119
75-1
293
.293
.2-
US
-366
HA
TCH
-2B
WR
BW
R-4
(Mar
k 1
2804
921
883
SO
UTH
ER
NG
E19
72-2
1978
-919
79-9
87.3
87.3
- U
S -3
54H
OP
E C
RE
EK
-1B
WR
BW
R-4
(Mar
k 1
3339
1376
1191
PS
EG
GE
1976
-319
86-8
1986
-12
94.4
94.4
- U
S -2
47IN
DIA
N P
OIN
T-2
PW
RW
(4-lo
op) D
RY
3216
1062
1022
EN
TER
GY
WH
1966
-10
1973
-619
74-8
94.4
94.4
- U
S -2
86IN
DIA
N P
OIN
T-3
PW
RW
(4-lo
op) D
RY
3216
1065
1040
EN
TER
GY
WH
1968
-11
1976
-419
76-8
92.8
92.8
- U
S -3
05K
EW
AU
NE
EP
WR
W (2
-loop
) DR
Y17
7258
156
6 D
OM
INIO
NW
H19
68-8
1974
-419
74-6
93.3
93.3
- U
S -3
73LA
SA
LLE
-1B
WR
BW
R-5
(Mar
k 2
3489
1177
1118
EX
ELO
NG
E19
73-9
1982
-919
84-1
96.1
96.1
- U
S -3
74LA
SA
LLE
-2B
WR
BW
R-5
(Mar
k 2
3489
1179
1120
EX
ELO
NG
E19
73-9
1984
-419
84-1
096
.196
.1-
US
-352
LIM
ER
ICK
-1B
WR
BW
R-4
(Mar
k 2
3458
1194
1130
EX
ELO
NG
E19
74-6
1985
-419
86-2
96.6
96.6
- U
S -3
53LI
ME
RIC
K-2
BW
RB
WR
-4 (M
ark
234
5811
9411
34 E
XE
LON
GE
1974
-619
89-9
1990
-194
.594
.5-
US
-369
MC
GU
IRE
-1P
WR
W (4
-loop
) IC
E34
1111
5811
00 D
UK
EE
NE
RW
H19
71-4
1981
-919
81-1
288
.588
.5-
US
-370
MC
GU
IRE
-2P
WR
W (4
-loop
) (IC
3411
1158
1100
DU
KE
EN
ER
WH
1971
-419
83-5
1984
-393
.193
.1-
US
-336
MIL
LSTO
NE
-2P
WR
CO
MB
CE
DR
Y27
0091
086
9 D
OM
INIO
NC
E19
69-1
119
75-1
119
75-1
290
.791
.1-
US
-423
MIL
LSTO
NE
-3P
WR
W (4
-loop
) DR
Y34
1112
5312
33 D
OM
INIO
NW
H19
74-8
1986
-219
86-4
89.6
89.6
- U
S -2
63M
ON
TIC
ELL
OB
WR
BW
R-3
1775
600
572
NS
PG
E19
67-6
1971
-319
71-6
86.0
86.0
- U
S -2
20N
INE
MIL
E P
OIN
T-1
BW
RB
WR
-2 (M
ark
118
5064
262
1 C
ON
STE
LLG
E19
65-4
1969
-11
1969
-12
94.0
94.0
- U
S -4
10N
INE
MIL
E P
OIN
T-2
BW
RB
WR
-5 (M
ark
234
6712
0511
19 C
ON
STE
LLG
E19
75-8
1987
-819
88-3
94.7
94.7
- U
S -3
38N
OR
TH A
NN
A-1
PW
RW
(3-lo
op)
2893
973
920
DO
MIN
ION
WH
1971
-219
78-4
1978
-688
.893
.3-
US
-339
NO
RTH
AN
NA
-2P
WR
W (3
-loop
)29
4099
494
3 D
OM
INIO
NW
H19
71-2
1980
-819
80-1
284
.489
.6-
US
-269
OC
ON
EE
-1P
WR
B&
W (L
-loop
)25
6889
184
6 D
UK
EE
NE
RB
&W
1967
-11
1973
-519
73-7
89.3
89.3
- U
S -2
70O
CO
NE
E-2
PW
RB
&W
(L-lo
op)
2568
891
846
DU
KE
EN
ER
B&
W19
67-1
119
73-1
219
74-9
91.4
91.4
- U
S -2
87O
CO
NE
E-3
PW
RB
&W
(L-lo
op)
2568
891
846
DU
KE
EN
ER
B&
W19
67-1
119
74-9
1974
-12
93.3
93.3
- U
S -2
19O
YS
TER
CR
EE
KB
WR
BW
R-2
(Mar
k 1
1930
652
619
EX
ELO
NG
E19
64-1
219
69-9
1969
-12
93.3
93.4
- U
S -2
55P
ALI
SA
DE
SP
WR
CE
(2-lo
op) D
R25
6584
279
3 E
NTE
RG
YC
E19
67-3
1971
-12
1971
-12
91.4
91.4
- U
S -5
28P
ALO
VE
RD
E-1
PW
RC
E (2
-loop
) DR
3990
1414
1311
AP
SC
E19
76-5
1985
-619
86-1
86.2
86.2
- U
S -5
29P
ALO
VE
RD
E-2
PW
RC
OM
B C
E80
DR
3990
1414
1314
AP
SC
E19
76-6
1986
-519
86-9
88.8
88.8
- U
S -5
30P
ALO
VE
RD
E-3
PW
RC
OM
B C
E80
DR
3990
1346
1312
AP
SC
E19
76-6
1987
-11
1988
-186
.686
.6-
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
45
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s U
S -2
77P
EA
CH
BO
TTO
M-2
BW
RB
WR
-4 (M
ark
135
1411
7111
22 E
XE
LON
GE
1968
-119
74-2
1974
-796
.696
.6-
US
-278
PE
AC
H B
OTT
OM
-3B
WR
BW
R-4
(Mar
k 1
3514
1171
1122
EX
ELO
NG
E19
68-1
1974
-919
74-1
294
.594
.5-
US
-440
PE
RR
Y-1
BW
RB
WR
-6 (M
ark
337
5813
0312
40 F
EN
OC
GE
1974
-10
1986
-12
1987
-11
85.1
85.1
- U
S -2
93P
ILG
RIM
-1B
WR
BW
R-3
(Mar
k 1
2028
711
685
EN
TER
GY
GE
1968
-819
72-7
1972
-12
93.4
93.6
- U
S -2
66P
OIN
T B
EA
CH
-1P
WR
W (2
-loop
) DR
Y15
4054
351
2 N
EX
TER
AW
H19
67-7
1970
-11
1970
-12
87.9
87.9
- U
S -3
01P
OIN
T B
EA
CH
-2P
WR
W (2
-loop
) DR
Y18
0064
558
6 N
EX
TER
AW
H19
68-7
1972
-819
72-1
088
.688
.6-
US
-282
PR
AIR
IE IS
LAN
D-1
PW
RW
(2-lo
op) D
RY
1650
566
521
NS
PW
H19
68-6
1973
-12
1973
-12
90.4
90.4
- U
S -3
06P
RA
IRIE
ISLA
ND
-2P
WR
W (2
-loop
) DR
Y16
5064
051
9 N
SP
WH
1969
-619
74-1
219
74-1
293
.993
.9-
US
-254
QU
AD
CIT
IES
-1B
WR
BW
R-3
(Mar
k 1
2957
913
882
EX
ELO
NG
E19
67-2
1972
-419
73-2
94.6
94.6
- U
S -2
65Q
UA
D C
ITIE
S-2
BW
RB
WR
-3 (M
ark
125
1191
389
2 E
XE
LON
GE
1967
-219
72-5
1973
-395
.795
.7-
US
-244
R.E
. GIN
NA
PW
RW
(2-lo
op)
1775
608
580
CO
NS
TELL
WH
1966
-419
69-1
219
70-7
94.5
94.5
- U
S -4
58R
IVE
R B
EN
D-1
BW
RB
WR
-6 (M
ark
330
9110
3696
7 E
NTE
RG
YG
E19
77-3
1985
-12
1986
-690
.091
.1-
US
-272
SA
LEM
-1P
WR
W (4
-loop
) DR
Y34
5912
2811
74 P
SE
GW
H19
68-9
1976
-12
1977
-692
.092
.3-
US
-311
SA
LEM
-2P
WR
W (4
-loop
) DR
Y34
5911
7011
58 P
SE
GW
H19
68-9
1981
-619
81-1
092
.092
.0-
US
-361
SA
N O
NO
FRE
-2P
WR
CE
(2-lo
op) D
R34
3811
2710
70 S
CE
CE
1974
-319
82-9
1983
-881
.982
.0-
US
-362
SA
N O
NO
FRE
-3P
WR
CE
(2-lo
op) D
R34
3811
2710
80 S
CE
CE
1974
-319
83-9
1984
-485
.185
.3-
US
-443
SE
AB
RO
OK
-1P
WR
W (4
-loop
) DR
Y35
8712
9612
47 N
EX
TER
AW
H19
76-7
1990
-519
90-8
89.7
89.7
- U
S -3
27S
EQ
UO
YA
H-1
PW
RW
(4-lo
op) I
CE
3411
1221
1152
TV
AW
H19
70-5
1980
-719
81-7
92.2
92.2
- U
S -3
28S
EQ
UO
YA
H-2
PW
RW
(4-lo
op) (
IC34
1112
2111
26 T
VA
WH
1970
-519
81-1
219
82-6
93.3
93.3
- U
S -4
00S
HE
AR
ON
HA
RR
IS-1
PW
RW
(3-lo
op) D
RY
2900
960
900
PR
OG
RE
SS
WH
1978
-119
87-1
1987
-594
.394
.3-
US
-498
SO
UTH
TE
XA
S-1
PW
RW
(4-lo
op)
3853
1354
1280
STP
WH
1975
-12
1988
-319
88-8
93.5
93.5
- U
S -4
99S
OU
TH T
EX
AS
-2P
WR
W (4
-loop
) DR
Y38
5313
5412
80 S
TPW
H19
75-1
219
89-4
1989
-689
.689
.6-
US
-335
ST.
LU
CIE
-1P
WR
CO
MB
CE
DR
Y27
0088
383
9 F
PL
CE
1970
-719
76-5
1976
-12
88.0
88.0
- U
S -3
89S
T. L
UC
IE-2
PW
RC
OM
B C
E D
RY
2700
883
839
FP
LC
E19
77-6
1983
-619
83-8
81.2
81.2
- U
S -2
80S
UR
RY
-1P
WR
W (3
-loop
) DR
Y25
4684
883
9 D
OM
INIO
NW
H19
68-6
1972
-719
72-1
293
.293
.6-
US
-281
SU
RR
Y-2
PW
RW
(3-lo
op) D
RY
2546
848
839
DO
MIN
ION
WH
1968
-619
73-3
1973
-592
.392
.3-
US
-387
SU
SQ
UE
HA
NN
A-1
BW
RB
WR
-4 (M
ark
239
5212
9812
60 P
PL
SU
SQ
GE
1973
-11
1982
-11
1983
-689
.989
.9-
US
-388
SU
SQ
UE
HA
NN
A-2
BW
RB
WR
-4 (M
ark
234
8913
0012
60 P
PL
SU
SQ
GE
1973
-11
1984
-719
85-2
90.3
90.3
- U
S -2
89TH
RE
E M
ILE
ISLA
ND
-1P
WR
B&
W (L
-loop
)25
6883
780
5 E
XE
LON
B&
W19
68-5
1974
-619
74-9
91.4
91.4
- U
S -2
50TU
RK
EY
PO
INT-
3P
WR
W (3
-loop
) DR
Y23
0072
969
3 F
PL
WH
1967
-419
72-1
119
72-1
289
.690
.0-
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
46
EA
F %
UC
F %
Non
-20
07–
2007
–el
ectri
cal
Cod
eN
ame
Ther
mal
Gro
ssN
et20
1120
11ap
plic
s U
S -2
51TU
RK
EY
PO
INT-
4P
WR
W (3
-loop
) DR
Y23
0072
969
3 F
PL
WH
1967
-419
73-6
1973
-989
.990
.0-
US
-271
VE
RM
ON
T Y
AN
KE
EB
WR
BW
R-4
(Mar
k 1
1912
650
620
EN
TER
GY
GE
1967
-12
1972
-919
72-1
194
.194
.1-
US
-395
VIR
GIL
C. S
UM
ME
R-1
PW
RW
(3-lo
op) D
RY
2900
1003
966
SC
E&
GW
H19
73-3
1982
-11
1984
-190
.390
.3-
US
-424
VO
GTL
E-1
PW
RW
(4-lo
op) D
RY
3565
1203
1150
SO
UTH
ER
NW
H19
76-8
1987
-319
87-6
94.0
94.0
- U
S -4
25V
OG
TLE
-2P
WR
W (4
-loop
) DR
Y35
6512
0211
52 S
OU
THE
RN
WH
1976
-819
89-4
1989
-591
.291
.2-
US
-382
WA
TER
FOR
D-3
PW
RC
E (2
-loop
)37
1612
0011
68 E
NTE
RG
YC
E19
74-1
119
85-3
1985
-992
.392
.8-
US
-390
WA
TTS
BA
R-1
PW
RW
(4-lo
op) (
IC34
5912
0211
23 T
VA
WH
1973
-119
96-2
1996
-591
.391
.3-
US
-482
WO
LF C
RE
EK
PW
RW
(4-lo
op)
3565
1213
1195
WC
NO
CW
H19
77-5
1985
-619
85-9
86.9
86.9
-
Not
e: S
tatu
s as
of 3
1 D
ecem
ber 2
011,
435
reac
tors
(368
791
MW
) wer
e co
nnec
ted
to th
e gr
id, i
nclu
ding
6 u
nits
(501
8 M
W) i
n Ta
iwan
, Chi
na:
TAIW
AN
, CN
TW
-1C
HIN
SH
AN
-1B
WR
BW
R-4
1804
636
604
TP
CG
E19
72-6
1977
-11
1978
-12
87.0
87.2
-TA
IWA
N, C
N T
W -2
CH
IN S
HA
N-2
BW
RB
WR
-418
0463
660
4 T
PC
GE
1973
-12
1978
-12
1979
-790
.690
.9-
TAIW
AN
, CN
TW
-3K
UO
SH
EN
G-1
BW
RB
WR
-629
4310
1998
5 T
PC
GE
1975
-11
1981
-519
81-1
291
.692
.4-
TAIW
AN
, CN
TW
-4K
UO
SH
EN
G-2
BW
RB
WR
-629
4310
2098
5 T
PC
GE
1976
-319
82-6
1983
-388
.890
.3-
TAIW
AN
, CN
TW
-5M
AA
NS
HA
N-1
PW
RW
E 3
12 (3
loop
2822
956
918
TP
CW
H19
78-8
1984
-519
84-7
94.3
94.4
-TA
IWA
N, C
N T
W -6
MA
AN
SH
AN
-2P
WR
WE
312
(3 lo
op28
2295
892
2 T
PC
WH
1979
-219
85-2
1985
-593
.393
.3-
TAB
LE 1
4. R
EAC
TOR
S IN
OPE
RA
TIO
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
Ope
rato
rN
SS
Ssu
pplie
rC
onst
ruct
ion
star
tG
ridco
nnec
tion
Com
mer
cial
oper
atio
n
47
Cod
eN
ame
Ther
mal
Gro
ssN
et
CA
NA
DA
CA
-8B
RU
CE
-1 P
HW
RC
AN
DU
791
2832
824
848
BR
UC
EP
OW
OH
/AE
CL
1971
-619
77-1
1977
-919
97-1
0 C
A -9
BR
UC
E-2
PH
WR
CA
ND
U 7
9128
3282
484
8 B
RU
CE
PO
WO
H/A
EC
L19
70-1
219
76-9
1977
-919
95-1
0 C
A -5
PIC
KE
RIN
G-2
PH
WR
CA
ND
U 5
00A
1744
542
515
OP
GO
H/A
EC
L19
66-9
1971
-10
1971
-12
1997
-12
CA
-6P
ICK
ER
ING
-3P
HW
RC
AN
DU
500
A17
4454
251
5 O
PG
OH
/AE
CL
1967
-12
1972
-519
72-6
1997
-12
JA
PA
N J
P -3
1M
ON
JUFB
R-
714
280
246
JA
EA
T/H
/F/M
1986
-519
95-8
—19
95-1
2
Not
e: S
tatu
s as
of 3
1 D
ecem
ber 2
011,
5 re
acto
rs (2
972
MW
) wer
e in
long
term
shu
tdow
n.
TAB
LE 1
5. R
EAC
TOR
S IN
LO
NG
TER
M S
HU
TDO
WN
, 31
DEC
. 201
1
Ope
rato
rLo
ng te
rm
shut
dow
nda
te
NS
SS
supp
lier
Con
stru
ctio
nst
art
Grid
conn
ectio
nC
omm
erci
alop
erat
ion
Cou
ntry
Rea
ctor
Type
Mod
elC
apac
ity (M
W)
48
Cod
eN
ame
Ther
mal
Gro
ssN
et A
RM
EN
IA A
M -1
8A
RM
EN
IA-1
PW
R13
7540
837
6 A
NP
PJS
CFA
EA
1969
-719
76-1
219
77-1
019
89-2
BE
LGIU
M B
E -1
BR
-3 P
WR
4112
10 C
EN
/SC
KW
H19
57-1
119
62-1
019
62-1
019
87-6
BU
LGA
RIA
BG
-1K
OZL
OD
UY
-1 P
WR
1375
440
408
KO
ZNP
PA
EE
1970
-419
74-7
1974
-10
2002
-12
BG
-2K
OZL
OD
UY
-2 P
WR
1375
440
408
KO
ZNP
PA
EE
1970
-419
75-8
1975
-11
2002
-12
BG
-3K
OZL
OD
UY
-3 P
WR
1375
440
408
KO
ZNP
PA
EE
1973
-10
1980
-12
1981
-120
06-1
2 B
G -4
KO
ZLO
DU
Y-4
PW
R13
7544
040
8 K
OZN
PP
AE
E19
73-1
019
82-5
1982
-620
06-1
2
CA
NA
DA
CA
-2D
OU
GLA
S P
OIN
T P
HW
R70
421
820
6 O
HA
EC
L19
60-2
1967
-119
68-9
1984
-5 C
A -3
GE
NTI
LLY
-1 H
WLW
R79
226
625
0 H
QA
EC
L19
66-9
1971
-419
72-5
1977
-6 C
A -1
RO
LPH
TON
NP
D P
HW
R92
2522
OH
CG
E19
58-1
1962
-619
62-1
019
87-8
FR
AN
CE
FR
-9B
UG
EY
-1 G
CR
1954
555
540
ED
FFR
AM
1965
-12
1972
-419
72-7
1994
-5 F
R -2
CH
INO
N-A
1 G
CR
300
8070
ED
FLE
VIV
IER
1957
-219
63-6
1964
-219
73-4
FR
-3C
HIN
ON
-A2
GC
R80
023
018
0 E
DF
LEV
IVIE
R19
59-8
1965
-219
65-2
1985
-6 F
R -4
CH
INO
N-A
3 G
CR
1170
480
360
ED
FG
TM19
61-3
1966
-819
66-8
1990
-6 F
R -5
CH
OO
Z-A
(AR
DE
NN
ES
) P
WR
1040
320
305
SE
NA
A/F
/W19
62-1
1967
-419
67-4
1991
-10
FR
-6E
L-4
(MO
NTS
D'A
RR
EE
) H
WG
CR
250
7570
ED
FG
AA
A19
62-7
1967
-719
68-6
1985
-7 F
R -1
BG
-2 (M
AR
CO
ULE
) G
CR
260
4339
CO
GE
MA
SA
CM
1955
-319
59-4
1959
-419
80-2
FR
-1G
-3 (M
AR
CO
ULE
) G
CR
260
4340
CO
GE
MA
SA
CM
1956
-319
60-4
1960
-419
84-6
FR
-10
PH
EN
IX F
BR
345
142
130
CE
A/E
DF
CN
CLN
EY
1968
-11
1973
-12
1974
-720
10-2
FR
-7S
T. L
AU
RE
NT-
A1
GC
R16
5050
039
0 E
DF
FRA
M19
63-1
019
69-3
1969
-619
90-4
FR
-8S
T. L
AU
RE
NT-
A2
GC
R14
7553
046
5 E
DF
FRA
M19
66-1
1971
-819
71-1
119
92-5
FR
-24
SU
PE
R-P
HE
NIX
FB
R30
0012
4212
00 E
DF
AS
PA
LDO
1976
-12
1986
-119
86-1
219
98-1
2
GE
RM
AN
Y D
E -4
AV
R J
UE
LIC
H (A
VR
) H
TGR
4615
13 A
VR
BB
K19
61-8
1967
-12
1969
-519
88-1
2 D
E -1
2B
IBLI
S-A
(KW
B A
) P
WR
3517
1225
1167
RW
EK
WU
1970
-119
74-8
1975
-220
11-8
DE
-18
BIB
LIS
-B (K
WB
B)
PW
R37
3313
0012
40 R
WE
KW
U19
72-2
1976
-419
77-1
2011
-8 D
E -1
3B
RU
NS
BU
ETT
EL
(KK
B)
BW
R22
9280
677
1 K
KB
KW
U19
70-4
1976
-719
77-2
2011
-8 D
E -5
02G
RE
IFS
WA
LD-1
(KG
R 1
) P
WR
1375
440
408
EW
NA
tEE
1970
-319
73-1
219
74-7
1990
-2
TAB
LE 1
6. R
EAC
TOR
S PE
RM
AN
ENTL
Y SH
UTD
OW
N, 3
1 D
EC. 2
011
Cou
ntry
Rea
ctor
Type
Cap
acity
(MW
)S
hut d
own
Ope
rato
rC
omm
erci
alop
erat
ion
NS
SS
supp
lier
Con
stru
ctio
nst
art
Grid
conn
ectio
n
49
Cod
eN
ame
Ther
mal
Gro
ssN
et G
ER
MA
NY
DE
-503
GR
EIF
SW
ALD
-2 (K
GR
2)
PW
R13
7544
040
8 E
WN
AtE
E19
70-3
1974
-12
1975
-419
90-2
DE
-504
GR
EIF
SW
ALD
-3 (K
GR
3)
PW
R13
7544
040
8 E
WN
AtE
E19
72-4
1977
-10
1978
-519
90-2
DE
-505
GR
EIF
SW
ALD
-4 (K
GR
4)
PW
R13
7544
040
8 E
WN
AtE
E19
72-4
1979
-919
79-1
119
90-7
DE
-506
GR
EIF
SW
ALD
-5 (K
GR
5)
PW
R13
7544
040
8 E
WN
AtE
E19
76-1
219
89-4
1989
-11
1989
-11
DE
-3G
UN
DR
EM
MIN
GE
N-A
(KR
B A
) B
WR
801
250
237
KG
BA
EG
,GE
1962
-12
1966
-12
1967
-419
77-1
DE
-7H
DR
GR
OS
SW
ELZ
HE
IM B
WR
100
2525
HD
RA
EG
,KW
U19
65-1
1969
-10
1970
-819
71-4
DE
-16
ISA
R-1
(KK
I 1)
BW
R25
7591
287
8 E
.ON
KW
U19
72-5
1977
-12
1979
-320
11-8
DE
-8K
NK
II F
BR
5821
17 K
BG
IA19
74-9
1978
-419
79-3
1991
-8 D
E -2
0K
RU
EM
ME
L (K
KK
) B
WR
3690
1402
1346
KK
KK
WU
1974
-419
83-9
1984
-320
11-8
DE
-6LI
NG
EN
(KW
L) B
WR
520
268
183
KW
LA
EG
1964
-10
1968
-719
68-1
019
79-1
DE
-22
MU
ELH
EIM
-KA
ER
LIC
H (K
MK
) P
WR
3760
1302
1219
KG
GB
BR
1975
-119
86-3
1987
-819
88-9
DE
-2M
ZFR
PH
WR
200
5752
KB
GS
IEM
EN
S19
61-1
219
66-3
1966
-12
1984
-5 D
E -1
5N
EC
KA
RW
ES
THE
IM-1
(GK
N 1
) P
WR
2497
840
785
EnK
KK
WU
1972
-219
76-6
1976
-12
2011
-8 D
E -1
1N
IED
ER
AIC
HB
AC
H (K
KN
) H
WG
CR
321
106
100
KK
NS
IEM
,KW
U19
66-6
1973
-119
73-1
1974
-7 D
E -5
OB
RIG
HE
IM (K
WO
) P
WR
1050
357
340
EnB
WS
IEM
,KW
U19
65-3
1968
-10
1969
-320
05-5
DE
-14
PH
ILIP
PS
BU
RG
-1 (K
KP
1)
BW
R25
7592
689
0 E
nKK
KW
U19
70-1
019
79-5
1980
-320
11-8
DE
-501
RH
EIN
SB
ER
G (K
KR
) P
WR
265
7062
EW
NA
tEE
1960
-119
66-5
1966
-10
1990
-6 D
E -1
0S
TAD
E (K
KS
) P
WR
1900
672
640
E.O
NK
WU
1967
-12
1972
-119
72-5
2003
-11
DE
-19
THTR
-300
HTG
R75
030
829
6 H
KG
HR
B19
71-5
1985
-11
1987
-619
88-4
DE
-17
UN
TER
WE
SE
R (K
KU
) P
WR
3900
1410
1345
E.O
NK
WU
1972
-719
78-9
1979
-920
11-8
DE
-1V
AK
KA
HL
BW
R60
1615
VA
KG
E,A
EG
1958
-719
61-6
1962
-219
85-1
1 D
E -9
WU
ER
GA
SS
EN
(KW
W)
BW
R19
1267
064
0 P
EA
EG
,KW
U19
68-1
1971
-12
1975
-11
1994
-8
ITA
LY IT
-4C
AO
RS
O B
WR
2651
882
860
SO
GIN
AM
N/G
ETS
1970
-119
78-5
1981
-12
1990
-7 IT
-3E
NR
ICO
FE
RM
I (TR
INO
) P
WR
870
270
260
SO
GIN
EL/
WE
ST
1961
-719
64-1
019
65-1
1990
-7 IT
-2G
AR
IGLI
AN
O B
WR
506
160
150
SO
GIN
GE
1959
-11
1964
-119
64-6
1982
-3 IT
-1LA
TIN
A G
CR
660
160
153
SO
GIN
TNP
G19
58-1
119
63-5
1964
-119
87-1
2
JA
PA
N J
P -2
0FU
GE
N A
TR H
WLW
R55
716
514
8 J
AE
AH
ITA
CH
I19
72-5
1978
-719
79-3
2003
-3 J
P -5
FUK
US
HIM
A-D
AIIC
HI-1
BW
R13
8046
043
9 T
EP
CO
GE
/GE
TSC
1967
-719
70-1
119
71-3
2011
-5 J
P -9
FUK
US
HIM
A-D
AIIC
HI-2
BW
R23
8178
476
0 T
EP
CO
GE
/T19
69-6
1973
-12
1974
-720
11-5
JP
-10
FUK
US
HIM
A-D
AIIC
HI-3
BW
R23
8178
476
0 T
EP
CO
TOS
HIB
A19
70-1
219
74-1
019
76-3
2011
-5
TAB
LE 1
6. R
EAC
TOR
S PE
RM
AN
ENTL
Y SH
UTD
OW
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Cap
acity
(MW
) O
pera
tor
NS
SS
supp
lier
Con
stru
ctio
nst
art
Grid
conn
ectio
nC
omm
erci
alop
erat
ion
Shu
t dow
n
50
Cod
eN
ame
Ther
mal
Gro
ssN
et J
AP
AN
JP
-16
FUK
US
HIM
A-D
AIIC
HI-4
BW
R23
8178
476
0 T
EP
CO
HIT
AC
HI
1973
-219
78-2
1978
-10
2011
-5 J
P -1
1H
AM
AO
KA
-1 B
WR
1593
540
515
CH
UB
UTO
SH
IBA
1971
-619
74-8
1976
-320
09-1
JP
-24
HA
MA
OK
A-2
BW
R24
3684
080
6 C
HU
BU
TOS
HIB
A19
74-6
1978
-519
78-1
120
09-1
JP
-1JP
DR
BW
R90
1312
JA
EA
GE
1960
-12
1963
-10
1965
-319
76-3
JP
-2TO
KA
I-1 G
CR
587
166
137
JA
PC
OG
EC
1961
-319
65-1
119
66-7
1998
-3
KA
ZAK
HS
TAN
KZ
-10
BN
-350
FB
R10
0090
52 M
AE
C-K
AZ
MA
EC
-KA
Z19
64-1
019
73-7
1973
-719
99-4
LIT
HU
AN
IA L
T -4
6IG
NA
LIN
A-1
LW
GR
4800
1300
1185
INP
PM
AE
P19
77-5
1983
-12
1984
-520
04-1
2 L
T -4
7IG
NA
LIN
A-2
LW
GR
4800
1300
1185
INP
PM
AE
P19
78-1
1987
-819
87-8
2009
-12
NE
THE
RLA
ND
S N
L -1
DO
DE
WA
AR
D B
WR
183
6055
BV
GK
NR
DM
1965
-519
68-1
019
69-3
1997
-3
RU
SS
IA R
U -1
AP
S-1
OB
NIN
SK
LW
GR
306
5 R
EA
MS
M19
51-1
1954
-619
54-1
220
02-4
RU
-3B
ELO
YA
RS
KY
-1 L
WG
R28
610
810
2 R
EA
MS
M19
58-6
1964
-419
64-4
1983
-1 R
U -6
BE
LOY
AR
SK
Y-2
LW
GR
530
160
146
RE
AM
SM
1962
-119
67-1
219
69-1
219
90-1
RU
-4N
OV
OV
OR
ON
EZH
-1 P
WR
760
210
197
RE
AM
SM
1957
-719
64-9
1964
-12
1988
-2 R
U -8
NO
VO
VO
RO
NE
ZH-2
PW
R13
2036
533
6 R
EA
MS
M19
64-6
1969
-12
1970
-419
90-8
SLO
VA
KIA
SK
-1B
OH
UN
ICE
A1
HW
GC
R56
014
393
JA
VY
SS
KO
DA
1958
-819
72-1
219
72-1
219
77-2
SK
-2B
OH
UN
ICE
-1 P
WR
1375
440
408
JA
VY
SA
EE
1972
-419
78-1
219
80-4
2006
-12
SK
-3B
OH
UN
ICE
-2 P
WR
1375
440
408
JA
VY
SA
EE
1972
-419
80-3
1981
-120
08-1
2
SP
AIN
ES
-1JO
SE
CA
BR
ER
A-1
(ZO
RIT
A)
PW
R51
015
014
1 U
FGW
H19
64-6
1968
-719
69-8
2006
-4 E
S -3
VA
ND
ELL
OS
-1 G
CR
1670
500
480
HIF
RE
NS
AC
EA
1968
-619
72-5
1972
-819
90-7
SW
ED
EN
SE
-1A
GE
STA
PH
WR
8012
10 B
KA
BA
BB
ATO
M19
57-1
219
64-5
1964
-519
74-6
SE
-6B
AR
SE
BA
CK
-1 B
WR
1800
615
600
BK
AB
AS
EA
STA
L19
71-2
1975
-519
75-7
1999
-11
SE
-8B
AR
SE
BA
CK
-2 B
WR
1800
615
600
BK
AB
AB
BA
TOM
1973
-119
77-3
1977
-720
05-5
SW
ITZE
RLA
ND
CH
-8LU
CE
NS
HW
GC
R28
66
EO
SN
GA
1962
-419
68-1
NA
1969
-1
UK
GB
-3A
BE
RK
ELE
Y 1
GC
R62
016
613
8 M
EL
TNP
G19
57-1
1962
-619
62-6
1989
-3
TAB
LE 1
6. R
EAC
TOR
S PE
RM
AN
ENTL
Y SH
UTD
OW
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Cap
acity
(MW
) O
pera
tor
NS
SS
supp
lier
Con
stru
ctio
nst
art
Grid
conn
ectio
nC
omm
erci
alop
erat
ion
Shu
t dow
n
51
Cod
eN
ame
Ther
mal
Gro
ssN
et U
K G
B -3
BB
ER
KE
LEY
2 G
CR
620
166
138
ME
LTN
PG
1957
-119
62-6
1962
-10
1988
-10
GB
-4A
BR
AD
WE
LL 1
GC
R48
114
612
3 M
EL
TNP
G19
57-1
1962
-719
62-7
2002
-3 G
B -4
BB
RA
DW
ELL
2 G
CR
481
146
123
ME
LTN
PG
1957
-119
62-7
1962
-11
2002
-3 G
B -1
AC
ALD
ER
HA
LL 1
GC
R26
860
49 M
EL
UK
AE
A19
53-8
1956
-819
56-1
020
03-3
GB
-1B
CA
LDE
R H
ALL
2 G
CR
268
6049
ME
LU
KA
EA
1953
-819
57-2
1957
-220
03-3
GB
-1C
CA
LDE
R H
ALL
3 G
CR
268
6049
ME
LU
KA
EA
1955
-819
58-3
1958
-520
03-3
GB
-1D
CA
LDE
R H
ALL
4 G
CR
268
6049
ME
LU
KA
EA
1955
-819
59-4
1959
-420
03-3
GB
-2A
CH
AP
ELC
RO
SS
1 G
CR
260
6048
ME
LU
KA
EA
1955
-10
1959
-219
59-3
2004
-6 G
B -2
BC
HA
PE
LCR
OS
S 2
GC
R26
060
48 M
EL
UK
AE
A19
55-1
019
59-7
1959
-820
04-6
GB
-2C
CH
AP
ELC
RO
SS
3 G
CR
260
6048
ME
LU
KA
EA
1955
-10
1959
-11
1959
-12
2004
-6 G
B -2
DC
HA
PE
LCR
OS
S 4
GC
R26
060
48 M
EL
UK
AE
A19
55-1
019
60-1
1960
-320
04-6
GB
-14
DO
UN
RE
AY
DFR
FB
R60
1511
UK
AE
AU
KA
EA
1955
-319
62-1
019
62-1
019
77-3
GB
-15
DO
UN
RE
AY
PFR
FB
R60
025
023
4 U
KA
EA
TNP
G19
66-1
1975
-119
76-7
1994
-3 G
B -9
AD
UN
GE
NE
SS
-A1
GC
R84
023
022
5 M
EL
TNP
G19
60-7
1965
-919
65-1
020
06-1
2 G
B -9
BD
UN
GE
NE
SS
-A2
GC
R84
023
022
5 M
EL
TNP
G19
60-7
1965
-11
1965
-12
2006
-12
GB
-7A
HIN
KLE
Y P
OIN
T-A
1 G
CR
900
267
235
ME
LE
E/B
&W
/T19
57-1
119
65-2
1965
-320
00-5
GB
-7B
HIN
KLE
Y P
OIN
T-A
2 G
CR
900
267
235
ME
LE
E/B
&W
/T19
57-1
119
65-3
1965
-520
00-5
GB
-6A
HU
NTE
RS
TON
-A1
GC
R59
517
315
0 M
EL
GE
C19
57-1
019
64-2
1964
-219
90-3
GB
-6B
HU
NTE
RS
TON
-A2
GC
R59
517
315
0 M
EL
GE
C19
57-1
019
64-6
1964
-719
89-1
2 G
B -1
1BO
LDB
UR
Y-A
2 G
CR
660
230
217
ME
LTN
PG
1962
-519
68-4
1968
-920
11-6
GB
-10A
SIZ
EW
ELL
-A1
GC
R10
1024
521
0 M
EL
EE
/B&
W/T
1961
-419
66-1
1966
-320
06-1
2 G
B -1
0BS
IZE
WE
LL-A
2 G
CR
1010
245
210
ME
LE
E/B
&W
/T19
61-4
1966
-419
66-9
2006
-12
GB
-8A
TRA
WS
FYN
YD
D 1
GC
R85
023
519
5 M
EL
AP
C19
59-7
1965
-119
65-3
1991
-2 G
B -8
BTR
AW
SFY
NY
DD
2 G
CR
850
235
195
ME
LA
PC
1959
-719
65-2
1965
-319
91-2
GB
-5W
IND
SC
ALE
AG
R G
CR
120
3624
UK
AE
AU
KA
EA
1958
-11
1963
-219
63-3
1981
-4 G
B -1
2W
INFR
ITH
SG
HW
R S
GH
WR
318
100
92 U
KA
EA
ICL/
FE19
63-5
1967
-12
1968
-119
90-9
UK
RA
INE
UA
-25
CH
ER
NO
BY
L-1
LW
GR
3200
800
740
MTE
FAE
A19
70-3
1977
-919
78-5
1996
-11
UA
-26
CH
ER
NO
BY
L-2
LW
GR
3200
1000
925
MTE
FAE
A19
73-2
1978
-12
1979
-519
91-1
0 U
A -4
2C
HE
RN
OB
YL-
3 L
WG
R32
0010
0092
5 M
TEFA
EA
1976
-319
81-1
219
82-6
2000
-12
UA
-43
CH
ER
NO
BY
L-4
LW
GR
3200
1000
925
MTE
FAE
A19
79-4
1983
-12
1984
-319
86-4
US
A U
S -1
55B
IG R
OC
K P
OIN
T B
WR
240
7167
CP
CG
E19
60-5
1962
-12
1963
-319
97-8
TAB
LE 1
6. R
EAC
TOR
S PE
RM
AN
ENTL
Y SH
UTD
OW
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Cap
acity
(MW
) O
pera
tor
NS
SS
supp
lier
Con
stru
ctio
nst
art
Grid
conn
ectio
nC
omm
erci
alop
erat
ion
Shu
t dow
n
52
Cod
eN
ame
Ther
mal
Gro
ssN
et U
SA
US
-014
BO
NU
S B
WR
5018
17 D
OE
/PR
WR
GN
EP
RW
RA
1960
-119
64-8
1965
-919
68-6
US
-144
CV
TR P
HW
R65
1917
CV
PA
WH
1960
-119
63-1
2N
A19
67-1
US
-10
DR
ES
DE
N-1
BW
R70
020
719
7 E
XE
LON
GE
1956
-519
60-4
1960
-719
78-1
0 U
S -0
11E
LK R
IVE
R B
WR
5824
22 R
CP
AA
C19
59-1
1963
-819
64-7
1968
-2 U
S -1
6E
NR
ICO
FE
RM
I-1 F
BR
200
6561
DTE
DIS
ON
UE
C19
56-8
1966
-8N
A19
72-1
1 U
S -2
67FO
RT
ST.
VR
AIN
HTG
R84
234
233
0 P
SC
CG
A19
68-9
1976
-12
1979
-719
89-8
US
-018
GE
VA
LLE
CIT
OS
BW
R50
2424
GE
GE
1956
-119
57-1
019
57-1
019
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256
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HU
MB
OLD
T B
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900
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641
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1966
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1969
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1989
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1968
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1954
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1973
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98-2
Not
e: S
tatu
s as
of 3
1 D
ecem
ber 2
011,
138
reac
tors
(491
52 M
W) h
ave
been
per
man
ently
shu
t dow
n.
TAB
LE 1
6. R
EAC
TOR
S PE
RM
AN
ENTL
Y SH
UTD
OW
N, 3
1 D
EC. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Type
Cap
acity
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pera
tor
NS
SS
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lier
Con
stru
ctio
nst
art
Grid
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ectio
nC
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alop
erat
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7. R
EAC
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S IN
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OM
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SIO
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G P
RO
CES
S O
R D
ECO
MM
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ntry
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rent
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ase
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LY IT
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ther
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IT -3
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TAB
LE 1
7. R
EAC
TOR
S IN
DEC
OM
MIS
SIO
NIN
G P
RO
CES
S O
R D
ECO
MM
ISSI
ON
ED, 3
1 D
ec. 2
011
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ontin
ued
Cou
ntry
Rea
ctor
Shu
tdo
wn
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tdow
n re
ason
Dec
om.
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tegy
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rent
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om.
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rent
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ase
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see
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nce
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ed
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106
Dd+
SE
117
EX
ELO
N U
S -1
30P
ATH
FIN
DE
R 1
967-
105
Dd+
SE
11 N
MC
US
-133
HU
MB
OLD
T B
AY
197
6-7
5D
d+P
D+S
E3,
4,6,
9 P
G&
E20
13 U
S -1
44C
VTR
196
7-1
7 ,O
ther
Dd+
SE
CV
PA
2009
US
-146
SA
XTO
N 1
972-
5O
ther
Imdt
e.di
sm.
GP
UN
C20
05 U
S -1
55B
IG R
OC
K P
OIN
T 1
997-
82 ,
Oth
erIm
dte.
dism
.7
CP
C20
07
TAB
LE 1
7. R
EAC
TOR
S IN
DEC
OM
MIS
SIO
NIN
G P
RO
CES
S O
R D
ECO
MM
ISSI
ON
ED, 3
1 D
ec. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Shu
tdo
wn
Shu
tdow
n re
ason
Dec
om.
stra
tegy
Cur
rent
dec
om.
phas
e
Cur
rent
fuel
m
anag
emen
tph
ase
Dec
om.
licen
see
Lice
nce
term
inat
ed
56
Cod
eN
ame
US
A U
S -1
6E
NR
ICO
FE
RM
I-1 1
972-
114,
5D
d+S
E9,
11 D
TED
ISO
N20
25 U
S -1
71P
EA
CH
BO
TTO
M-1
197
4-11
1D
d+S
E1
EX
ELO
N U
S -2
06S
AN
ON
OFR
E-1
199
2-11
Oth
erD
d+P
D+S
E4
SC
E20
08 U
S -2
13H
AD
DA
M N
EC
K 1
996-
126
Imdt
e.di
sm.
4,6
CY
AP
C20
07 U
S -2
45M
ILLS
TON
E-1
199
8-7
6D
d+P
D+S
E D
OM
INR
ES
US
-267
FOR
T S
T. V
RA
IN 1
989-
81 ,
Oth
erIm
dte.
dism
. P
SC
C19
96 U
S -2
9Y
AN
KE
E N
PS
199
1-10
5 ,7
Imdt
e.di
sm.
4,6
YA
EC
2005
US
-295
ZIO
N-1
199
8-2
5 ,6
Dd+
PD
+SE
1 C
omm
onE
d U
S -3
04ZI
ON
-2 1
998-
25 ,
6D
d+P
D+S
E1
CO
MM
ED
US
-309
MA
INE
YA
NK
EE
199
7-8
6Im
dte.
dism
.4
7 M
YA
PC
2005
US
-312
RA
NC
HO
SE
CO
-1 1
989-
65 ,
6D
d+P
D+S
E9
SM
UD
2009
US
-320
THR
EE
MIL
E IS
LAN
D-2
197
9-3
4 ,5
Oth
er11
4 G
PU
US
-322
SH
OR
EH
AM
198
9-5
7 ,O
ther
Imdt
e.di
sm.
LIP
A19
95 U
S -3
44TR
OJA
N 1
992-
116
Dd+
PD
+SE
PO
RTG
E20
05 U
S -4
09LA
CR
OS
SE
198
7-4
2D
d+P
D+S
E7
DP
C
TAB
LE 1
7. R
EAC
TOR
S IN
DEC
OM
MIS
SIO
NIN
G P
RO
CES
S O
R D
ECO
MM
ISSI
ON
ED, 3
1 D
ec. 2
011
— c
ontin
ued
Cou
ntry
Rea
ctor
Shu
tdo
wn
Shu
tdow
n re
ason
Dec
om.
stra
tegy
Cur
rent
dec
om.
phas
e
Cur
rent
fuel
m
anag
emen
tph
ase
Dec
om.
licen
see
Lice
nce
term
inat
ed
57
1 2 3 4 5 6 7 unde
fd
1 2 3 4 5 6 7 8TAB
LE 1
7. D
EFI
NIT
ION
S F
OR
RE
AC
TOR
S IN
DE
CO
MM
ISS
ION
ING
PR
OC
ES
S O
R D
EC
OM
MIS
SIO
NE
D
Shu
tdow
n re
ason
Des
crip
tion
The
tech
nolo
gy o
r pro
cess
bei
ng u
sed
beca
me
obso
let e
The
proc
ess
was
no
long
er p
rofit
able
Ther
e w
ere
chan
ges
in li
cens
ing
requ
irem
ents
Afte
r an
oper
atin
g in
cide
nt
Oth
er te
chno
logi
cal r
easo
n sO
ther
eco
nom
ical
reas
ons
Pub
lic a
ccep
tanc
e re
ason
sO
ther
Fuel
Man
agem
ent
Des
crip
tion
Tran
sfer
to a
reac
tor f
acili
tyTr
ansf
er a
way
from
reac
tor f
acili
tyS
tora
ge in
an
on-s
ite fa
cilit
yS
tora
ge in
an
off-s
ite fa
cilit
y
Shi
pmen
t to
a re
proc
essi
ng p
lan t
Und
erw
ater
sto
rage
Dry
sto
rage
Enc
apsu
latio
n
Dec
omm
issi
onin
g st
rate
gyD
escr
iptio
n
Imdt
e.di
sm.
Imm
edia
te d
ism
antli
ng a
nd re
mov
al o
f all
radi
oact
ive
mat
eria
lsD
d+S
ED
efer
red
dism
antli
ng, p
laci
ng a
ll ra
diol
ogic
al a
reas
into
saf
e en
clos
ure
Dd+
PD
+SE
Def
erre
d di
sman
tling
, inc
ludi
ng p
artia
l dis
man
tling
and
pla
cing
rem
anin
ing
radi
olog
ical
are
as in
to s
afe
encl
osur
ein
situ
dis
p.In
situ
dis
posa
l, in
volv
ing
enca
psul
atio
n of
radi
oact
ive
mat
eria
lsan
d su
bseq
uent
rest
rictio
n of
acc
ess
unde
fined
Oth
er
Cur
rent
dec
omm
issi
onin
g ph
ase
Des
crip
tion
1D
raw
ing
up th
e fin
al d
ecom
mis
sion
ing
plan
2R
eact
or c
ore
defu
ellin
g3
Was
te c
ondi
tioni
ng o
n-si
te (o
nly
for d
ecom
mis
sion
ing
was
te)
4W
aste
shi
pmen
t off-
site
(onl
y fo
r dec
omm
issi
onin
g w
aste
)
5S
afe
encl
osur
e pr
epar
atio
n6
Par
tial d
ism
antli
ng7
Act
ive
safe
enc
losu
re p
erio
d8
Pas
sive
saf
e en
clos
ure
perio
d
proc
ess )
9Fi
nal d
ism
antli
ng10
Fina
l sur
vey
11Li
cenc
e te
rmin
ated
(leg
al a
ct a
t the
end
of t
he d
ecom
mis
sion
ing
58
Num
ber
Ava
ilabi
lity
Pla
nned
cap
.loss
Cap
abili
tyFo
rced
loss
Ope
ratin
gLo
adof
fact
orfa
ctor
fact
orra
tefa
ctor
fact
orun
its(%
)(%
)(%
)(%
)(%
)(%
) P
WR
271
82
.7
12.2
83
.8
2.7
83
.6
81.8
PW
R <
600
Mw
(e)
47
83.2
15
.1
83.5
1.
3
83.8
82
.0
PW
R >
= 60
0 M
W(e
)22
4
82.7
11
.9
83.8
2.
8
83.5
81
.8
BW
R94
73
.0
18.9
74
.5
5.9
73
.7
71.8
BW
R <
600
MW
(e)
12
64.7
22
.9
67.4
10
.7
68.1
64
.6
BW
R >
= 60
0 M
W(e
)82
73
.6
18.5
75
.0
5.7
74
.4
72.2
PH
WR
47
77.1
14
.5
81.1
3.
9
78.9
76
.6
PH
WR
< 6
00 M
W(e
)26
65
.9
15.0
77
.2
7.9
76
.0
64.9
PH
WR
>=
600
MW
(e)
21
82.5
14
.2
83.0
2.
0
82.4
82
.2
LW
GR
16
79.6
16
.9
79.9
2.
7
76.8
80
.0
LW
GR
< 6
00 M
W(e
)4
73
.0
26.7
73
.0
0.4
64
.3
32.1
LW
GR
>=
600
MW
(e)
12
79.6
16
.9
79.9
2.
7
81.3
80
.2
GC
R18
68
.1
11.7
68
.3
14.6
76
.0
68.2
FB
R2
71
.8
27.7
71
.8
0.7
62
.6
72.8
TO
TAL
448
79
.7
14.0
81
.2
3.7
80
.4
78.9
Not
e: 2
011
is th
e la
test
yea
r for
whi
ch o
pera
ting
expe
rienc
e da
ta is
cur
rent
ly a
vaila
ble
to th
e IA
EA
. —
Rea
ctor
s pe
rman
ently
shu
t dow
n du
ring
2009
to 2
011
(17
units
) are
con
side
red.
Rea
ctor
cat
egor
y
Rea
ctor
s re
porti
ng to
IAE
A P
RIS
(see
not
e)
TAB
LE 1
8. P
ERfO
RM
AN
CE
fAC
TOR
S B
Y R
EAC
TOR
CA
TEG
OR
Y, 2
009
to 2
011
59
Full
outa
ge h
ours
Pla
nned
Unp
lann
edE
xter
nal
per o
pera
ting
outa
ges
outa
ges
outa
ges
in th
e w
orld
expe
rienc
e ye
ar(%
)(%
)(%
) P
WR
270
15
20
82.7
15
.4
1.9
PW
R <
600
MW
(e)
47
1669
93
.3
5.1
1.
6
PW
R >
= 60
0 M
W(e
)22
3
1488
80
.2
17.8
2.
0
BW
R84
26
84
76.5
10
.0
13.5
BW
R <
600
MW
(e)
10
4028
69
.3
19.7
11
.0
BW
R >
= 60
0 M
W(e
)74
25
02
78.0
7.
9
14.1
PH
WR
47
1471
75
.6
22.6
1.
8
PH
WR
< 6
00 M
W(e
)26
15
90
65.9
31
.3
2.8
PH
WR
>=
600
MW
(e)
21
1323
90
.0
9.6
0.
4
LW
GR
15
2065
72
.0
4.1
23
.9
LW
GR
< 6
00 M
W(e
)4
32
16
43.8
2.
3
53.9
LW
GR
>=
600
MW
(e)
11
1647
92
.1
5.4
2.
5
GC
R17
20
00
47.7
51
.3
1.0
FB
R2
80
9
100.
0
0.0
0.
0
ALL
RE
AC
TOR
S43
5
1773
78
.3
15.6
6.
1
Not
e: 2
011
is th
e la
test
yea
r for
whi
ch o
utag
e in
form
atio
n is
cur
rent
ly a
vaila
ble
to th
e IA
EA
. —
Rea
ctor
s sh
ut d
own
durin
g 20
11 (1
3 un
its) a
re c
onsi
dere
d.
Rea
ctor
Typ
eN
umbe
r of u
nits
TAB
LE 1
9. f
ULL
OU
TAG
E ST
ATI
STIC
S D
UR
ING
201
1
60
GW
(e)∙h
%H
ours
%G
W(e
)∙h%
Hou
rs%
Pla
nt e
quip
men
t pro
blem
/failu
re51
296
89.3
0 65
747
87.7
7 R
efue
lling
with
out m
aint
enan
ce28
049
5.00
33
796
5.07
In
spec
tion,
mai
nten
ance
or r
epai
r com
bine
d w
ith re
fuel
ling
3611
61
64.3
4 41
5043
62
.29
Insp
ectio
n, m
aint
enan
ce o
r rep
air w
ithou
t ref
uelli
ng33
945
6.05
54
034
8.11
T
estin
g of
pla
nt s
yste
ms
or c
ompo
nent
s19
46
0.35
29
35
0.44
57
8 1.
01
983
1.31
M
ajor
bac
k-fit
ting,
refu
rbis
hmen
t or u
pgra
ding
act
iviti
es w
ith re
fuel
ling
9274
1.
65
1296
4 1.
95
Maj
or b
ack-
fittin
g, re
furb
ishm
ent o
r upg
radi
ng a
ctiv
ities
with
out r
efue
lling
1261
19
22.4
7 13
8568
20
.80
Nuc
lear
regu
lato
ry re
quire
men
ts42
51
7.40
54
96
7.34
H
uman
fact
or re
late
d10
42
1.81
20
21
2.70
F
ire23
1 0.
40
451
0.60
F
uel m
anag
emen
t lim
itatio
n (in
clud
ing
high
flux
tilt,
stre
tch
out o
r coa
st-d
own
oper
atio
n)73
0.
01
162
0.02
O
ther
788
0.14
87
60
1.31
41
0.
07
208
0.28
TO
TAL
5613
55
100.
00
6662
62
100.
00
5743
9 10
0.00
74
906
100.
00
Not
e: O
nly
reac
tors
whi
ch h
ave
achi
eved
full
com
mer
cial
ope
ratio
n in
or b
efor
e 20
11 a
re c
ount
ed.
Dire
ct o
utag
e ca
use
Ene
rgy
lost
Tim
e lo
stE
nerg
y lo
st
TAB
LE 2
0. D
IREC
T C
AU
SES
Of
fULL
OU
TAG
ES D
UR
ING
201
1
Tim
e lo
st
Pla
nned
full
outa
ges
Unp
lann
edfu
ll ou
tage
s
61
GW
(e)∙h
%H
ours
%G
W(e
)∙h%
Hou
rs%
Pla
nt e
quip
men
t pro
blem
/failu
re0.
00
3672
71
86.2
0 44
0342
85
.74
Ref
uelli
ng w
ithou
t mai
nten
ance
1023
76
4.13
11
7563
3.
85
Insp
ectio
n, m
aint
enan
ce o
r rep
air c
ombi
ned
with
refu
ellin
g17
6976
0 71
.31
2076
012
68.0
6 In
spec
tion,
mai
nten
ance
or r
epai
r with
out r
efue
lling
1723
46
6.94
28
8958
9.
47
Tes
ting
of p
lant
sys
tem
s or
com
pone
nts
7199
0.
29
1780
6 0.
58
1284
0.
30
3045
0.
59
Maj
or b
ack-
fittin
g, re
furb
ishm
ent o
r upg
radi
ng a
ctiv
ities
with
refu
ellin
g10
1683
4.
10
1533
87
5.03
M
ajor
bac
k-fit
ting,
refu
rbis
hmen
t or u
pgra
ding
act
iviti
es w
ithou
t ref
uelli
ng32
3778
13
.05
3736
76
12.2
5 N
ucle
ar re
gula
tory
requ
irem
ents
4492
6 10
.54
5335
1 10
.39
Hum
an fa
ctor
rela
ted
6780
1.
59
8817
1.
72
Fire
3835
0.
90
5277
1.
03
Ext
erna
l res
trict
ions
on
supp
ly a
nd s
ervi
ces
382
0.02
19
09
0.06
F
uel m
anag
emen
t lim
itatio
n (in
clud
ing
high
flux
tilt,
stre
tch
out o
r coa
st-d
own
oper
atio
n)27
25
0.11
33
54
0.11
12
04
0.28
11
33
0.22
Oth
er15
79
0.06
17
522
0.57
79
3 0.
19
1613
0.
31
TO
TAL
2481
827
100.
00
3050
189
100.
00
4260
91
100.
00
5135
79
100.
00
Not
e: O
nly
reac
tors
whi
ch h
ave
achi
eved
full
com
mer
cial
ope
ratio
n in
or b
efor
e 20
11 a
re c
ount
ed.
Dire
ct O
utag
e C
ause
Ene
rgy
lost
Tim
e lo
stE
nerg
y lo
st
TAB
LE 2
1. D
IREC
T C
AU
SES
Of
fULL
OU
TAG
ES, 2
007
TO 2
011
Tim
e lo
st
Pla
nned
full
outa
ges
Unp
lann
edfu
ll ou
tage
s
62
Cou
ntry
Cod
eO
pera
tiona
lC
onst
ruct
ion
LT s
hut d
own
Shu
t dow
nP
lann
ed A
M A
RM
EN
IA1
1 A
R A
RG
EN
TIN
A2
1 B
E B
ELG
IUM
71
BG
BU
LGA
RIA
22
4 B
R B
RA
ZIL
21
CA
CA
NA
DA
184
3 C
H S
WIT
ZER
LAN
D5
1 C
N C
HIN
A16
2642
CZ
CZE
CH
RE
PU
BLI
C6
DE
GE
RM
AN
Y9
27 E
S S
PA
IN8
2 F
I F
INLA
ND
41
FR
FR
AN
CE
581
12 G
B U
NIT
ED
KIN
GD
OM
1827
HU
HU
NG
AR
Y4
IN IN
DIA
207
IR IR
AN
, IS
LAM
IC R
EP
UB
LIC
OF
13
IT IT
ALY
4 J
P J
AP
AN
502
19
10 K
R K
OR
EA
, RE
PU
BLI
C O
F21
52
KZ
KA
ZAK
HS
TAN
1 L
T L
ITH
UA
NIA
2 M
X M
EX
ICO
2 N
L N
ETH
ER
LAN
DS
11
PK
PA
KIS
TAN
32
RO
RO
MA
NIA
2 R
U R
US
SIA
N F
ED
ER
ATI
ON
3310
535
SE
SW
ED
EN
103
SI
SLO
VE
NIA
1 S
K S
LOV
AK
IA4
23
Full
nam
eN
umbe
r of r
eact
ors,
as
of 3
1 D
ec. 2
011
TAB
LE 2
2. C
OU
NTR
IES:
AB
BR
EVIA
TIO
NS
AN
D S
UM
MA
RY
63
Cou
ntry
Cod
eO
pera
tiona
lC
onst
ruct
ion
LT s
hut d
own
Shu
t dow
nP
lann
ed U
A U
KR
AIN
E15
24
US
UN
ITE
D S
TATE
S O
F A
ME
RIC
A10
41
2820
VN
VIE
TNA
M2
ZA
SO
UTH
AFR
ICA
2
TOTA
L43
5
65
5
138
11
4
Not
e: T
he to
tal i
nclu
des
the
follo
win
g da
ta fr
om T
aiw
an, C
hina
: —
6 u
nits
in o
pera
tion;
2 u
nits
und
er c
onst
ruct
ion.
TAB
LE 2
2. C
OU
NTR
IES:
AB
BR
EVIA
TIO
NS
AN
D S
UM
MA
RY
— c
ontin
ued
Full
nam
eN
umbe
r of r
eact
ors,
as
of 3
1 D
ec. 2
011
64
Type
code
Ope
ratio
nal
Con
stru
ctio
nLT
shu
t dow
nS
hut d
own
Pla
nned
BW
R B
oilin
g lig
ht w
ater
coo
led
and
mod
erat
ed re
acto
r84
431
10 F
BR
Fas
t bre
eder
reac
tor
22
17
2 G
CR
Gas
coo
led,
gra
phite
mod
erat
ed re
acto
r17
35 H
TGR
Hig
h te
mpe
ratu
re g
as c
oole
d, g
raph
ite m
oder
ated
reac
tor
41
HW
GC
R H
eavy
wat
er m
oder
ated
, gas
coo
led
reac
tor
4 H
WLW
R H
eavy
wat
er m
oder
ated
, boi
ling
light
wat
er c
oole
d re
acto
r2
LW
GR
Lig
ht w
ater
coo
led,
gra
phite
mod
erat
ed re
acto
r15
19
PH
WR
Pre
ssur
ized
hea
vy w
ater
mod
erat
ed a
nd c
oole
d re
acto
r47
54
5 P
WR
Pre
ssur
ized
ligh
t wat
er m
oder
ated
and
coo
led
reac
tor
270
5338
101
SG
HW
R S
team
gen
erat
ing
heav
y w
ater
reac
tor
1 X
Oth
er2
TO
TAL
435
65
5
13
8
114
Num
ber o
f rea
ctor
s, a
s of
31
Dec
. 201
1Fu
ll na
me
TAB
LE 2
3. R
EAC
TOR
TYP
ES: A
BB
REV
IATI
ON
S A
ND
SU
MM
AR
Y
65
Ope
rato
rco
deO
pera
tiona
lC
onst
ruct
ion
LT s
hut d
own
Shu
t dow
nP
lann
ed A
EC
/NP
PD
ATO
MIC
EN
ER
GY
CO
MM
ISS
ION
AN
D N
EB
RA
SK
A P
UB
LIC
PO
WE
R D
ISTR
ICT
1 A
EP
AM
ER
ICA
N E
LEC
TRIC
PO
WE
R C
OM
PA
NY
, IN
C.
2 A
mer
enU
E A
ME
RE
N U
E, U
NIO
N E
LEC
TRIC
CO
MP
AN
Y1
AN
AV
AS
OC
IAC
ION
NU
CLE
AR
AS
CO
-VA
ND
ELL
OS
A.I.
E. (
EN
DE
SA
/ID)
3 A
NP
PJS
C J
OIN
T S
TOC
K C
OM
PA
NY
AR
ME
NIA
N N
PP
11
AP
S A
RIZ
ON
A P
UB
LIC
SE
RV
ICE
CO
.3
AV
R A
RB
EIT
SG
EM
EIN
SC
HA
FT V
ER
SU
CH
SR
EA
KTO
R G
MB
H1
Axp
o A
G K
ER
NK
RA
FTW
ER
K B
EZN
AU
CH
-531
2 D
ÖTT
ING
EN
2 B
E B
RIT
ISH
EN
ER
GY
15 B
HA
VIN
I B
HA
RA
TIY
A N
AB
HIK
IYA
VID
YU
T N
IGA
M L
IMIT
ED
1 B
KA
B B
AR
SE
BÄ
CK
KR
AFT
AB
3 B
KW
BK
W E
NE
RG
IE A
G1
BR
UC
EP
OW
BR
UC
E P
OW
ER
62
BV
GK
N B
V G
EM
EE
NS
CH
AP
PE
LIJK
E K
ER
NE
NE
RG
IEC
EN
TRA
LE N
ED
ER
LAN
D (B
V G
KN
)1
CE
A/E
DF
CO
MM
ISS
AR
IAT
À L
'EN
ER
GIE
ATO
MIQ
UE
(80%
)ELE
CTR
ICIT
É D
E F
RA
NC
E (2
0%)
1 C
EN
/SC
K C
EN
TRE
D'E
TUD
E D
E L
'EN
ER
GIE
NU
CLE
AIR
E /
STU
DIE
CE
NTR
UM
VO
OR
KE
RN
EN
ER
GIE
1 C
EZ
CZE
CH
PO
WE
R C
OM
PA
NY
, CE
Z A
.S.
6 C
FE C
OM
ISIO
N F
ED
ER
AL
DE
ELE
CTR
ICID
AD
2 C
HU
BU
CH
UB
U E
LEC
TRIC
PO
WE
R C
O.,
INC
.3
21
CH
UG
OK
U T
HE
CH
UG
OK
U E
LEC
TRIC
PO
WE
R C
O.,
INC
.2
12
CIA
E C
HIN
A IN
STI
TUTE
OF
ATO
MIC
EN
ER
GY
1 C
NA
T C
EN
TRA
LES
NU
CLE
AR
ES
ALM
AR
AZ-
TRIL
LO (I
D/U
FG/E
ND
ES
A/H
C/N
UC
LEN
OR
)3
Cof
Piq
ua C
ITY
OF
PIQ
UA
GO
VE
RN
ME
NT
1 C
OG
EM
A C
OM
PA
GN
IE G
EN
ER
ALE
DE
S M
ATI
ER
ES
NU
CLE
AIR
ES
2 C
ON
STE
LL C
ON
STE
LLA
TIO
N E
NE
RG
Y N
UC
LEA
R G
RO
UP
, LLC
5 C
PC
CO
NS
UM
ER
S P
OW
ER
CO
.1
CV
PA
CA
RO
LIN
AS
-VIR
GIN
IA N
UC
LEA
R P
OW
ER
AS
SO
C.
1 C
YA
PC
CO
NN
EC
TIC
UT
YA
NK
EE
ATO
MIC
PO
WE
R C
O.
1 D
OE
DU
QU
DE
PA
RTM
EN
T O
F E
NE
RG
Y A
ND
DU
QU
ES
NE
LIG
HT
CO
.1
DO
E/P
RW
R D
OE
& P
UE
RTO
RIC
O W
ATE
R R
ES
OU
RC
ES
1
Num
ber o
f rea
ctor
s, a
s of
31
Dec
. 201
1Fu
ll na
me
TAB
LE 2
4. O
PER
ATO
RS:
AB
BR
EVIA
TIO
NS
AN
D S
UM
MA
RY
66
Ope
rato
rco
deO
pera
tiona
lC
onst
ruct
ion
LT s
hut d
own
Shu
t dow
nP
lann
ed D
OM
INIO
N D
OM
INIO
N G
EN
ER
ATI
ON
71
DP
C D
AIR
YLA
ND
PO
WE
R C
OO
PE
RA
TIV
E1
DTE
DIS
ON
DE
TRO
IT E
DIS
ON
CO
.1
1 D
UK
EE
NE
R D
UK
E E
NE
RG
Y C
OR
P.
7 E
.ON
E.O
N K
ER
NK
RA
FT G
MB
H3
3 E
DF
ELE
CTR
ICIT
E D
E F
RA
NC
E58
18
ELE
CTR
AB
ELE
CTR
AB
EL
M. V
. NU
CLE
AIR
E P
RO
DU
KTI
E7
ELE
TRO
NU
ELE
TRO
BR
AS
ELE
TRO
NU
CLE
AR
S.A
.2
1 E
MO
ELE
CTR
OS
TATI
ON
MO
CH
OV
CE
2 E
nBW
EN
BW
KR
AFT
WE
RK
E A
G1
EN
ER
GY
NW
EN
ER
GY
NO
RTH
WE
ST
1 E
nKK
EN
BW
KE
RN
KR
AFT
GM
BH
(SIT
Z IN
OB
RIG
HE
IM)
22
EN
TER
GY
EN
TER
GY
NU
CLE
AR
OP
ER
ATI
ON
S, I
NC
.12
1 E
OS
EN
ER
GIE
DE
L'O
UE
ST
SU
ISS
E1
EP
DC
ELE
CTR
IC P
OW
ER
DE
VE
LOP
ME
NT
CO
.,LTD
.1
EP
Z N
.V. E
LEK
TRIC
ITE
ITS
-PR
OD
UK
TIE
MA
ATS
CH
AP
PIJ
ZU
ID-N
ED
ER
LAN
D1
ES
KO
M E
SK
OM
2 E
VN
VIE
TNA
M E
LEC
TRIC
ITY
2 E
WN
EN
ER
GIE
WE
RK
E N
OR
D G
MB
H6
EX
ELO
N E
XE
LON
GE
NE
RA
TIO
N C
O.,
LLC
174
FE
NO
C F
IRS
T E
NE
RG
Y N
UC
LEA
R O
PE
RA
TIN
G C
O.
4 F
KA
FO
RS
MA
RK
KR
AFT
GR
UP
P A
B3
FO
RTU
MP
H F
OR
TUM
PO
WE
R A
ND
HE
AT
OY
(FO
RM
ER
IVO
)2
FP
L F
LOR
IDA
PO
WE
R &
LIG
HT
CO
.4
FQ
NP
CN
NC
FU
JIA
N F
UQ
ING
NU
CLE
AR
PO
WE
R C
O.,L
TD3
3 F
SN
PC
FU
JIA
N S
AN
MIN
G N
UC
LEA
R P
OW
ER
CO
.,LTD
.2
GE
GE
NE
RA
L E
LEC
TRIC
1 G
FNP
C G
UA
NG
XI F
AN
GC
HE
NG
GA
NG
NU
CLE
AR
PO
WE
R C
OM
PA
NY
LTD
2 G
NP
JVC
GU
AN
DO
NG
NU
CLE
AR
PO
WE
R J
OIN
T V
EN
TUR
E C
OM
PA
NY
LIM
ITE
D (G
NP
JVC
)2
GP
U G
EN
ER
AL
PU
BLI
C U
TILI
TIE
S (O
WN
ED
BY
FIR
STE
NE
RG
Y C
OR
P.)
1 H
DR
HE
ISS
DA
MP
FRE
AK
TOR
-BE
TRIE
BS
GE
SE
LLS
CH
AFT
MB
H.
1
TAB
LE 2
4. O
PER
ATO
RS:
AB
BR
EVIA
TIO
NS
AN
D S
UM
MA
RY—
con
tinue
d Fu
ll N
ame
Num
ber o
f rea
ctor
s, a
s of
31
Dec
. 201
1
67
Ope
rato
rco
deO
pera
tiona
lC
onst
ruct
ion
LT s
hut d
own
Shu
t dow
nP
lann
ed H
EP
CO
HO
KK
AID
O E
LEC
TRIC
PO
WE
R C
O.,I
NC
.3
HIF
RE
NS
A H
ISP
AN
O-F
RA
NC
ES
A D
E E
NE
RG
IA N
UC
LEA
R, S
.A.
1 H
KG
HO
CH
TEM
PE
RA
TUR
-KE
RN
KR
AFT
WE
RK
GM
BH
1 H
NP
C H
AIN
AN
NU
CLE
AR
PO
WE
R C
OM
PA
NY
2 H
OK
UR
IKU
HO
KU
RIK
U E
LEC
TRIC
PO
WE
R C
O.
2 H
ON
GY
AN
H H
ON
GY
AN
HE
NU
CLE
AR
PO
WE
R C
OM
PA
NY
1 H
Q H
YD
RO
QU
EB
EC
11
HS
NP
C H
UA
NE
NG
SH
AN
DO
NG
SH
IDA
OB
AY
NU
CLE
AR
PO
WE
R C
O.,L
TD.
1 ID
IBE
RD
RO
LA, S
.A.
1 IN
PP
IGN
ALI
NA
NU
CLE
AR
PO
WE
R P
LAN
T2
JA
EA
JA
PA
N A
TOM
IC E
NE
RG
Y A
GE
NC
Y1
2 J
AP
CO
JA
PA
N A
TOM
IC P
OW
ER
CO
.3
12
JA
VY
S J
AD
RO
VA
A V
YR
AD
OV
AC
IA S
PO
LOC
NO
ST/
NU
CLE
AR
AN
D D
EC
OM
MIS
SIO
NIN
G C
OM
PA
NY
, PLC
./3
JN
PC
JIA
NG
SU
NU
CLE
AR
PO
WE
R C
OR
PO
RA
TIO
N2
4 K
BG
KE
RN
KR
AFT
WE
RK
-BE
TRIE
BS
GE
SE
LLS
CH
AFT
MB
H2
KE
PC
O K
AN
SA
I ELE
CTR
IC P
OW
ER
CO
.11
KG
B K
ER
NK
RA
FTW
ER
KE
GU
ND
RE
MM
ING
EN
BE
TRIE
BS
GE
SE
LLS
CH
AFT
MB
H1
KG
G K
ER
NK
RA
FTW
ER
K G
UN
DR
EM
MIN
GE
N G
MB
H2
1 K
HN
P K
OR
EA
HY
DR
O A
ND
NU
CLE
AR
PO
WE
R C
O.
215
2 K
KB
KE
RN
KR
AFT
WE
RK
BR
UN
SB
ÜTT
EL
GM
BH
1 K
KG
KE
RN
KR
AFT
WE
RK
GO
ES
GE
N-D
AE
NIK
EN
AG
1 K
KK
KE
RN
KR
AFT
WE
RK
KR
ÜM
ME
L G
MB
H &
CO
. OH
G1
KK
L K
ER
NK
RA
FTW
ER
K L
EIB
STA
DT
1 K
KN
KE
RN
KR
AFT
WE
RK
NIE
DE
RA
ICH
BA
CH
GM
BH
1 K
LE K
ER
NK
RA
FTW
ER
KE
LIP
PE
-EM
S G
MB
H1
KO
ZNP
P K
OZL
OD
UY
NP
P-P
LC2
24
KW
G G
EM
EIN
SC
HA
FTS
KE
RN
KR
AFT
WE
RK
GR
OH
ND
E G
MB
H &
CO
. OH
G1
KW
L K
ER
NK
RA
FTW
ER
K L
ING
EN
GM
BH
1 K
YU
SH
U K
YU
SH
U E
LEC
TRIC
PO
WE
R C
O.,
INC
.6
1 L
AN
PC
LIN
GA
O N
UC
LEA
R P
OW
ER
CO
MP
AN
Y L
TD.
2 L
DN
PC
LIN
GD
ON
G N
UC
LEA
R P
OW
ER
CO
MP
AN
Y L
TD.
2
TAB
LE 2
4. O
PER
ATO
RS:
AB
BR
EVIA
TIO
NS
AN
D S
UM
MA
RY—
con
tinue
d Fu
ll na
me
Num
ber o
f rea
ctor
s, a
s of
31
Dec
. 201
1
68
Ope
rato
rco
deO
pera
tiona
lC
onst
ruct
ion
LT s
hut d
own
Shu
t dow
nP
lann
ed L
HN
PC
LIA
ON
ING
HO
NG
YA
NH
E N
UC
LEA
R P
OW
ER
CO
. LTD
. (LH
NP
C)
42
LIP
A L
ON
G IS
LAN
D P
OW
ER
AU
THO
RIT
Y1
LN
PC
LIA
ON
IN N
UC
LEA
R P
OW
ER
CO
MP
AN
Y,L
MT.
2 L
UM
INA
NT
LU
MIN
AN
T G
EN
ER
ATI
ON
CO
MP
AN
Y L
LC2
MA
EC
-KA
Z M
AN
GIS
HLA
K A
TOM
IC E
NE
RG
Y C
OM
PLE
X-K
AZA
TOM
PR
OM
, LIM
ITE
D L
IAB
ILIT
Y C
OM
PA
NY
1 M
EL
MA
GN
OX
ELE
CTR
IC L
IMIT
ED
323
MTE
MIN
TOP
EN
ER
GO
OF
UK
RA
INE
- M
INIS
TRY
OF
FUE
L A
ND
EN
ER
GY
OF
UK
RA
INE
4 M
YA
PC
MA
INE
YA
NK
EE
ATO
MIC
PO
WE
R C
O.
1 N
AS
A N
UC
LEO
ELE
CTR
ICA
AR
GE
NTI
NA
S.A
.2
1 N
BE
PC
NE
W B
RU
NS
WIC
K E
LEC
TRIC
PO
WE
R C
OM
MIS
SIO
N1
ND
NP
C N
ING
DE
NU
CLE
AR
PO
WE
R C
OM
PA
NY
LTD
.4
NE
K N
UK
LER
AN
A E
LEK
TRA
RN
A K
RŠ
KO
1 N
EX
TER
A N
EX
TER
A E
NE
RG
Y R
ES
OU
RC
ES
, LLC
4 N
MC
NU
CLE
AR
MA
NA
GE
ME
NT
CO
.1
NN
EG
C N
ATI
ON
AL
NU
CLE
AR
EN
ER
GY
GE
NE
RA
TIN
G C
OM
PA
NY
<E
NE
RG
OA
TOM
>15
2 N
PC
IL N
UC
LEA
R P
OW
ER
CO
RP
OR
ATI
ON
OF
IND
IA L
TD.
206
NP
PD
CO
NU
CLE
AR
PO
WE
R P
RO
DU
CTI
ON
& D
EV
ELO
PE
ME
NT
CO
. OF
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N1
3 N
PQ
JVC
NU
CLE
AR
PO
WE
R P
LAN
T Q
INS
HA
N J
OIN
T V
EN
TUR
E C
OM
PA
NY
LTD
.4
NS
P N
OR
THE
RN
STA
TES
PO
WE
R C
O. (
SU
BS
IDIA
RY
OF
XC
EL
EN
ER
GY
)3
NU
CLE
NO
R N
UC
LEN
OR
, S.A
.1
OH
ON
TAR
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RO
2 O
KG
OK
G A
KTI
EB
OLA
G3
OP
G O
NTA
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PO
WE
R G
EN
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102
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PD
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AH
A P
UB
LIC
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WE
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ICT
1 P
AE
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AK
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NE
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4. O
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5. N
SSS
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LIER
S: A
BB
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72
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22
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49
TO
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435
65
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13
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114
Full
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011
TAB
LE 2
5. N
SSS
SUPP
LIER
S: A
BB
REV
IATI
ON
S A
ND
SU
MM
AR
Y— c
ontin
ued
74
Number of operational reactors by type and net electrical power (as of 31 Dec. 2011).
figure 1.
270
84
17
47
15
2
248.
4
77.7
8.8
23.1
10.2
0.6
0
50
100
150
200
250
300
PWR BWR GCR PHWR LWGR FBR
Reactor type
Number of reactors
Net electrical power (GW(e))
Num
ber o
f rea
ctor
s/ne
t ele
ctric
al p
ower
(GW
(e))
75
Reactors under construction by type andnet electrical power (as of 31 Dec. 2011).
figure 2.
53
4
5
1
2
51.3
5.3
3.2
0.9 1.3
0
10
20
30
40
50
60
PWR BWR PHWR LWGR FBR
Reactor type
Number of reactors
Net electrical power (GW(e))
Num
ber o
f rea
ctor
s/ne
t ele
ctric
al p
ower
(GW
(e))
76
figu
re 3
. Nuc
lear
sha
re o
f ele
ctri
city
gen
erat
ion
(as
of 3
1 D
ec. 2
011)
.N
ote:
The
nuc
lear
sha
re o
f ele
ctric
ity s
uppl
ied
in T
aiw
an, C
hina
, was
19.
0% o
f the
tota
l.
77.7
%54
.0%
54.0
%47
.2%
43.3
%41
.7%
40.9
%39
.6%
34.6
%33
.2%
33.0
%32
.6%
31.6
%19
.5%
19.3
%19
.0%
18.1
%17
.8%
17.8
%17
.6%
15.3
%5.
2%5.
0%3.
8%3.
7%3.
6%3.
5%3.
2%1.
9%0.
0%
0%20
%40
%60
%80
%
FRA
NC
ES
LOV
AK
IAB
ELG
IUM
UK
RA
INE
HU
NG
AR
YS
LOV
EN
IAS
WIT
ZER
LAN
DS
WE
DE
NK
OR
EA
, RE
P.
AR
ME
NIA
CZE
CH
RE
P.
BU
LGA
RIA
FIN
LAN
DS
PA
INU
SA
RO
MA
NIA
JAP
AN
UK
GE
RM
AN
YR
US
SIA
CA
NA
DA
SO
UTH
AFR
ICA
AR
GE
NTI
NA
PA
KIS
TAN
IND
IAN
ETH
ER
LAN
DS
ME
XIC
OB
RA
ZIL
CH
INA
IRA
N, I
SL.
RE
P.
Nuc
lear
sha
re
77
Worldwide median construction time in months(as of 31 Dec. 2011).
figure 4.
86
131
85
29
23
20
12
7
74
99
95
103
123
64
75
105
0
20
40
60
80
100
120
140
1976
–19
80
1981
–19
85
1986
–19
90
1991
–19
95
1996
–20
00
2001
–20
05
2006
–20
10
2011
Number of reactors Construction time
Num
ber o
f rea
ctor
s /c
onst
ruct
ion
time
(in m
onth
s)
78
figu
re 5
. Num
ber o
f rea
ctor
s in
ope
ratio
n by
age
(as
of 3
1 D
ec. 2
011)
.
7
5
2
0
32
45
2
6
3
6
44
3
6
45
9
6
4
1011
14
21
24
3233
20
18
22
19
6
11
1313
11
20
13
10
12
4
7
01
05101520253035
01
23
45
67
89
1011
1213
1415
1617
1819
2021
2223
2425
2627
2829
3031
3233
3435
3637
3839
4041
4243
44
Rea
ctor
age
(in
year
s)
Number of reactors
79
figu
re 6
. Ann
ual c
onst
ruct
ion
star
ts a
nd c
onne
ctio
ns to
the
grid
, 195
4 to
201
1.
1
8
5
13
6
7
11
7
8
5
9
9
15
25
37
13
37
18
29
29
38
38
42
24
23
28
20
16
19
16
10
20
8
13
7
6
5
2
3
4
2
0
1
5
3
4
7
1
6
1
2
3
4
8
10
12
16
4
1
0
1
3
1
5
4
1
9
9
8
8
8
11
7
10
6
16
16
20
26
15
19
18
20
8
21
23
19
23
33
33
27
22
14
12
10
4
6
9
5
5
6
3
4
4
6
3
6
2
5
4
2
3
0
2
5
7
01020304050
1954195519561957195819591960196119621963196419651966196719681969197019711972197319741975197619771978197919801981198219831984198519861987198819891990199119921993199419951996199719981999200020012002200320042005200620072008200920102011
Con
stru
ctio
n st
arts
Grid
con
nect
ions
Number of reactors
@ No. 22
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REFERENCE DATA SERIES No. 22012 Edition
Nuclear PowerReactors in the World