Measurement and Control Devices for Combustion Optimization Sensors and Systems for Combustion...

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Measurement and Control Devices for Combustion Optimization Sensors and Systems for Combustion Engineering

Transcript of Measurement and Control Devices for Combustion Optimization Sensors and Systems for Combustion...

Page 1: Measurement and Control Devices for Combustion Optimization Sensors and Systems for Combustion Engineering.

Measurement and Control Devices for Combustion Optimization

Sensors and Systems for Combustion Engineering

Page 2: Measurement and Control Devices for Combustion Optimization Sensors and Systems for Combustion Engineering.

LAMTEC CO-ControlA adaptive Burner-Control

Page 3: Measurement and Control Devices for Combustion Optimization Sensors and Systems for Combustion Engineering.

Adaptive control (fuel/air ratio)

Inve

rte

r O

utp

ut

(%)

Burner load (%) 10% 30% 50% 70% 90% 100%

1st Step

CO = PPM0

3rd Step2nd Step

10

CO monitoring on combustion air at 50% load

O2 = %2.01.41.00.8

Set p

oint

cur

ve

Correction range

100

80

60

40

30

20

0

Page 4: Measurement and Control Devices for Combustion Optimization Sensors and Systems for Combustion Engineering.

Adaptive control (fuel/air ratio)

Burner load (%) 10 30 50 70 90 100

1st Step

CO = PPM0

3rd Step2nd Step

CO monitoring on combustion air at 70% load

O2 = % 2.01.51.10.9

16

Set p

oint

cur

ve

Correction range

Inve

rte

r O

utp

ut

(%)

100

80

60

40

30

20

0

Page 5: Measurement and Control Devices for Combustion Optimization Sensors and Systems for Combustion Engineering.

Adaptive control (fuel/air ratio)

Burner load (%) 10 30 50 70 90 100

1st Step

CO = PPM0

3rd Step

2nd Step

CO monitoring on combustion air at 90% load

O2 = % 2.00.90.8

15

Correction range

Set p

oint

cur

ve

Inve

rte

r O

utp

ut

(%)

100

80

60

40

30

20

0

Page 6: Measurement and Control Devices for Combustion Optimization Sensors and Systems for Combustion Engineering.

Burner load (%) 10 30 50 70 90 100

Correction range

Final curve after CO control at more load points

50% Load 90% Load

O2= 1.1%O2= 1.0% O2= 0.9%

CO = 0 PPM

CO = 0 PPM

CO = 0 PPM

70% Load

100

80

60

40

30

20

0

Inve

rte

r O

utp

ut

(%)

Page 7: Measurement and Control Devices for Combustion Optimization Sensors and Systems for Combustion Engineering.

Sensor characteristic KS1 US = f(O2 + CO/H2)

Sensors and Systemsfor Combustion Engineering

Page 8: Measurement and Control Devices for Combustion Optimization Sensors and Systems for Combustion Engineering.

Sensor characteristic Us = f(CO)

Sensors and Systemsfor Combustion Engineering

Page 9: Measurement and Control Devices for Combustion Optimization Sensors and Systems for Combustion Engineering.

The system

Sensors and Systemsfor Combustion Engineering

Page 10: Measurement and Control Devices for Combustion Optimization Sensors and Systems for Combustion Engineering.

Etamatic with CO-Control

S enso ren und S ys temefür d ie F euerungs technik

E TA M AT IC

E TA M AT IC m it C O -R egelung

LSB

- A

nsch

luss

kabe

l66

3 R

042

1

O -M essung LT1/L S 1alternativ LT2-L S 22 C O -D etektio n

LT2-K S 1

L A M TE C S Y S TE M B U S

M as ter ID 9 m it D is p lay S lave ID 10 o hne D is p lay

L A M TE C S Y S TE M B U S

Master ID9 with display Slave ID10 without display

LSB

-co

nnec

tion

cabl

e66

3 R

042

1

)(2)/(1 22 OLSHCOKSCOeUUU

ETAMATIC with CO-/ O2 Control

Page 11: Measurement and Control Devices for Combustion Optimization Sensors and Systems for Combustion Engineering.

Adaptive CO-Control – control strategy

Sensors and Systemsfor Combustion Engineering