1/2lss.fnal.gov/archive_notes/d0-en/fermilab-d0-en-025.pdfIltod SHAPE FACTOR Sq.'Corll" U"9ln h t H...

16
3740. 210-EN-25 Central Calorimeter Piping Flexibility A. Pitas The flexing of the piping between the vacuum shell and the cold shell of the Central Cryostat was examined. The method used was taken from Piping Engineering, Tube Turns Company, Louisville, Kentucky, 4th edition. Each pipe was checked twice, first by A. Parker and then by A. Pitas. All simplifying assumptions are conservative. The largest calculated stress is 75% of the maximum allowable stress. The effect of the cold shell's movement during coo1down was also analyzed. The cold ends of the piping moves approximately 1/2 inch. The stresses generated are calculated to be less than 5000 p.s.i. I

Transcript of 1/2lss.fnal.gov/archive_notes/d0-en/fermilab-d0-en-025.pdfIltod SHAPE FACTOR Sq.'Corll" U"9ln h t H...

  • 3740. 210-EN-25

    Central Calorimeter Piping Flexibility

    A. Pitas

    The flexing of the piping between the vacuum shell and the cold shell of the Central Cryostat was examined. The method used was taken from Piping Engineering, Tube Turns Company, Louisville, Kentucky, 4th edition. Each pipe was checked twice, first by A. Parker and then by A. Pitas. All simplifying assumptions are conservative. The largest calculated stress is 75% of the maximum allowable stress.

    The effect of the cold shell's movement during coo1down was also analyzed. The cold ends of the piping moves approximately 1/2 inch. The stresses generated are calculated to be less than 5000 p.s.i.

    I

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    3 .... SHAI'[ f'ACTOR

    s.-t.c:or- Uft9'" H'w'" S- 01 [II fl80W LENGTHS

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    TOTAL [It LENGTH La'L,= L [fI.OIAllf;T[1I Lt:IIGTH ~ .. f,

    PIP[ MAT[IIIAL (Of S,te.l

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    CALC'O OATE:

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    ........ PIPE $IU ond WEIGHT

    TIIIII. Elf. ELBOW OIAM

    I Efl. ELBOW lENGTH

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    3 Go 10 c~,.. fo' 0' Rtod SHAPE FACTOR

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    Sq.·Corll" If''''~ h· H' 'II ::

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    TOTAL CfI. LENGTH L.+2L,=

    [II. DIAMETEII LENGTH ~. ,.

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    SERVICE «01'" Co6f 5

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    HoM. p'PE StU' ...d WEIGHT _ N_ pIP~ SIZE and WEIG~~ '-~2."- 5~. 405 .-----.- -··r -'1 Dr - 10111. m. ElBOW OIAM Dr = Dr = Tobl, Elf. ElBOW OIAM. 0, __ ~ •o;,~. 0,-.:~ _______ : ~_

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    Tltbl. i Eff. [lBO'll OIAM.

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    Il.".,11 of lONGER LEG W - Horl.oftlol onSET W = w_= 1.25' V!._=___ w/U .. • Ii w~l!.=LEnl., 01 ABSCISSA h/H .. 0 EM" 01 A8SCISSA h/H :. CharI ~/1j = U

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    R!POd £II 1'10 0' ELBOWS In . 8S J

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    PIP[ MATERIAl (Of SPKl I 1_._. ____ . __.__ SEIIVICE (0' Coft S.clioft) S£RVIC[ (or Coft S.clion'

    PIPE MATE"1Al I", Spte.! PIP! MATERIAL 'ar $pHl -

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    F= -

    HOT '''".., M.lol T[MP.

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    Te - I COlOfmll'llMlllolTEMP Te .... Tc = CO~O(~~n~~~' TEMP Tr ...:~~~.f rc..~___.. RNd OPIIOlilll T" SA - II.eId OPIIGlil. Tit SA = Sj\ == ~!POd OfJP4>.", T" 5" 'Z8 ISO SA =

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    [xFIIII\ISlotl"ACTOfIf.~-f.c=f, = f, = EXPANSIONFACTO/lf,.,f,,=fe qo,ooo flO =tXPllNSfOI\l FACTOR f,lI-f.c .lf. =

    ICOMPUTED [XI' ...!r.!.L"IS = /I COMPlITE;'~;-iJ.l '.]5- \5·" ·=·___ ··________ 1 COMPUTEO [XP U'.tt fli S -, 14'w' I:_:':' 5

    .. TRESS /lANGE " E STRESS RANGE f [ - E - SH'~SS RANGE: U', r • 'lJl E I • , __....._..I

    ····CAlC·O TUBE TURNS,lOUISVllIE. t

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    Totllt I Eff. ELBOW ClAM. 0, - IT-.I W. £LBOW OIAM Dr == Dr = Tobl,l Eff. ELBOW 01.... q, = ~. 03 Or = __._.__'"~ l:B£NO

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    '1

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    TOTAL Elf LENGTH L. + L,::: L "'" TOTAL £If LENGTH l.+2L,= L =. L .,. [TTL, t:«. L,e..,.l~4 n L ,.. L - 13 , II' L = I- •. ___ . -.-•. ------- . I I Elf DIAMETEA LENOTH k,· f, -= W DIAMETER LENGTH ~... f, = f, = rtf DIAMETER lrNGTI! 6"fl 4. 32 b f,7" J'PIPE MATERIAL lor $pte:.) P'PE MATERIAL IOf 5p.d .------ PI~E-MAT;RIAL ,~;;~~__ st-'~~4_. ~_.,_

    - -.-.-~ -.---- SEIIVICE fo, Cod. S.cliofIl SERYICE (or- Cod(! S.cljonl SERVICE lor Cod. 5""'10"). ,._--_.

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    COMPUTEOEXP ~1It:S == COMPUTEO'ExP !,_!t .. S - S - COMl'UTEOEXP U.fe f." S .. S - . "BlESS RANGE f. E 5HIES5 RANGE 11 I: - [ .- 5TRI:S

  • / ;: '. ~

    £ .....,• QCI E'E:.F.? P£ C - L~.h. &IL 12.E.TU~U ( C!,l2.. ~ \IE::~SEL}-~ PROCEOURE; III Stltcl Column oppliCable 10 Sl!ope III [nit! GiYfII Data 10 ,iOIll of hfOllY liars ISICompl,lt lO"II.,.""i"O 10 "iionol.t Cbo,ls ond Toilin in Tub, Tu,nl 'Lin' [rponlion on' Fluib!llt(llol)ld"_1 ,0,Co",pO', Sf willi Sa.

    Nom. PIPE SIZE ond WEIGHT Nom. PIPE SIZE onel WEIGHT 2'~S~4,4DS Nom. PIPE SIZE ond WEIGHT, P 11---1

    Tab" IEll. ELBOW OIAM. Dr = Dr = 4, \\Toillt I Eft. ELeOW OIAM. Or - Tobit I Elf. nBOw OIAM. Or = Dr = 1 Elf. neow LENGTH

    in

    II~~==~==:)JLr = 11 1 1m ELBOW LENGTH Lr' = 'r-- Lr = \,8 III IEff ELBOW LENGTH }Lr d Lr = 11-==1 W SYMM. GUIDEDG,nt,ol Nol ..

    I. Fa, Tobin and Cho,", ttl.. to Tub" Turnl' 900k 1,,1 "Lint ElpO"lion and Fltiibilil,·.

    2. Elbow Rodlu•• 1'1• • Nominal Pipt Silt

    r l:BENO

    IH w

    LOOP LOOP

    H tof Symmetry between GuidfSIEZ'SEND U'SENOh I

    U'=UH w H w

    IElI,tmt ANCHOR SPACING U' = U Iu' = Lentl'll 01 SHORT VERTICAL I h Ih N""'II, RESTRAINT SPACING U = U =

    1\ ' 10. ----~="\-----f!

    "

    " ILt",lh of SHORTER \,o(G IH = ILfflOlh of LONG VERTICAL H H '1 ,b7 I IHEIGHT 01 LOOP IH IH = II II

    ......,'h 01 LONGER LEG W == Ho,ilonlol OFFSET W = W = '2. 4. PIPE MATERIAL {or Sp.d

    - i-SERVICE (or Coft Stclion! SERVICE (Of" Code Stelion). SERVICE (or Codo Seclion'

    HOT (mox) M,Iol TEMP, Tn =, HOT ,mal) Mttol TEMP. Tn = Tn = lc"f HOT (mox'M.lal TEMP T~....:: - 'r COLO (min' M'Ial TEMP Tc === l COLO (minI M.'ol TEMP Te "'" Te = _3S0a f COLO (min) ""101 TEMP Tc = = 11°F

    Rood opposite Th SA = Rtod oppo.it. Til SA = SA = 28,1,0 Rtod oppolil, Til SA = SA = lip"Tolllt TolIl. Toblo ._ --5 Rtod oppa.it, Th fen == 5 A.od OPPOIII. Th fen = feh = 0 5 Rtod oppOsil_ T~ f!!,h_.._== feh =

    I Read,opposil. Tc fee -= . RtodoppOlit. Tc fee = fee = 90,ODI?_t-_ RtodOpPOlil'. ~~_[!;c· = fec,_______ n.

    n"

    EXPANSION FACTOR f.h-f.c =If, = E)(PtIIN510N FACTOR f.lI- ftc = ff! = fe = qOlooo EXPANSION FACTOR f, • .-f.c= f, = f, = P'>' --.---------~-.-~~-- ~---(U'/UC I)ICOMPUTED EXp l!.!t.=IS = ICDMpI.lTEO'·EXP. .!t.!.t= S = S \A ""'J1D COMPUTED EXP _Il~!c_f.l.= S

    STRESS RANGE fl E STRESS RANGE f, E E '+ I I STRESS RANGE U f, E.'lp'. . ---'-''''-'' CMe'o OATE:

    CHECKEO: DATE:

    (

    TUBE TURNS, LOUISVILLE. KENTUCKY, PIPING FLEXIBILITY CALCULATION FORM

    SIMPLIFIED CALCULATION or L', Z- AND U- BENDS, AND EXPANSION LOOPS

    4 ~ " j ~~~--------------- .'c:,o I l,wt

    LINE

    ( a.v;l.d to (o"form wilh 19.5" { r "r.UI..Jr* f',: ".':.t

  • I ~ , ...., coI e.£F. ?t F'E. D ~ GA{l. SUPF't.:; ((!,(l- \l~SSEL.')

    -1 PROCEDURE; III Stltel Column crpplicllblt 10 Shop, 121 EI'II~, GIven 0010 10 ri9hl 01 ht1IYy ba', I M COIT1j)I~1t 10"", '~I~ttinll 10 dlrsiqn1l1.d Cho,It and Tobin in Tub. Tu,n, "Lint E,~an.ian and Fluibilil,." 8ook",'.(41 Compo'~ S~ .. i·~ S.

    Nom. PIPE SIZE and WEIGHT

    Tob" I Elt EL80W OIAM.

    Ell. EL80W lENGTH

    G~nftol Nol~.

    I. Fo, TobIn ond Cho,I., relt' 10 Tub, Tu,ns' 8oo_lti "Lint E .ponlion and Fltllbilil, ".

    r. Elbow Radius. 1'1•• Nominol Pip. S,n

    ChO,1 Go 'a Cu..t lot

    3 Read SHAPE FACTOR

    Dr ..

    l:SEND

    H IV

    Nom. p,I'E SIZE ond WEIGHT

    Tobl'\ Ell. ELBOW OIAM.

    1 Elf. ELBOW LENG1

    ~

    Nom. PiPE SIZE and WEIGHT

    IIN""'by RESTRAINT SPACING U = U =

    HEIGHT 01 LOOP H = H = II.I! WIDTH 01 lOOP W = W = I!

    no

    IL.

    I Enl., 01 ABSCISSA w.(1J. = w/U .~I "".., Chorll Go 10 Cu'" 10' ti/U = HIU 2 Rtod SHAPE FACTOR fs = fs =

    ~ -- 11'1",1 I -- 11'1"'21 - -- 11'1"21-. jRtod Ell No. 01 ELBOWS In = n = __~ __ . \0"., SquOrt'CO'~'L'''9'h H+w= Ls = Sq"Corntfl'''9lh h+H+w= Ls = L'S= 1l:33 Sq.C..,.·..d.At\U+'Z!-4 J.h~-:= Ls = ._!"

    • Sum 01 Ell El80W LENGTHS Lr = Sum 01 Efl ELBOW LENGTHS 2Lr = 2L.... = '2. A I ~.ff". ~'boulle.....nLr -= ._ ,!~r,,::::... ! ~~~~:~~~~GTH L,+L,::L = TOTALEll.LENGTHL!+~L = L" 1-S.1~' hTL.E)f.~L!S~nL,. L = L =

    Elf. DIAMETER LENGTH ~r" f, == Efl. DIAMETER LENGTH ~," f, = f, = 4-.~ Ell OIAMETER LENGTH 6, '" f, = f, - 1.'-_.-.-".-.

    PIPE MATERIAL (or Sptc.) PIPE MATERIAL for Spec.1 5S '3.04 It'PE MATERIAL (Of Sp.el I SERVICE (0' Cod« Ste'lon) SERVICE lor Codt Stelion), SERVICE 10' Cod« S«lion)

    I HOT (mOIl M"OI TElIIp. Th -. HOT (mOil MtlOI TEMP. Th = Th = 10!>f HOT (mol! Mtlol TEMP._.__,Th = Th = .~n 'r COLD (min) Mtlol TEMP. Te - I COLD (mini MtlOI TEMP. Te = Te = -35D IOf COI.O (mil'll MtlOI TEMP. Tc = Tc =

    ---fl·· "F

    0"And OPPOlit« Th SA == . Atod oppali'« Th SA = SA = l..S ISD Rtod opposil. Tn SA = SA = Tobit Tobit lobl« -- f:' -5 Rlod oppali't T" f.h = . 5 IItod oPPoI'" Tn f.h = feh = C> 5 Rtod OPpall'. Tn feh = feh = p....._

    A«od.oppali't Te fee = . Rtod oppalilt Tc fee = fee = 91>.000 Rtod oppos,'~ Tc fee = fe EXPANSION FACTOII f,h-f«c= f, = f. =

    C:OMI'UTEO\EXP. STAESS RANGE .!t!L=ISE = f, S II COMPUTED EXP. U' II IS E = 18,000 STRESS RANGE U' f, = E =

    \

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    PROCEOURE; III Stltcl Column opplicObl, to ShOp, It1Enl" G'Yfn 0010 to ,iVhl 01 hCOI', bO's uncomp"" lo,m. """'"11 10 dnivnol.d ChO',s ond Tob' .. in Tub. Tu,ns "Lin, ElpO"lion and Fluibitil"lIoo~"'I (4JComporr ~~ *il~ s.. Nom. PIPE SIZE ond WEIGHT NOlI!. PIPE SIZE ond WEIGHT Nom. PIPE SIZE ond WEIGHT Z·~St.'-f. 40s Tobl, 1EfI, EL BOW OIAM. Dr =- Dr Dr = 'nI I j ;:f' = I " .. '" "",.",.. D, = 4.11

    ! Ell. ELBOW ...LENGTH JL, = I 1 Elf, ELBOW LENGTH Lr ,= L, == I Efl ELBOW LENGTH L, I , B t L, =J'~:= w SVMM. ~ GUIDED

    LOOP ~ LOOP

    ~. tof Symmetry T--, G,n,'ol Noln

    I, 1"0' Tobin ond Chorll, "f.,'0 Tub, Tu,ns' 8001< 'f' "L in. E.pon.i~ and F'luibililr ".

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    1'1• • Nominal Pip, Sin

    iH w

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    , - ~ ~ bttwt'en GIJI,j~,~,

    ~U' l . \......-::_.

    w HH w

    l ' "". L -~ Exlr,me ANCHOR SPACING U ' = U U' = _. . .

    LtnQl~ of SHORT VERTICAL h = h = /Itor·br RESTRAINT SPACING U = 4.49 U = .' " IU"'IIIh of SHORTER Io(G H = LM!!'h of LONG VERTICAL H = H = HEIGHT 0' LOOP H = I .15 I H = ..' • If'''IIIh 0' LONGER LEG W = HoriJonlol OFfSET W = W = WIDTH of LOOP W= 1.5 I' W = _'

    Enl.. 0' ABSCISSA h/H = 0 Enl., 01 ABSCISSA h/H:. h/H = En'"01 ABSCISSA w/U'= • 34 w/U= noChOrl .....

    Chort IGo 10 Cur., '0' H/w" 3 GO 10 Cum 10' H/w = H/w::: ChOrl Go 10 Cu'., fo, HIU::::, 'Z. to HIU== 3 IReod SHAPE FACTOR f. = 4 Reod SHAPE FACTOR f. = fs = 2 Reod SHAPE FACTOR f, = ,64 fs-

    ---In''21- ---(n-2)- RtodW,No.olneOWsn = .3 =---(n"ll- n

    no,

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    SqItClrt·COfnt,u...,'h H+w= Ls = Sq.-Corntl'lf"Q'h h+H+w= Ls = Ls:: s,.~-l,e..,U+"2,"" Ls = 1;.7'1' Ls = I~ I Sum of Elf. ELeOw LENGTHS L,. == SUm of Eff, ELBOW lENGTHS 2Lr = 2L.,..: b:f4'. ~Ibou.lle.... nLr = 5 A. I nLr = I LTOTAL mUNGTH L,+L,= L == TOTAL EffLENGTHL.+2Lr= L == L '" tfp..E:I{.~Ls .. nL.,.. L = /1. .1'1' L = ll!'-" I Elf, DIAMETER LENGTH J... ,. fl = Elf. DIAMETER LENGTH OL = fl = fl = EIf,OIAMETER LENGTtI OL '" f, = t. CJ10 f, =

    O f , r -.lL i.

    PIPE MATERIAL (Of Spre, I PIPE MATERIA\. (or Spre.! PIPE MAT ERIAL (Of Sp.cJ 55 - 304-SERVICE (0' Cod, Stelion) SERVICE (Ot' Co6I StClioll). SERVICE (0' Cod, Stclion)_ II. _

    HOT (mol) M.lol TEMP. T ... -,' HOT (mo.) M,'ol TEMP. Th = Th = HOT lmo.) M.lol TEMP. Th = 70'" f Th = 11 __ _"I" "F

    RtIlId opposllt Til SA = R,ad oppesil, Til SA = SA == Rtod opposil, Th SA = 'Z-S.ISD SA = 0" Tobit Tobl. Tobl,· '-- .-

    COLO (min) M.lol TEMP. Tc - I COLO (lftin) M,lal TEMP. Tc = Te = COLO (min) M"OI. TEMP. Tc = - 55DO f Tc = ~_ .. _

    5 R,od oppoail, Til f e ... - 5 R,ad oppo,i" Th fell = fe ... = 5 Reod oppesilt Th !el'l = 0 fe ... = ~~ I Rtod.oppo.il. Tc fll:C = . Rtod oppo,il, Tc fee = Ifee = Rtod opposlle Tc fee = q() I 000 fec = ~.'.. I

    EKPANSION FACTOR f,"-f,c-If, = EXPillNSION FACTOR f.lI-f,,= f. = fe == EXPANSION FACTOR f,II- f.c= fe = qo,ooo f. = oS' COMPUTED EX" COMPUTE 0\ EXP. U' f f STRESS RANGE

    CALC'O :

    It!..=ISe = f,

    DATE:

    STRESS RANGE

    , ..!t!I-ISE = fl S[ ~

    COMPUTED EX" _ • .:t3= S = II. 410 pll .-.--~ CI/'lu-n

    STRESS RANGE U fl E ItJ ,I

    TUBE TURNS, LOUISVILLE',KE'NTUCIO', PIPING FLEXIBILITY CALCULATION FORM JOB:

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