ML20154M707
ML20154M707 | |
Person / Time | |
---|---|
Site: | Sequoyah |
Issue date: | 05/26/1988 |
From: | TENNESSEE VALLEY AUTHORITY |
To: | |
Shared Package | |
ML20154M695 | List: |
References | |
TAC-R00353, TAC-R353, NUDOCS 8806020045 | |
Download: ML20154M707 (82) | |
Text
{{#Wiki_filter:_ _ . __ s' ENCLOSURE 1 PROPOSED TECHNICAL SPECIFICATION CHANGE SEQUOYAH NUCLEAR PLANT UNIT 2 DOCKET NO. 50-328 , (IVA-SQN-TS-88-02) LIST OF AFFECTED PAGES Unit 2 3/4 7-5 B 3/4 7-2 8806020045 880526 PDR ADOCK 05000?23 P DCD
S 4' PLANT SYSTEMS
, AUXILIARY FEEDWATER SYSTEM k
LIMITING CONDITION FOR DPFRATION 3.7.1.2 At least three independent steam generator auxiliary feedwater pumps and associated flow paths shall be OPERABLE with;
- a. Two motor-driven auxiliary feedwater pumps, each capable of being powered from separate shutdown boards, and
- b. One turbine-driven auxiliary feedwater pump capable of being powered from an OPERABLE steam supply system.
APP'.ICABILITY: MODES 1, 2 and 3. ACTION:
- a. With one auxiliary feedwater pump inoperable, restore the required auxiliary feedwater pumps to OPERABLE status within 72 hours or be in at least HOT STANDBY within the next 6 hours and in HOT SHUTDOWN within the following 6 hours,
- b. With two auxiliary feedwater pumps inoperable, be in at least HOT STANDBY within 6 hours and in HOT SHUTDOWN within the following
; 6 hours.-
- c. ' With three auxiliary feedwater pumps inoperable, immediately' initiate-corrective action to restore at least one auxiliary feedwater pump to OPERABLE status as soon as possible.
SURVEILLANCE REQUIREMENTS
- 4. 7.1. 2 In addition to the requirements of Specification 4.0.5 each auxiliary feedwater pump shall be demonstrated OPERABLE by:
- a. Verifying that:
- 1. each motor-driven pump develops a differential pressure of greater than or equalj+g -1,337,pjj,y ) g eirculation flow.
- 2. the steam-turbine driven pump develops a differential pressure of greater than or equal to sid on recirculation flow when the secondary steam supply pressure is greater than 842 psig.
The provisions of Specification 4. .4 are not applicable for entry into MODE 3. //f5-
&A ya fu rian or ey-al fo M jud ce epd 4 N32 p W' .w;a =. 2 SEQUOYAH - UNIT 2 L.28-B 3rede f$an 3/4 7-5 m,,e,% /q 6 ,J I %I &
PLANT SYSTEMS BASES SAFETY VALUES (Continued) 109 = Power Range Neutron Flux-High Trip Setpoint for 4 loop operation 76 1 Maximum percent of RATED THERMAL POWER permissible by P-8 Setpoint for 3 loop ope. ration. X = Total relieving capacity of 6all safety valves per steam line in lbs/ hour, 4.75 x 10 lbs/hr at 1170 psig
. Y = Maximumrelievinggapacityofanyonesafetyvalvein lbs/ hour, 9.5 x 10 lbs/hr at 1170 psig.
3/4.7.1.2 AUXILIARY FEEDWATER SYSTEM The OPERASILITY of the auxiliary feedwater r,vstem ensures that the Reactor Coolant System can be cooled down to less than 350 F from normal operating conditions in the event of a total loss of off-site power. The steam driven auxiliary fcedwater pump is capable of delivering 880 gpm (total feedwater flow) and each of the electric driven auxiliary feedwater pumps are capable of delivering 440 gpm (total feedwater flow) to the entrance of the steam generators at steam generator pressures less than 1133 psia. At 1133 psia the open steam generator safety valve (s) are capable of relieving at least 11% nominal steam flow. A total feedwater flew of 440 gpm at pressures less than 1133 psia is sufficient to ensure that adequate feedwater flow is available to remove decay heat and reduce the Reactor Coolant System temperature to less than 350 F where the Residual Heat Removal System may be placed into operation. The suevei/Ince sdA<e.,b / prenues }n / oluu eau .a tK'a' ed p ,p w;// o/ /enf 'MC 3p.n p: pu y ru;, l t.4., jf , s,a ,/ a , 4 , y ,,, ,,, f , 1 pre w prov a de a.
& t/ cops 3/4.7.1.3 CONDENSATE STORAGE TANX The OPERABILITY of the condensate storage tank with the minimum water volume ensures that sufficient water is available to maintain the RCS at HOT STANDBY conditions for 2 hours with steam discharge to the atmosphere concurrent with total loss of off-site power. The contained water volume limit includes an allowance for water not usable because of tank discharge line location or other physical characteristics.
3/4,7.1.4 ACTIvy The limitations on secondary system specific activity ensure that the resultant off-site radiation cose will be limited to a small fraction of 10 CFR Part 100 limits in the event of a steam line rupture. This dose also includes the effects of a coincident 1.0 GPM primary to secondary tube lesk in the steam generator of the affected steam line. These values are consistent with the assumptions used in the accident analyses. SEQUOYAH - UNIT 2 B 3/4 7-2
- c.
ENCLOSURE 2 PROPOSED TECHNICAL SPECIFICATION CHANGE SEQUOYAH NUCLEAR PLANT UNIT 2 , DOCKET NO. 50-328
- (TVA-SQN-TS-88-02) - ,
DESCRIPTION AND JUSTIFICATION FOR REVISING SURVEILLANCE REQUIREMENT 4.7.1.2.a a W
, . s' ENCLOSURE 2 Description of Change TVA proposes to modify the Sequoyah Nuclear Plant unit 2 technical specifications to revise SR 4.7.1.2.a to add pump-specific, differential pressure test values for dch auxillary feedwater (AFH) pump. The associated bases section is revised to clarify the AFH technical .
specification requirements. Reason for Change By letter dated June 26, 1987, TVA provided information to NRC that detailed the need for a revision to the differential pressure test values specified in SR 4.7.1.2.a. The revision to the motor-driven (MD) AFH pump differential pressure test values is necessary because of the replacement of HD pump discharge pressure control valves (PCVs) with cavitating venturis. This modification increased the system resistance of the MDAFH flow paths and thus increased the differential pressuce developed by the MOAFH pumps necessary to provide adequate flow to the steam generators. In this letter, TVA indicated that testing would be performed during unit 2 heatup to regenerate as necessary the systen resistance curves. In a September 24, 1987 letter to NRC, additional information was provided on the issue of MDAFW pump operability. This letter indicated that the element of the 2A-A HDAFH pump had been replaced to increase availabic margin. Because of the replacement of the pump's element, a new pap curve was required for the 2A-A MDAFH pump. This letter detailed how the new pump curve would be used in conjunction with the system resistance curves to establish the new SR differential pressure test va* vs. A safety evaluation report (SER) dated November 2,1987, was received from NRC that provided NRC concurrence with TVA's methodology for developing the new SR test values. The revisions to the MDAFH pump differential ', j pressure test values are made based on calculations generated from the test data accu'mulated during unit 2 heatup. This is in accordance with the commitments made in the two TVA letters and recognized in the NRC SER. As the result of a revised pump curve and more conservative assumptions in calculating the necessary head to ensure adequate flow to the steam generator, a revision is being made to the differential pressure test , value of the turbine-driven (TD) AFH pump. To provide clarification of the AFH technical specification requirements, a revision to the bases is being made and is included for information. , Justification for Change The Division of Nuclear Engineering (DNE) calculation B25 880430 807 (attachment 1) determines the new AFH pump differential pressure test . values. A summary of the calculation results is provided on page 1 of the calculation package. The differential test pressures are determined by two methods. Method one is based on the calculated system resistances
- generated by DNE calculation B25 880430 806 (attachment 2), whereas l
t 1
-_ _ .___ -.__._ _...._ _ __.. ,-_ _.. _ _ ._ , _ , _ __ _ _ _. _ . _ .___._,____m_ , _ - _ _ , _ , _ . , , _ _ - . _ = ,
t - O method two utilizes system resistances developed from plant test cata. The differential pressure test values that are added to SR 4.7.1.2.a for the MDAFW pumps are those calculated by method two to avoid being overly conservative. The required head to produce 465 gallons per minute (gal / min) (440 gal / min - to the steam generators and 25 gal / min recirculation flow) against a steam generator pressure of 1,100 pounds per square inch absolute (psia) is calculated on sheet 5 of attachment i for the MDAFW pumps. The available pump head is obtained from pump-specific head curves. The difference in . these two values is the allowable degradation of the pumps, assuming uniform degradation of the pumps. The allowable values are found on page 9 of attachment 1. Because the pumps are tested on recirculation, a minimum head value at recirculation must be calculated. The allowable degradation value is subtracted from the available pump head at recirculation flow. The remaining value is the minimum acceptable head at recirculation flow. These results are also found on page 9 of attachment 1. As shown on page 9 and the summary sheet, the minimum acceptable differential pressure test value of the 2A-A MDAFW pump is 3,439.8 feet (1,490 pounds per square inch differential (psid]). For the 2B-B MDAFW pump, the test value is 3,305.9 feet (1,432 psid). The same methodology was used to calculate the minimum acceptable head for the TDAFW pump. As shown on page 12 of attachment 1, a differential pressure test value of 2,689.3 feet (1,165 psid) ensures the TDAFW pump's ability to deliver 490 gal / min (440 gal / min to the steam generators and 50 gal / min recirculation flow) against a' steam generator pressure of 1,100 psia. The pump-specific, differential pressure values added to SR 4.7.1.2.a contain no allowance for test instrument error. Thli is consistent with other safety-related pump flow and pressure test values contained in the technical specifications. In summary, the proposed revision to SR 4.7.1.2.a provides specific differential pressure test values. The individual pump values merely reflect the different pump curves and different flow paths associated with the individual pumps. The values added to SR 4.7.1.2.a ensure that the pumps will deliver at least 440 gal / min plus recirculation flow at steam generator pressures of 1,100 psia. This ensures that plant operation is bounded by the assumptions for AFW flew in the various Final Safety Analysis Report (FSAR) analyses described in FSAR section 10.4.7.2. The revision made to section 3/4.7.1.2 of the bases is made to clarify the technical specification requirements for AFW, The change is an enhancement and is included for information.
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%, TITLE dia\muvw WEAD htQutRue tog Twg "T*uRBlHE - D RW E N PLANT / UNIT 98 AMb fhven -D RWrw Auxt u A RY Fu enwATex ( AFWD Puvaps Srouev## [ Unirs / (c? ,, PREPARING ORGANIZATION KEY NOUNS (Consult RIMS DESCRIPTORS LIST)
_DNF - MEB Pam,s . McAn . F EE D WAT ER Each time these calculations are issued, preparers must ensure that the original (RO) RIMS accession p'f' .BR ANCH/ PROJECT IDENTIFIERS y pga3oooo ""*D I' 'III'd '"'
). Rev (for RIMS' use) RIMS accession number )i R0 B30(oO 3 E 0 0'W , MEB ' B3 0 S a3 301 'M APPLICABLE DESIGN DOCUMENT (S)
R3 h 5 n.- D'sisu cairEsis, sou - oc - v - is.t . s Q 25 871222 8 o'o Rh @f0RRijy;ng 1.,B,25 880430 807 SAR SECTION(S) UNIO SYSTEM (S) ' ' " V a id u e io. o. , a o3a "- g g(yo./. o,;a, c,,) h:,.m Revision 0 pte RK 3 R1H R3 5 Safety-related ? YesB No ~O g{g ECN
? . - "No. (or indicate Not Apphcable) ( ,4 " y/4 gfg y[4 Statement of Problem <. Prepared TECH. SPEC. REGutRt$ TMAr THE IN0T04 titO .T" W. Wn n R E N }& Q. TuesME DRIVEN Aux. FW Pumps BE . h'l Checked Q g ( fttJ00tt ALL Y TESTED TO DETE R rMINE If THE .Q,,% , J. LI) . b D E}WOLDT n CitAM) %~ HEAD DEVELOPED BY Trte Purest is doEcunif YY} R"i'*'d Q Q s To PERFCRtn iTS SAFE YY fuNcricH.
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i , ) , le , $ 3(o, & - 5, ~+ 8l 311 4 c. h Abstract These calculations contain an unverified assumption (s) i j that rr.ust be verified later. Yes O No @ If C$ltul ATICH suni fERFCMr> FED To OCTERrnlNE Ti4E AINImuns To rA t DE VEL c!E D IIE's D (TOH)
,: TunT rxE n?orce . on vEn nao 7*ansius - Driven AFW Punts masr DEvetop nr REctac uinriox ; (Test) CeNbtitoHs To fissure 7 H AT THE YuMP5 uJ I LL DEVEL P AbEquATE TDH A7 DEstGN t ; ILow C cNb tT n 0 N $ . Tut REsuLTS of TH E. C Altu ttitcN $ wEtt t hrnum TDR MeioR - DutvEN AVW ?wmPs -
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CA!,CULATION INDEPENDENT REVIEW VERIFICATION FORN s V Qu'l 9 9 6000b R4 . l0 Calculation No. Revision x ( - - J Method of independent review used (check one or more):
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- 1. 2. Testing method i [i " ' ' ' 3. Other method . Y b
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Justification (explain below): acu-s Method 1: Identify the pages where the alternate calculation has been included j un. .1; in the calculation package and explain why this method is adequate. 1p .P Nethod'2: Identify the QA documented source (s) where testing adequately M. demonstrates the adequacy of this calculation and explain'. h'I. ;E g' d - Nethod 3: Justify the technical adequacy of the calculation and explain how the t
' adequacy .was verified (calculation is similar.to another, based on i/ I . accepted handbook methods, appropriate sensit!'vity studies included A g, . .
for. confidence, etc.). - . Y* 17/E ()f.rk:// A/M*ACN U.SS A /H 1*H/r C"4 L e, . . U L A 7'o r /7
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- Attachment 6
,s Page 1 of 1 CALCUI.ATION DESIGN VERIFICATION (INDEPENDENT REVIEW) FORM 29/9280000 _
R3 Calculation No. Revision ,
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- Method of design verification (independent review) used (check method used):
[ 1. Design Review / ,
- 2. Alternate Calculation
- 3 3. Qualification Test,
%i < Justification (explain below): 'a ~ . Method 1: In the design review method, justify the technical adequacy of the - calculation and explain how the adequacy was verified (calculation is similar to another, based on accepted handbook methods, appropriate sensitivity studies included for confidence, etc.).
Method 2: In the alternate calculation method, identify the pages where the alternate calculation has been included in the calculation package and explain why this method is adequate. ( Method 3: In the qualification test method, identify the QA documented ,
- source (s) where testing adequately demonstrates the adequacy of this
- calculation and esplain.
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, DESCRIPTION OF REVISION ap,7,,e f TM5 ve v;si on incorpordes %e ;nc re 4 se in ,
s3 sb cesis b nce clue to 44, r, %, %l of A p re ssu.re. cowh,1 va.lves x1 de Insfa.lld'oh y mdois ne g e covlInk)] to plnc.e. 'The iacrea sed Sy S Ie%
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DESCRIPTION OF REVISION d 2,3 3 fis y i t SD CA*. w GA7/o+1 P04 O c 7Cic M i a t *J C. THE Qlalln py t +J t w1u M 7014 L. D WJA M / C. NfAD C) I' 'r H C
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/TilNIturn TOTAL Dyt/Artue Heno of rnE InoroR oRiveN AU XILI ARY fEEOLUATER furnPC sN SEC TloM g C .I. m rimq C'l. c . INc0RP0KAT60 FIELD PurHP D$rM FOR . <?A*8 AND 9 8- B , AND REVISEO cal.CtAl A TIONJ To REFLECT NE W PutnP CURYES 'GEllERATED FROM DAT)9. ADDED REFERENCE ,
sr TVA inten,9NICML DESIGN STANDARD. ZNCORPOR A TED TEST ZNSTRunf EN T [RROR fINACCURACYFOR THE $}0r0R - ORIVEN kyt. FEEDu)ATER ?UrnPS , ALSO To A ccou AIT foR 7tfE
$PPENDlXt3 : APFMDl! A ~ A SHEETJ , fippgr/Clx 8 - 3 SMEETS ,
APPENCit C - 9 SvtCTs , puo AFPruvox D - l SxctT. Q 3 e c.cr y e rd,) yowy b't o for B A - S ( TD A F / P) me d rte t t $ (.olc . lo It f.C f,e MJ g u te Cyryg ggfera hiera Aka. 16t0ffMi t. OC # wd ere redsbee. va\ue s br AF'// syden . Uculd "w trg (A d f/ (c U ff bl3 (b Of It f 'J '// f 0 e IT "f D AF W P ( t. R) Se c.h sn her t s) c u.k o k(n o didhvuAM hts) ( AAJel ,Ae.\d ,4 ,od dory,d rdgrence,5, M h d 'Pur pse" stdion 2 c1 cde.W e r e l do< s e c.ii e r s . Ruuokre3 rys i-d calc. eaa aid Appuaire. E,7,+ s . TV A 9 0134 (EN DE S 4 7 0)
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.? CALCULAf!'310 221928000 Sheet .L of .11 ,
SQR ATV Svstes Prepared by[6 Date 4/D/56 PROJECT SE000fAR ECLEAR PLANT Checkedby/wDate@% SUBJECT MinieueHeadRecuiredforMotorDrivenald Turbine-Driven Avriliary Feedvater Puses
SUMMARY
OF RESUI.75
, Equation used to find sinleus Minious acceptable Puep head at hop head Required 703 Allevance 3; ecceptable head at recire. I head at recire, a recire,flov -
at 465 gpa - at 465 g;s + for festing
/,i ., flos for surveillance test flow for the Motor (based on Instrueent ,c Konllotor-DrivenATVPumps Driven AIT Pueps pump curves) Error (TIE) ,' Euf0E btIftB AUllLIAEf * ~ - - ~ ~ ~ ~ ~ * - - - - - ~ ~ ~ - - - - - * - ~ - - - ~ ~ - - ~ ~ * - - - - - ~ ~ ~ ~ ~ - - - * ~ ~ ~ - - - - - - ~
- FEEDIATER PUMPS I Pueplo. I 11 A i 18 B 1 2A A I 25 8 1
, ,f, I Serial No. I 117168 1 117169 'l 117171 1 117170 I Read at 465Spa per pump curve (ret.10) I (later) ft. 1 (later) ft. I 3029.4 ft. I 2883.8 ft. 4A tequired head at 465 g;e (see sheet 5) 1 -
2678.7 ft. I - 2691.6 ft. I - 2686.1 ft. 1 - 2681.6 ft. I I i 1 Allevabledegradation I (later) ft I (later) ft. I 343.3 ft. i 202.2 ft. I I I - I [ Availableheadatrecire,flev(?Sg;e) 'l I . I I , perpumpcurve(ref.10) 1 (later) ft. 1 (later) ft. I 3783.1 ft. I 3508.1 ft.
.. I I i 1 @
linlaus pump head at recire flor I (later) ft. 1 (later) ft. I 3439.8 ft. I ~3305.9 ft. l l l 1 i AllevanceforTIE(seesheet7) ' * (later) ft. I * (later) (t. I
- 48.7 ft. 1
- 42.3 ft.
- I I ~
l I 9 Einieue acceptable pump head at recire. I (later) ft. 1 (later) ft. 1 3488.5 ft. I 3348.2 ft.
- or - I or i or i or I or EinieueacceptablepumpheadforSI I (later) psid I (later) psid 1 1511 psid i 1450 psid ~ '
Equatien used to find einious acceptable Einleveicceptab'le Pie'pheadat hop head fequired TCH bead at recire fles for survellance test : head at recire, flev s recire.flev - at 490 q;n at 490 g;e on Turbine-Driven ATV hops for the T-D ATV h ops (ftce pump curves) TURBINEDt!VENA7IILIAlf *-~~~~~~~*-~~~~~~--~*~~~~--~~~* Fit: VATER P;MPS I hop No. I 1A S I 2A S I I Serial Es. I 127182 1 127183 I Eead at 490 g;e per puep curve (ref. 3
- 10) I 2800.0 ft. I 2766.1 ft. I fequired head at 490 q;n (see sheet 12) 1 - 2600.6 ft. I -
2600.6 ft. I I I I A11ceable degradation i 199.4 ft. I 165.5 ft. I MTE - 1 I i 50 Testing Instrueent Error available head at recire, flev (50 g;e) I l t su added to the sinteus per pump curve (ref 3 + 10) i 2972.0 ft. I 2854.8 ft. I acceptable pump head for the 1 l ! Turbine Driven ATV haps (see Mintaus acceptable pump head at recire, i 2772.6 ft. I 2689.3 ft. I sheet 8).
- or - I or i or I Einieue acceptable pump head for $1 1 1201 psid i 1165 psid i 1
f
*4 g
MldlThM- MD . CQUlMD QAJ9.L RUN E DR11m s-u r \ u Q _ .
.And_ bin - Duvut__AEW Pumn _aa na enoo.
1
~~f
(- -- uanojkPS-.cm sinleL. e~us,e ._m, WNm A') P unost ! TWs ca\ cu\. Mon ade.<rMot.s kraden e q uictA W.d u d 6 t. AFw gurt.95 m.t w a t t , . ..u n. naa.3 ,, m. ma we,at~ % at.sgn esguire.rcent . The Edmum bd %d b Jaec<dnsA 6 Wis : c=\culdlon is usd b Tee.k4cd sytch% Bguirtw.tvis w. s t.a (.c . ; Os AF W pumys. {! ] .i . I r e - a o e G i ( . e a i L 1 p , ? B) A 55 0fAPT \cNS - k s k d In h od'f C h C3k C uk d o n . , , h i
=
E h i j - . l
_mumant_.REnn_Rto u t R LD _to A__T_tl E Tusstu t.._tu tLAno_ 5-t c,
. a e,_jA j
- ) _WLuon _.DAWE.N_._AEYl_ EumPL- aA B 36000.0 . _ 1_
R4 Sfb._ADMG moecegf6_.we_p/n/92 y WWt6 e <e to Av) w, IWIWB7_' G U w c) ktrentw et.1, 4 AF W System ?rtssues Dr., Ca\ cu\a't. en - St4P \ - a - t A - 00 53 - o- wCG - JWW - osaa34 ( tas 65 0H30 8o6) a) J W w 's t.\c . n/ glia (.u..ha)
; 3) ?uvag Ttsi Curst Dah (5st AEW?umgta\c..bok)
I t. A r.d %C 30 - %%W - HitA- to 9A , Pum9 Test Curves IA-A 41 W o't .c - \s-s - cdv e.n P m ys a A-A stt etisrtect '\0 . aB-B ste esTe.ruct 10 ; P"Y T**i fN'T' S*f 14 ' 530 I i"?*IM\U k Ib) Turbe. - belvec ?wmgg aA-5 as cdecue.g to .
,,%) Ei*cg b vn W i\ h e e t. M t itst of Ve b ri (t4EB 63\0\16~39), .
W '
- 5) SQN' ATW F\owrates %ric3 tAtt.B ta\c.. c e . sow - CA - 0053 o - %c.4 - t. c.5 - 03 t a S S ( t4% e 5 04 0 fo 004) f.') t sd.f CrR t.ris Soc W t W iw Sitam Sys b SOH - O t - V - 4.\ .\ ko ,
T) Design trR etia 9.c We AFW 5phm SQ N - t .-y - \3.9. % R0 ( tims \ 3,3 3 t') Pod tAeMies' tion Test (vtAT) - 53 f.c U.R s .\ + a Avv/ M CavibLg Ne.chri ( set Apr snAb G) . i
%') .
i i
\o) Aca\ yds of AFW Per b.sl Tesi Dah R.a\tv\a't.i e re, squ - tss - os)
[ Pav. I ( E3 E So, oq;q 331) 2 i h u) Lette.c free H.L. Je<es b R E. hie.\s dottl na/3/87 (BBS Bl \30% ol4) ! E i n) v)erk m (w?) \a\%5 for sA-A tAoier - ochen Arw Pump C ad hCc3 t Ve.niv$ ( :ca Appeedia F) I f y --e -..-~n _ -.--.,-aa
4 1 l* ' . .j ' _YihturnVLfA _ SEAT 1_ELQUARED__.FOR TME_ _Tu15tilf." - DRrif.14 s-ter _ 3 _ er __jQ __ _.Alib__1farth.- DRL1Ett - AE W__2utes ._ _RaeLino.co 4- . ccuiutto onc ._t{l68f 89 C.- , eneno e em V/10/88 n.
\3') $ han $ - W'sOantN e ( hekf 'thouvUtaIn Mudtar Cadito't$w3 New1uri Tesi .)'
- PO fo 39 - 3) lesh o9 aA -A mbAFWP Ca$la't\n3 Ve61ur's (5/tlON -
C.catrac.1 No. B SP - 7G - 45 30 % ( set AppewdIx b)
, 19) TV A nu.kadsed ?$ylw3 browtw3s :
D rowie. tio , Rev. _U n'i t - Descripb 43W46\ -4 b o Fetdwo'ter Vipo3
%3W4do-10 h 0 cc.edeosa'te Tiping ,4 4 WMD1 - t E. \+ a AFW ?'spc3 RT W%T 't 1/T. 1/a APW 9'spn3
- 5) FSAR See.b.io n [o.% . i .'a - AaxlSty Feelun'ttr s't t v. - A rnev.d ntn't. 4
( . e 1 6 .. 6 b a _=
==
., %ntmas.__REAb_RGRlhED_ EOR _UE.__TuR*2DF - D93)E.H !"(Et _ _4 __. cr _Q
_ Ann._fAcup - D_Rutil_AEW Pumps _aB.\13.6 coo ( ec m sto p Cfb o m .a hsjss.
.m R/WBb_.-
cweae (s *A 9 ') LAt.e.utATsons 6 motor - D9/VEN AF W 9umes (tAtAFWP) f.t e o-y Wih Re. cav'l.alic.g i venbris \nskhd vd Ike Ste w Gener ' tor .(,s G) pressure at \oss esig ( ref. 6 + 9 G d the regui<ed twy Tob\ Devdered Head (TbO') a t he. re.guived Uow e4 % 5 gg vo ( 440 gym to lhe SGs + a s gra ncirc. flow') ( re.V. 7) by Ewo enthol. . : $ I') Cd eubl e. Ot. TbRr by udw3 he SG yrtssufe 3 $hhic htd i , ca\cu\aled sy stem' tt.sistance (rd.\')3 awd he tavibling ve.nluris h?'s . Use PfAT - 53 (rt 9 . B') a.id enovu 9aci.wr e. \ab l.ed vabes ( ref. 4 + \3') Er vevd.uri 6? hs sea .
*d') Use. .Uc. e d ua\ 9g'e.\d vneasured sy s hvn re.sishwce va\u es 9 tom P TAT - 5 3 ( re.f . s') aed wP s'ans (vet.ta').
A d.ked 1 -- Fiwa (guivd Tbn ush3 cdculd.e5 sychu resh bace a VAD A FWP 9\ow of 4b5 gm. kgulted it% (vone') - 56 Pressure. + Static Sead + Cdeu\ald syshu 9iesist ance ( 5 % c') + Cavib'Mn3 %v.luri h? NM (3he,t u) (<ec .1) scS 5 . a3.w SG Pressure + Sia' tic Sea 3 + ?,9s e = K = 3,q 3 3
+ U.19 3. 39 - 7 0 5.5 ') + o,q 3g M /
K= a 5 cW . % 9 Ft .
'Tt% e ' :-K + Coviioliv.3 'hth r\ h ?
Nom ad d i'e c. vedturi AP 's ad cd edele l'r e. T D % r Gr e.o c'n Ub/sVvl ? . Loo p i A -L \B -E 9A-A 3 b- S N t.chri 6?'s : 70 psA ~13 esid 43 pdA 55 764 (ref. %') t em - 51(ret s') Apper & t ?rn - 5 3 (ce.t. s) Nde : Sc.'tt Lor 3 (hst e,7r] JAo sc4 ce. s , (< t.( .13) cdest
- g 3 conUrrwWL m 'tes't d b 'd e i
a
,a , a wtaa a % wn. ss tof = s5.a =
2
o l i wter 5 or la Jimmtim NEAD_RE.Qu\ RED _._EDR__THE__TnRMMF - DRWEN_AMb_._ _ j hoioy - DKLVEH hEWAustes anI9an0Do ; (_ comrtoff8__ care Bla M.u careno av __oarr f(Jo C _ 0 Lep . YAtbl \ Re.u\'ts ' _\A-A lb-B 3A-A SB-b Dr ' K = 2 5 % t4 % R '>
+ + + . eJ e es e 433 _ .433 .433 * .433) u\ el los s Gr a15%l R M13.6 H a1023ft 91 a y .5 G ne rest of sys tem ') ,
Hok: Adu=\ ?vay F\ow : %5 gym (440 epta h SG + a5 3pu recirc.)
' <<a . \e tAs%) 3 - Find TDMr usie3 syshu recishnce trou ttAT - 53 (ed. 8) and WP \sms da puup % w = %5 3 pen ( 440 gyu lo SG + 35 gym re.tIrc .)
f Reguled TDH ( TORE) = SG Vressure. + 51alie. M d + fAtasurd Sylem 9Eshhwee .(sh', MO wetuo ( ,, TDH r
- goBE o.u23. + ( Ei . 343. 314fo5.5
' ') + 5% = 3 5 4 A.6 % + Sb Pamp dIsckar0e pressure. S b t'.c. Mtad f ro m tum Cm M Sb: ( m f - tev 's 4,gt open ') - SG pressurt ~ 'om.gy - . wdiscurft to n SG in\e_/_ t.
( M &. 34 ' - /A& og') = 5 0. C '4 Low I {,5' reef Il { TbW e
- I
[Ba8-too5 ~M*M uqo } d ~ cN lA-A TDNr 054 2.o f II. + ( o,q33 gg,(,7 ,, SbIB.3 $
.. . - . ~
I' ' Itas - t00 5 - .a6[qqo}3 n
\B - E TV H e = 3540 6EE + ,( o.933 ( ss ,- ) ; ," = 2 6 o, \ . fo Q o [ / t\n.y c.%
b}j(g3/ / no } aJ ]O = M&l $1
~
2A-A TDH, = & 543,4 $b + f_( o,q 33 AA ltn - \o0& RB-E TbBe = a !99. (o $4+}3 o,w 3 3 - 0.36}j g jun j a(b = g r, g g , g, p g
.n 2
E h See ynt
- x 3 - \% of PtAT - 53 a s ee p.qq x.o % I 33 of wf \ans
? (r A 8) *
(re t. sa )
$ X #- Sea gods X M of PRAT -5? 6a ge, pu e, ,_a-st of PtAT - 5 3
( " f ' ") ' (n'. e)
~
r - , , - - - - , -- - _ . . - , . ,. - - - - - - - - - - - - - , , - , , , - - - . . - , . s y- -, --s-
e'
. $niti (o or {$
_tAtniuurr_.RE.AD Atoutat.o__E0R _THE TuRtthE - DRWEtL.Aub ... _.thofn - DEYEtL.AEW_Eutzs maaanooo co w rco 1 cue _9la3l89 C. cuecao - -. _ wr _WWBB_ _ V e The. SG gressurt used in del:tryoining us S % for BA-A'and BB-B Mo' tor - D riv e.n AFW Punys was dtriv e.d from hakleg M astfagg oi We. aygropridt SGt pressure just befort s h rliw3 he yuup and jus't a9ter sloppin3 %. pump. TAdkol a un\\ be ussA in dt.htminin3 -the miwbuvo reguired head for % mo' tor - d riven AFW pumps for ut 4\\oualog (coso*s : i) w. vdues usel in Jehruiniwg ue Tear att bstl on actuai Sie\4lped hst dah whick heue\y re. pre s ents ne. syshm resishots. Vor tack pariticu\ o r pump. a') Wr e. is swe. cor,suvdista fadored ido ehrmining he uinimava reguirtl ke.ad 3 ar.d ney art. as .fo % w s s a) he. tWo gpm AFW Hoe re.guiren sit comes from a maxima roc 6r rower
. o f't03*4 .5 He Est tou sand do AFW (cooW 3 ) Gow b de SG for lo minu't te ( re.T. t 5) 3 261 0 Testi S I.ndruerea trror (Ttt) s wWc.k see.oua s s er tw s't rosa . iwaccurocier 3 is s\so bei#3 added b Ekt minimum re,uired beod for e.a ra assurorce. theh the ranite.um 'r. coa c3\e.u\ A d is conservo'tive. .. h eg * '
e.> a ie r. 7;p s no, sum s e. as vaa is <e@pk s~ -tarea to m conserudim uit is kbre.4 inb h u diuuu. r e,y r d 're 3 v2b e . ne Aiif er e nce b e.b ee n B e. su d;o, erssw rt vessurd ad adv,\ 're31 f rom a esT tese i .; M . 5 71 (rel ti) is o.oS y:i he a be ( n't t of % 5 ym . l
.- ~
l 2 l $
= ~~
p . . --- .~ , , . _ . < . _ , - ,i.,
't I8tMLmum NEA0_ REQMMYD _ TOR THL_Tuastat _DP.WEtL_AMD 5atti % or d I. _ffl0 tor - D RWEM__AVW-_ emf 6?s AR13RBdQ00 C* R4 4ffa %l3dBB_.couruito \ @/3/$$ ewtexto.
v fh_. cart J]_!3/A'7 _catt12//9/02_
+
d.k.k Te.Sh'n3 L straraenh Erfor (TlE.) \s c4\cn\ ale.d usI63 (28. \0 Referewee \o uses ach=\ Vie.\d les'telyump dab and thew develops a ( computec gewerap.A pump curve. by means ei curve. A e3ydion / vegram . m ed, to edt. mcovyereles instrumsd iwaccur acy Ash and a min./<anx. pump curyt. bgsed ow Ot +/- of 'inslruroewl tnaccuracie.s appTied b h s womiwa\ puwy curve ( gen trited from actu=\ fie.\h test dah) . The T\E used in his es\t. is 6 t overage. of dif f e.re.vces , in head .- 3 be.hesw he. miw. + nod es\ and enas. + nomina \ yuay curves (ge.nerohd
'mre.4.to)ata flow o9 IWS gyn .
Min. Mead h pecked (
?u ra p *A3 B \ . 3 qs.) 41 BA-A f' 30M.4 Nomim\ Ne.ah Expec.ted dis 9erenets D 49. A Ci @ %5 37,4 3078.6 6x. Me.od Eirected / . =- ~gg.\ + 49.2
. aAdA TIE g : %B.65 41 or %B . T '41. Pump asw\.%- N0n. 1\e.aA Expee.ted gg,q g at-6 > ass 3.S Smina\ had Emch.d Max. Meal Expec.h e.d O' N oi m cewees Q 465 gg<a a%a4.5 41.% + 43.~4 36-B TIE = = % A. 3 fl i 3 Y YO O $ 0 Q Q(
\A-A -@ Nome =\ Head Ex pett el t>i f fsre n ces @ %5 $7m v b x. Red Expec.hd / Or'f)
LA-A TIE = - (inter) = ' e 5 - 5 h
s-ter 8 or 13
. . Mimmum_ NEAb ?wQWRED_foR.IHE_.TurietHE _DfuvtH__Ano c', __fbxoa - Dmin.__AEWlwmis aRLlas.0000 ) ,' R4 ofE wlnjst ecouno 4d_OATE _jg_]/9 /97 C (
W //(bol6% cutento Asv__ we /2/!9/87 - (/ fuuy ( tahr) fain . bA Exyt.c'tel p '().hr) to -t ) N o m \na\ h eal b y e d e.d DMferences Q wu a9m v h.Rtad byechl O*E'#) (\ der) =
\b-B TIE = g T 'n e. TIE for We. Mohr - Driven AFW Pumps 6cor po rale s ins).ru m en't error Sce<n bdh Slou3 and pressure (head) insicovet.nlation inaccuracIts. The tota \
error is dele.r mited by usin3 he.* 5guare Rool. e4 We Sum of %e Squares " ([( y + ( p 4 2 ] of n\\ De. \mccuroties . The. TI.E. term based ow\y on pressurt / head was \O ysi3 (or a 3. t r,g } , Ther e fore.j M int Surveib6ce Instruchiow (51') wkkh lesis he fA-D AVW ( Vumps / sabsfy'i$ Teck Spec . require. neat.s ) cow mea sure. We pum p %e.d witb an error of \ess lboe or e.g,ua,\ to \0 psi 7 (i.e. . We to psi error can be me} /by us'in3 4 a'OOO psig d scharge pets 5urt gaugt whick bat no of a o .3 and a (.0 psig sxti-ion tressure gouge which 6s an occuracy o 7r g of,- ) Den no fucWe.c \naccuracit.s need he b e. a ccoun't ed for . Ic.F s1 - aun witt in cor p oral e %e. use ef he speci(iel gqqes ab ove in ST - m.a . There is no TT.E. opp \ied 1.o 4.ke "Turbine. - Dtiven AFW Pumps sinct. S t. gump is only. reguird b suryly a minimum otf 440 gym 't o 'the Steam G sn era't.o r s and he yuup is cop e<b\ t of a coui m \ (\ou2 .9 Bb o gerr . S ket 6'ts l p.4Ae.s app roxirnde.\y too % esserve warg i w he he pump ,We instrument l inoce.urac'es are. ne3\i gib\t whew compred b he excess pump capaci'ty. ? ( see re9.11)
, ~
s a
=
2
i e Q-e SHEET of_ \D ' '. - _lhtutnum__ MEAD RLsuiRED_50R_. Int __T.uRElME ._DRNOL._ Ann _hioR_ _DRulEHJ_WAMPS CiLL L'AMLQ 0.0 ___ cowutropf'6_., care 4 lab 163 C CHfeKl0 . ._ __ ,0AT( . ____ d,t.c Since me. hod e'l (skee.h 5 ) pe\ds h aclud syne.m resistowce [t AFW pmp 3 tbt a bu abit. pu p degrad a't ion w?ll be, basel on wthhod "A . Using lhe ss<6e. lechMg ut as RO of this (s\c. 3 he minimum acetybable. had when led.In3 s't re.cifc. T\ew is given by : Min. acceptable kend o't redrc. .:: iu"P head t
'\ # 4I*W -.-
Pump head [0%5Sf"
" \ A%wsne.e.
It ' d"* ioc 4 g** ( bo s e.d o n - . - . a %5 gym j + 2.e t t ru r,a e nt pump curves ) ((basedow gmp curves) / Error
- AFW /Ao' tor - Drhe.n Punys Minimum Ac.cep t sh\e %e.ad g Recirc . h'a5 3pm)
Pupp 1A-A LB-B AA-A 'a t - B
-s ha s Mr. 5 ,
['P pe< pop eit$u e. (ldd) ft (\ der) ft 3o 39.4 S't ass 2.a R Rewird N; e. %s. o, pre (frou sheet ab) 0 6 T B . ~t it 3 691. fo R d 6 6 'o.1 R % 61 6 R Allowab\e d egndo%c. (,iotec) 4h Oder)ft 341.3 4. soa.5 ft i Head a Etcirc.. N hy n g eer pup curve (\def) (laler) R 3 H 3.l R 350B.1 il
- 6. Accey' table bl t Redec. f \.u (w/- ut) U 2't")
I.# U*'t") N 34"* B N 33 0 5 9 fl-Aumece nr Tes).;,. T.< siro *u't trror (7,,, O '1"s) R U" su .; h, 4 8 . 4 ,.,n mR Sk " 1 3 ) (lde ) 4 t' 3% B5.E ft 3345 5 R ( t 'r e r ) G m;6. Auedoble Nesd or . or , or oc
'u/ Til & ?.t C L f t Ugw ( tsue . PCS USk^f . f 5' \51i 95il \M 50 psil thx,nw h\\adt -
N fadion 3 % (l.':u) % (i A ec) %
- 3. B % %6%
2
- c. Oes r$3 3'tioo
/$ = (Purnp ? cet tc . Mea d ( \l e) - 'Inin . A te eybb\ e. B e.sl s't Re c ! re. . $ w/ TtE ] Divide.d by Mr x \00 % ,,-,,---y. , , _ . - ,y , - , - - ~ . . , - , - - - - , ,--,,.._.,,.,..,,,.-,,,,,-3 -v.-.~~,,e. --.#.- ry-v ,
i Post mal #TENAMcE TEs 7- - W P 11195 - SEatioyAu virrLEAA- FLAMT -
~
(1 NIT 2. $$ Moroa - MIVEM AFtd PaMP 2A-A SYSTEM bATA AM ALY SIS h, (A-O MOD . * *
# s g eoas . -1>..,,, a: .
4 c +.,s.a)
. - ta* se 6 im *=stm(ord. J A.%.'t:::' - ta-a g..% t w e ms m(@ ww)
D - W 1 n. i.eum. LAr A PW h. m, m. w . ~ a-, v-o 4 a. o , , , .n.
- w. si3.: r.%. -
-2 u ) >5' # n.. - g.o . . b M7-,'C3'** '" -
J 5 l' ~q ^ teos
//
7 // 5%
. l ~ // PD-f- // sb' %q t bu**'
{ / o - . . . l . , // 100 zoo soo 4co .so '~ soo poo y
?.
To rAL PUMP FLDid ' c/M - c.a. to/isfer i,
lt kQ U//{SD Fort' run dt a s _ sner _t } _ o,_ j 2.
? ,,, , , . AUD . V1 M tallo rklo uA M ' H EA/AADu v it./_A n y f c E D_-
O/ztt/S \ _tudretz p u M Ps C M ME slaolsa. comrco /2 d 6 ouc / o- / 7.fr 7 N_OF# cueno JDOu, /o-GSE
- b eA D) _ cat c.uLATioNS 4CS U ME~ /f o770 y of TH 6 7,4 g) /s =
TH6 MirJ/M t.<rt 104 75/t. t cs/5 L f*Det D67Cl4/Ut4!4 THC s2 74 7/C.- N C- M $ ~TGA H Q EL . 7</2 ' c/ f " 6 Esl , b c odoes).c A re .2 70'2466 ('Y ' N ' T4 ^)l< (CST) ' ' A \ /
+
(rd. n) Bo770M o f* , W TAMM6l.,706.8[ EL. 6% 1" Ab A FWP p f EL. bi t' 3' "s T D Al'WP k
) A F u) PUMP ' ~ (cf.i . W)
S H = 2 L O A rtc36) (Po m 7 c)F M ^1 ^1& c m <1 4 7 mc SG) M t a u.C M/A// M ukt kl4 TE /t L 6 t/ 5 4. (c. o rJD C s? 4 4 TE . J Tore A 6 5 ?*A U k.) ta l 5
={7<./2 - d '//c.') - ? 6 5 S = 3 & &cl '
e 1 emm l 4 l 2 5 _e
v
,,. '. __T8 tH irn% fA 3LMLR ED ._N EAD._Jo fL_T H E . TuC LM E - DRW EM_ AND sstt JD or \h
- i. _fAoToh. _DatH_AEW._Fm9.1 Ral%a 8.0_o.0 0
'AS. _ eb_.Al30f tB__ coueutto gf6_ oarc R/t9]s'+
C ( s nnb cueno. h >_weJ2/IWBy _1 l () . B) T-D Puvn?5 [/A ssume loes Accord et to Wesh'wh. oust. and ref s .363 3 + \\ *)e y NO gym (+ 5 0 geen recirc. 9\ow) is reguired 1. lhe SGs d = gressurs of
\oB5 9s'g m order lo veed. Ils sdtly funcMon , use thIs as k bas (s 4.o esbale Ike lech specs . reguire.mtnh .
F:nd osnimum eeguirel TDM (Tonc) for & TurWe -br{ve.n AFW Vump (it AF YlP) sl 1.ht eIn muu re.gu'gttd AF v/ (low .9 tMO gym to We SGs. TDMr = % Pressurt + Shuc. Mead + System Resishocce (caicu\ itch (r ef. 'f) (f tf. t) ToHr = 85 , [g, w3,3 _ 1 ,3,3,) + - j = 333 00.6
^
T B A F '//P tab ' head from R etirc M tad' ( G ) Nimum Puu p go, pump curve from pump AccepYab\e D tt<*dah,an ,
.1 %0 epe curve .(50 tim) Real c. Retirc Pec ceit age.
( i ci ied ) I A-S asco (rotsQ an a (cole 0 laoo. 5 psi g s . 2 */o aA-c~ anc.t Getto) as 59.8 (reg. to) U 6" . 5 psi M% N.1 t \ - fu,47 'sts1 curve few Ly.r soli - Roca .E mo c em ( a.'t d 4 -it- 33) 3 vune no. ias is 2 ( s e.rM th . N - 5 30) (cd . 3)
=
DetroA. bow % Ro e. ire . / s'rn': oM Mol (us') - ( Mod irm gu ng lest curve o't %qo 3 m (be') - Tour ] BMAd by %s x t oo */o r g G i <n a r,, Acceelow Head 8 Recsrc = p s - ( th - Tob') x o.933 (psi) 1 . p .
n mem - wdub
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3(S O LI D FRONT GAGES ~ M JM F0 E g yl0 N O NI.Y -S i For use on any media not corrosive to gage system b g materials. (See pages 1213.) NOTE: 600 Series: Alloy steel socket; 700 Series: c99+Ity , 316 Stainless Steel socket. M. MOVEMENTS: Add suffix letter to catalog numtm
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to designate movement. (B: stainless stecl; D: Delrin.1
Standard - AISI 316 L stainless Complete description of movements on page 6.
steel, ranges 015 thru 0 5000 psi. Type 403 stainless
.. steel, ranges 0 7500 thru 0 20,000 psi. i, for orc ering in/orma tion, see page 39.
x g ys " and 6": Available with ##'#I. G c AS E RING MOUNTING T/ Aluminum case, styles 13, J4 and 67; and Phenol N Acase, style 75. See Catalog No. tabulation, this page' 613/7 3 Aium.num screwed w ii. rivin o, Siem 6141714 Aluminum Screwed Stem only iand case descriptions, page 11. 667/767* Alumsnum Henged Flush only t, 675/775 Phenot Polypropylene Wall or Stem Standard: White with black figures. Optional: PRESSURE RANGES - PSt C 'ack with white figures. TOTAL FIGURE MINOR 600 Series:. Carbon steel. 700 Series: AISI GRADUATIONS INTERVALS SUBDIVISIONS 316 stainless steel. . [ 3,3 , ,, Pressures up to 1000 psi: 1/4" and .) nm t y 0 60 s .s
.1/2" NYT male. Pressures over 1000 psi: 1/2" NPT o too 10 . 1 m ale. O'G 20 2 0 700
- 20 2 NOTE: Custom connections available, o-250 So 2 0-3o0 30 2 Acrapointer, balanced adjustable design. $j$ $ 5 o 6o0 So 5 Standard: Double strength glass. Optional: o-soo too to Safety glass or plastic.
gj*3gj jm jj o-2Ono 20o 2o o2 boo 500 2o Su///x B: Geared stainless steel. Stainless pinion's gear and bushings. -
' go, gNgg y o.7500 som so Su///x D: Delrin bushed and geared. Delrin sector and bushings; stainless pinion. gjj;gg }@g j*g o.20.oco rooo 2m Within 1/2 cf 17n of full range.
COMPOUND R ANGES See pages 3G.37. (Inches HG. VAC. and PSI) TOTAL FIGURE MINOR GR ADU A TIONS INTERVALS SU8 DIVISIONS See page 38. 3g.._ g , ,3 33 3 .33 ,2 See pages 32-35. t o" & 5 1" & .5 33"-o 33 _ a_3030 io 3 jo i- &t 30"-o-100 3c" & t o 2" &1 .- 30"- o-150 30" & 30 5" &2 {(~ iown on pages 7 and 8. Gages on this page availableao"-o-2co with special 30"- o-300 30" & 20 features 3e" & So 5" &2 5" &2 b Models G75/775 only also available with fluid fill. VACUUM R ANGE ( See Page 19. o _30 V,c. 3" .2" Also available in equive'ent rnetric ranges. 18 e- -
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A,.,_, .....- .... i,... .,,..., t, uition Sequ_ovah HuelcarPlant w ... i,, 6000 ohm 2-~ 80 Af ter, of f r. Power 02 Sliip To Tennessee Ynlley Autholity 58QQ_ g n.J..et _I_ower Stores ..- -- _ATIN:. _Q,_E. Brannon, Power _ Stcres e .. .. . ..;, .i:... l'o wer . 50.40B000QQ __Jequoyah_Hucicar Plant _near Daisy.,, l.. .piin iti..n. r Shippine N..ti . To: P Q , . f.,o:'m2Q.0(1.. DJ)i f y .*[N_3 1:. r. No. - si,ip iiy_1;ps _QL , isot, %nt.,i_ 10/20 _ = - . -.
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$ty $ kl /h f 3 $/<'
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, Knoxville, TN 37901 l
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. INF02RMil0N ONLY
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', CONSTRUCTION ACCOUNTING 8 RANCH. . _.us o KN0XVILLE, TENNESSEE ~
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le:c Afie- Area Co.e. c15/205051 T4 m,. uo m sm sine er cevaby con . (( ~te:@Q, vedor cue - Tut tne _ _720 J0,12,6j w c c.se ,_L _A. T@ 9. 1911_
!U',iTAT!W, Ci3. AND ACCEPTECE *****"*--=----
2.io wt s 1DJ.95,932 Cg . . . ...
. a 1. O *i l * ~: "" y!y139.J A _"' _J~" > y_g g2 Date 1!EY g 1971 Ret,Jitilicetr Um 3 s Rei. r:3.
h n vested en niil ite iteras listed. svWet _ Pie.iert ,_Scouoych Uuelm Frc *e-A ow.nW. I't Entim.09:tpict.s be received nio _ e.it;; to th. ;.cMit:;, O a . m . sis . .:s heregi.,T
,1_ june 3, 19/1* at this cilice Dato-G /9 /7,1 aadth.ev.Ht:rt.:;c c;ir.td .nd reed d p:;%c. S.cs rot thysi:aily treecto-'
Net's Ref:rar.ce fur ter ATI.-2f t,y sitt:d w;.I be ret::: red i;r.:;cacd to the tidder, IO CMh" N# "' in'D" oUus, a:.d a,mn H trus bid tt sc:e;,ttd stNn b'
- 5Ed.s.b!:ct to att tSe ecM!i.ru !!ue:
TLic tsiti VAlttY AufflZtiff, By_ M. E__ Thomas from
, tny er the sit c:dde of it.c c;,cnicl. to : :.ish the ser.1ces anc r.t teH ad (U r.rcum: Acene .
c;r;ning wi;%! the conar.t of the C;r.tractag O!;i:tr.the iter,s at t
!AllC!tS Cit SU.V:XS 1.1.D 1 l Ch:tunts will et e!!:r..ed for nyn.er.:s as fo:bes: _.__ MOYtc 'r A118.CWIN15 V.TICH f0ut PiPI Cf CCMRACT -
1;r.iens c,th.v.be qv;!!!:cd by the timer en t'is f:r: : Lo 0 ss.t. 11EEt CH"- (); nseec,.ts wi:t te c:n t: r* :~i STrA4-TURBIN3-DRIVIH Utanco[,r., AND ELEC"RIC- A cnnescee--[ p
, . ta ter. Ctli,t.y cf the s@ptics at testM:!ica, , ,
cr frc tsct Utl. s.n;;ta.tr V.CiTOR-DRIVEJ AU.i!.LIA3'.' FEED ' DATER The'tidler repesents: FIFPING UNITS - APPROVED: Thatteis Titl .eris1 n:t_X , a saarl bvsiens cercur. as derir.ed in C:: James L. William ., is ,en:y.:ng >
- 13. C_hu,em.,,Part 1 ',t.
. Gehedele of* Prices Jr. will net E.. te :ncune 3, ,i:
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se;'y c: t ::n. . i,term:tien t ur.win..:e . r Delivery and Shipping Data 7/9/71 jl ""X" "'u emna,y a sme: t sir.m ::r.are.we fr puums un wa a e. emt aguan g.; GCP.re.nteed Data ' M E'4ui". 2 ment Data * (CcW& cnIy when ite :Megate ice ! ef Ud it 110.CQ ct :wtj h . Tliat he isla "ae.da wer of Pe arQhs e;$c.ca.1, t.: fgrict ci s ,n::ts ev w hperience Data That te is a reivift dtaur ia. and rt.:it1: n3 a ster < fer sa't 1: tr.e Dict' ;.t :
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g f'* W_.th:18 (.k.rre C '? w d 9599A) .c:c** onf y Spec 4 a.3 ,ond44. ions ,., f om W in mutate :=.t.cf tu in incor.u te e.vw - rnore, or c) the aggre;ste am:.;r.t.d to cn a cept,:ttJ m. rent .5 r.re nr. h.a -b'S
;eral Cenditiens. (forn 5052) Tut la) u hs u; e Dr..e nu .
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has d 2. :dnd I3'eraretd P'N"' d t"ny *t h"} ny cD 50 dd 5(CJi# l's c:wn . r.:: sir. j,_ 4,qu%,. Opportunity (forcs 9923 L et. ,"r.3 o . i ten tw: umw comcc:m or sc .er:v.y a p.t.c. (ctur im en t.:e t : . w ~~ w3 ) purons cf star.32 ta:.r:ss! :. ; wmt m:o .a ti to 5:." :r n v. s TV.S. Specifiee. tion No. 9955 > or rewtint tt:= n s..:.ro ci n'.t ftt. c:- .n:2. . Feranuze. . o: m t..sfu. :- r r Syrta Tabulatiof ree:nted t; v., Cectrunn; ct;ur.s actre . tu men t. :r;n i.:rix:r. ;s nr; :;t .G ~
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Bonine 14 Sisk l IRHD Esht i,.,m.s :.. CAB l l ]DrR IDgorSoll-Itand Privo
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e,,w,,iu,m.a...a_r.ymi,i.e,7,.t.,neeim,q$ R. W o o ~'J r . Dint. Fyr. k 55UTANCE - A::eped e.e.:y h a; Ite=s 1 and 2, and it gJ.. required by TVA, iten 3, including overti=e ccps:cu Daisy, Tennessee To--It.utsst! (cno w.tv & Tp sca:rmin Ry. ), fo rates when atelicable. F.O .B . Cars, Daisy, delivery to Sequoyahd ,uelcar Plant g witch e Tennessee (CYO & TP Rail':ay), for switch 1.tAreK: delivery to Sequoyah. Plant Site. Cor.lt::t 72C30-92610 . ter: Sequoyah Units 1 and 2 Attru Chief Storekeeper w,it. INyoic:: in cUwcAT E to - PAGE 1A IS MADE A PART OF gN THIS CONTPACT.$,{e 18.raissEE watY su187tirr (*Sec note en page 1A). n ,,Oy
,M M. Construction Acc.cunting Branch 1400 Northshore Building (kU* Knoxville TN 37902 c( ,.,,,, 3
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C2 j< J[:tS. . EQUIF!MP DATA (Continued) Inpe11ers h[g7
- a. Type and raterial S uo os t M ino m it '
- b. Dianater 94fg -
c.. Nu=ter of stages'. 9 , [. k' caring rings Type, rathod of ' fastening, and caterial of rings a. W 410 SS, Sot Scrowed Cusing Rin'gs . F.
- . 8.' Shaft and sleeves -
- n. la' terial' and rethod of fasteninS 316 SS Coated, Kcyod to haft p/Bb. Diameter at impellers, bearings, and stuffing boxes 2}", 2.12", / 3-
- c. Brinell hardness nunber of chaft sleeves 578 Fin. (Coating) 9 Stuffing toxes .
P/Ba. Type, size, and raterials Packed 41/8"OD 13f, Chrono C ~ 10. ibsa plate ,
- a. - }hterici and construction Fabricated Cerbon Steel '
=
- 11. Couplings .
a 'bthe, type) and size Fact D Flo):ible, 62
- 12. Flanges P/B a. , Size and length of sucion and discharSc nozzles from centerline Std of shaft Suction 30M RF -16" Dicchargo - 900# .RF 16"
- b. L.' vials Sano as Casing ,
- c. Limiting allovab]c pump nossle forces and re:ronts ,.
13 Minirac flov -
- a. Minitum reco:= ended flev fro i pur:p discharge to prevent 2 5 G P!>.
oveiheating and/or provide for operational stability
. Auf.; 4 eig; .
M.vy -
~
7 4hurm vu o op i- cjham-Willamette Cothpany * ## NJG egg ed n s .. . . c 4 4. . . , c. -,_ ., PPENDIX D ps tolnl*T C' ROCKY MOUNTAIN NUCLEAR CAVITATING VENTURI TEST--P0638-3 _ ,.,;; p a a /73 6 00o 0 1 1 INLET OUTLET DIFFERENTIAL LOOP
- RUN CAPACITY PRESSURE PRESSURE PRESSURE TEMPERATURE NO. GPM PSI PSI PSI "F' ,
1 1 603 983 802 181 93 2 500 763 702 61 98 3 440 877 829 % 97 4 400 731 692 39 99 5 300 737 715 22 97 6 203 847 837 10 94 7 606~ 987 21 966 95 1 8 566 863 735 128 94 768 72 93 ...> 9 529 840 y, ai ClRUMENTATIONUSED: CAP'ACITY............. 4" VENTURI METER INFOREMHON ONLY k INLET PRESSURE....... 0-1500 PSI GAGE , s OUTLET PRESSURE...... 0-60 PSI GAGE , 0-1000 PSI GAGE e
;NES TESTED 0 PORTLN4D, OREGON 8/1/85 ,
f C, FOR ROCKY MOUNTAIN NUCLEAR [i[E
),i,ci d.os, ~
v FOR TENNESSEE VALI.EY AUTH. C RTIFIED ORRECT BY: g -j f d
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_FOR BINGHAM-WILLAMETTE C0. 9
.B.&...s . wds as campaay .. .......s.........
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- CHRIS A. WRIGHT ROCKV MOUNTAIN NUCl.EA.P A (ppgm. O
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0 016 S Y ' asos>asesmos 4AND. C RCCON 97 2 to #24 Novose
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oc corred S/ag<<fc414.92lb/5,tah.I(9al%w
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1'et 500 lb Lwd For ca Ge. If, k, ,W lue c/ Ara.pa t<= dfv3y a <<,~h cl:ll us: +4 tu (L eu.ced p la,J ciw,q u. m shai,. Chw used tz p realv
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} , ' WP12195 , calc. .ID . d o. R M MOO @ ,
Data Sheet 3 Page 1 of 2 12/03/86 DATA SHEET 3 { AFW SYSTEM MDAFW 2A-A Pump Test S/G Pressure At Approximately 1,005 psig g gf
- Sg Unit 2 W' ~
phe6 . STEP 5.4.16 STEP 5.4.24 SUGGESTED PARAMETER INSTRUMENT DATA DATA VALUE
. IS/G No. 1 Level -'R 3-43a M 7. 3Y 7. -Iafe R S -3o'/,
c4% 1 er- LI-J-16f M7 S/G No. 2 Level --LR 4 3 a G P' 7. 3f 7. -I*fe ,75 - 3ch
, , se. L t.- 3-l.5Yo S/G No.'l Pr' essure /O C f psig Cf 7 0 psig apprx. 1,005 psig S/G No. 2 Pressure (PI-1-@ W I psig [70 psig 'apprx. 1,005 psig . oA RTD TS CST Level LI-2-230D or LI-2-233D 2 I $- ft 7I 2 ft >15.8 ft Rsc.s.4sJ. ,8.9 Y. l"lIN STEP SUGGESTED NO. PARAMETER INSTRUMENT DATA ,
VALUE . cr87 WM - ~
#atIH c 7 5.4.21 IPump 'Hotor Current 2-EI-3-119/6 4D? amps (40 amps 5.4.21 Pump speed Strobotac 3J @ rpm Info 5.4.21 AFW temperature Lo T2425A S7, [ 'F Info to S/G No. 1 r Co W e P rometer 5.4.21 AFW temperature Log T2426A 87, ( 'F Info to S/G No. 2 r Contact --
Pyrometer
*teditet: ( n o t - ,. u4am t'm i ,nu e ,, 3 # A PPL4 ES CM LY rca 5'rE P 5, 4 16 co eu l a ) 9 9-Jfo A Recorded by *dN / I-/2O W Y- .s.)9/98 y , } 6 Wp_ 1219 5-~
PAGE K-^*@ OF ^ 2.040 I _. -
#.* ) ~
APPENDIX F J 1
, Cg\c, yD * )q,* 8 a B ILB 00 00 WP12195 Data Sheet 3 - Page 2 of 2 . 12/29/86 DATA SHEET 3 AFW SYSTEM 30AFP 2AnA Pump Test S/G Pressure at Approximately 1,005 psig -
Unit 2 . STEP 30. MEASURE.1ENT INSTRUMENT T_ATA WITH UNITS i 5.4.20 Flow Rate to S/G No. 1 2-FT-3-163 i
,, (Auto Data 10) 2. Ie If 5.4.20 F1dR'tetoS/9No.2 a 2-FT-3-155 -
(Auto Data 10) 2( o,I 5.4.20 MDAFP 2A-A Recirc.ulation Ultrasonic Neter
' Flow Rate 217 opy -5.4.20 Suction Pressure Temporary'PT at (Corrected for Water 2-PI-3-117 Leg) . (Auto Data 10) / r26 -s . ., . 5.4.20 Discharge Pressure 2-PT-3-122A ' (
(Corected for Water (Auto Data 10) ,
. Leg) -
l 11 'Z r .19
. l .- -
5.4.25
- Time to Reach 46O spm RTDTS Leg from a MDAFW 2A-A , che a 3g 3, 7 g y, Pump Start Signal he8 Ig ,t f ) 9 (Flow to S/G Noa 1 g - l?-PT g LO --8, 8 ft-+4-and 2) 3'f.f f * '
)s8 Recorded.by . /m' Ode I/ 2 Y 7
th@$ *The allowable time'must be 2ess than 21.75 seconds. 60 seconds (response time from B0 signal to full flow) minus 28.25 seconds (actual load sequence delay time from the latest SI-247.900 run on December 12, 1984) minus 10 seconds (maximum D/G start and bus rcenergization) oquals 21.75 seconds.
!W
[ 4f ON b mwG k
- 1 l Jlp %fg ' ^* M " *1. 6 i ' N,hq _34_ 90 9 4c0 / w _
0243E/bh' - .. . . . _ . l i
/
PAGE M y OF._ ,. a.t*- 2iedI __ . _ _._
.i APPENDl% G Gl ~
2 3413 a B0000 PMT <~. . ( ATTACHMENT III CALCULATION SHEET Sheet 1 of 3 Test 9tn T S 3 S C Tres> u e i oc5 ? n G. Date
. . . . . . . . - - . .. M.. ..n\ N , . . .\em .. q Pump \ @ - 9e Calculated b . Checked by 0du()/bbb&
O I. Miscellaneous Data Transferred from Data Sheets and the RTDTS Plots { (.. 3L- , TU - Total flow to SGs from pu=p S.5).6 gpm* 164' Suction pressure W.oB psig; Discharge pressure i \1% psig - i;V Barometric pressure at M-D pu=p 19 oM in. Hg
] '? Auxiliary feedwater temperature M ,o_CF , 'II. Miscellaneous Information t
s
' Radius ad suction. 3.03 in.; Radius at discharge 2.75 in. , ,W ater leg at suction-on t ft. * .
(Elevation difference-between gage and pu=p centerlir.e, position if gage is above "t and NEG if gage is below 9. .) - Water les at discharge o ft. { Approximate local air temperature near M-D *pu=ps ejg op .
'III. 'Available Net Positive Suction Head, NPSH . A. Patm = Barometric Pressure, in. Hg x C.491 psi /in. Hg. = _1cl o M in. Hg x 0.491 = _ls4.'l(o psia B. Pv = Vapor Pressure of Water, psia at AFW Te=perature = -0.%K psia at , lo9 CF C.
Water Leg at Suction, psi = Water Leg at Suction, ft. x Density of Water, lb=/ft3 at Local Air Temperature
- oAl ft x G2,271b=/f t3 .
=.L.aj_. psi D. Corrected Suction Pressure = Suction-Pressurey-psig plus or minus the-water leg at suction, psi = 1fo.c.b psis g o.31 psi =
13,77 psig E. Win = Specific Weight of Water, lb/ftlat---AFW Te=perature- .
= b2.3 lb/f t3 at 69 CF f F. Total Pu=p Flow, spm = flow to SGs, sp= + 25 spe
(. ,
= 5% to spe WP 0910 -
p A G E 4 4 1 6 O F__ M M
+ .
r-
., APPENDIX G 6*
A.
?
a a 19 a B0000 PKr-53 (. ATTACHMENT III - CALCULATION SHEET Sheet 2 of 3 - Test 9%T T3 S G 9 ce swet Wo61 H er
. . . Date _Amr'd \ ..a...
- b. M M
" _.y Pump \h-% . ....
Calculated'by h e k b A
~ Checked by N _a G. Inlet Velocity, Vin ,
Vin = (Total Pump Flow, epm) x (144 in2/ft2) s Tr(radius, in)d x 7 48 gal /ft5 x 60 sec/ min ,
= ( S1L ) x 144 3 1416 x (3 03)4 x 7.48 x 60 ~ = (. ~ ~ S%.4
_ ) x 0.011124 '-*
=
b.M \ ft/sec , H. Suction Head, Hs Hs, ft H O 2 =[(Corrected S'uction Pressure, psig) x. 144 , V_in,i2 (Win)]+'2g *
' =( IS.9 7 ) x 144 + ( L,,q \ y2
( ( q.3 ) 64 348 _
=_ }7.09 ft of H 2O ,
I. Available NPSH = [(Patm, psia) - (Pv, psia))x 14d+ (Hs, ft of H 2O) Win]
~-= [(t4.2to ) - ( o. 3 6 )] x 144/((.2. 3} + ( 'blio3 ) = 69 14 ft of H 2O -
IV. Total Head, H t A. l Wout== Specific Weight of Water, lb/ft3 at AFW Temperature ! 6 1 'l lb/ft3 at to9 0F B. Water Leg at Discharge, psi = Water Leg at Discharge, ft x Density of Water l lbm/ft3 at Local Air Tecperature
=- O ft x bl 3 lbm/ft3 = c) psi w
L i t 7_ 10910 _ \ . t '.' 3 -d ,k '3 / -C W .
* ,d . . ,e e
' A PP E KDIX C3 pal9 38000'O P!fr-53 ATTACMMENT III CALCULATIOli SHEET Sheet 3 of 3 Test M t; T 54 3ces.suvt \ooF 9 n G. Date A_ o f s \ \ b \4 4A ,)
Pump i A - A- Calculated by b h h Checked by fA$4 /1 N$i
~
C. / .
/ . , j. ,r Coerected Discharge Pressure = Discharge Pressure, psig plus or minus'the Water Les at Discharge, psi eryp'u , = )\74 ' S.
psig + o psi -
. = l 12 R psig D. Outlet Velocity, Yout -
Vout = (Total Pumo Fiow, gem) x (144 in2/ft2 ) 7t(radius, in)4 x 7 48 gal /ft' x 60 sec/ min
= ( S 7 t, A ) x 144 3 1416 x (2 75)d x 7.48 x 60 - = 9 9 ft/sec. 'E. Discharge Head, Ed '
Hd, ft. H 2O =[(Corrected Discharge Pressure, psig) x _144 i Vout2 (Wout{ 2g
=( \ \1B
( bl.3 )
) x 144 + ( M9 J2 64 348 = 7 L D B . A. ft of H2 O '
F. H = Hd - Hs = 7 69 l. I ft of H'2O at a total pump flow rate of 5 % to gpm. - CAG:JLR 01/20/84 B5236.MC 9 L - WP lO910
~
PAGE+d-If OP %-d- 2/
, , 'e
,1' ,,4 g , 4? PEND \x G Gy s ?
R *A \%% 00B0 PKf-53' ( ATTACHMENT III CALCULATION SHEET Sheet 1 of 3 Test hT-53 SG 3cesswet \oo S A Date MM % . \4 M g Pump \ Q ~R Calculated b Mw
.c ;:j' . -
Checked by
/
8 /I't((6 A
'. I.
Miscellaneous Data Transferred from Data Sheets and the RTDTS Plots / fi! ' Total flow to SGs from pump S E ).gp$
% Suction pressure IL.oS psig; Discharge pressure J t'1B psig * -fi-Y'? Barometric pressure at M-D pump 19.c4 in. Hg u Auxiliary feedwater temperature GLTOF , " II. Miscellaneous Information .
N ' ' ~ Radius at suction- 3.03 in.;Radiusatdischarge_2.75 in. Water leg at auction O 9 l ft. (Elevation difference between gage and pu=p centerline, position if gage is above S and NEG if gage is below S .) - Water leg at discharge _ o ft. . Approximate local air.te=perature near M-D pu ps _9 A 0F III. Available' Net Positive Suction Head, NPSH ' A. Patm = Barometric Pressure, in. Hg x 0.491 psi /in. Hg.
= 24 o 4 in. Hg x 0.491 = 44. h psia ,
B. PV = Vapor Pressure of Water, psia at AFW Temperature
= _0.4 3 psia at 93.3 0F C.
Water Les at Suction, psi = Water Leg at Suction, ft. x Density of Water, Ib=/ft3 at Local Air Temperature M ,q i ft x 52 f) lb=/f t3 -
= o '5 ) pai D. Corrected Suction Pressure = Suction Pressure, psig plus or minus the water leg at suction, psi = ll. .o S psig g o .31 psi = 153*1 psig E.
Win = Specific Weight of Water, Ib/ft3 at AFW Te:perature
= 17,'5 lb/ft3 at H.3 CF F. Total Pu p Flow, gpm = flew to SGs, gps + 25 sps
{ = 551.1 gpm g,p _ (092_o pAGE X </8bF_ Od-2r i
. - , , . - . . e.. - - - . . , - . - - - .
.1[ APPEHotx G G5
,,9 - ,
, aal9 aB00co PMT-53 ATTACHMENT III -
CALCULATION SHEET Sheet 2 of 3 TesthT R 1 SG- 7c cM u rt \c o S ~t w , Date .b A \ \ 6 .
. .. . y \kR4 Pump i B ~Q.
Calculated b miq [(,
$ Checked by OtO () bb 6 S-G. Inlet Velocity, Vin , ' l {
dh' A k Vin = (Tota) Pumo Flow, seem) x (144 1.n2/ft2 ) f! tr (radies, in)d x 7.48 gal /ft5 x 60 sec/ min , J:k'.::u 49 *
=( 5 51.1 ) x 144 -
t . 3 1416 x (3 03)d x 7.48 x 60 Gj = ( ~ .851. L ) x 0.011124
$:f s. = __
b.l3 ft/see
., H. Suction Head, Hs- ' Ha, ft H 29 =[(Correcte'd'Suetion Pressure, psis) x 1hu Vin 2 (Win)]+2g = ( ).S .7 9 ) x 144 + ( l .) 3 )2 1 ( bl.3 ) 64 343 = , KL.9b ft of H 2O .
I. Available NPSH = f,[(Pats, psia) - (Pv, psia))x 14k+ (Hs, ft of H O) 2 Winj
~ =-
( 1%.lb ) - ( o.%3 )]x 144/( fol.3} + ( 3L 9 4 ) _=-. _ 68A3 ft'or H O 2 . IV. Total Head, H , A. Wout = Specific Weight of Water, Ib/ft3 at AW Te=perature
=_ b'l.3 lb/ft3 at ,
7 S.3 _. F C B. Water Leg at Discharge, psi = Water Leg at Discharge, ft x Density of Water lbm/7t3 at Local Air Tc=perature M O ___ft x ,er- 62 . 3 lbattt3
= c3 psi k .
jW
\v e 5092.0 s
PAGE Ad-M OF x -d-M
- s. , .'.- .
d, 4PPEMD) X b b . gaFlaB0000 ( PKr-53 ATTACHMENT III CALCULATION SHEET Sheet 3 of 3 Test h T E 3 (G O r c v, u r e_ t eu s ,AiyD ate Ao A i \ \ L, .ikbH Pump __\ R - E Calculated by A .t Checked by [A4/4, d N[0% 2.' R C. / dE Corrected Discharge Pressure = Discharge Pressure, psig plus or minus {the his Water Leg at Discharge, psi
'j. . - . = =
111th Dsig i d psi . in- 1\1 A Dsig D. Outlet Velocity, Yout Vout = (Total Pumo Flow, rom) x (144 in2/ft2 ) 7r(radius, in)d x 7.48 gal /ftd x 60 sec/ min
=(
fo 5 51.1 ) x 144 3 1416 x (2 75)d x 7.48 x 60 -
- 9. 84 N
=
ft/sec.
'E. Discharge Head, Hd Hd, ft. H O 2 =[(Corrected Discharge Pressure, psig) x , 144 \ Vout2 , (Wout) 2g = _( I\16 ) x 144 + ( 9.44 )2
( b2 3 ) 64 348
= % O8 .1 ft of H 2O '
F. H = Hd - Ha = 1591.I S St. r ft of H 2O at a total pu=p flow rate of spm. - CAG:JLR 01/20/84 B5236.MC Y ss p _ /092c PAGE X-d-2/ Op_ g.J 2( g. e **
-- .g .. .4 ...-g....
APPEND \% 6 k M.d PMT-53
- 4. .S,VbP . Sb'y.. . ;;e.
" e,..'.7'. - ..*-. h. . ;
Page 49
. -M . -
p .
- 4. . q - .
8/24/84 h . i..p.Y ? if{ ,5 ~,1 3 {g , p'MT-53
.ds aai3 pooooo c.@h.k. AFW System '91 1& kQ l f.Vr .M.g ..
h,(9NU'.m. ey.f'h.oc . .f 14. ke. Data Sheet 8.3.1 Page 1 of 3
.= p :,.
w 4.: -
\. ', 'tQS.'O. n a. r ,. ,2;< ?.E.'. .l..l. ;.s . Unit 2 3;W-=.: A . ;rk- Two-Pump Start Test . MS. . iwe 1pp;-MTW ' - '$ /%s%;.r-93dl ::w ;m ';'jp: lc (2A-A and 2B-B AFWP) bh 'T NN).**.(-Qf"5F . - Measurement Step' MInstrument IEEhh .:.:- Data Suggested su W/ Units Value Recorded by/Date 4 -/4 mpus.w . .,y :( ... .. -
8.3.1.8.2c PI-1-2A 1013.3 psi'g a 1005 psig ik*+
' -- ump p,(Befo'rl'.%..lv .- %SGNo.l2 SG No.
SG No.1 Pressure 3 Pressure PI-1-9APressure to 13 3 psig s 1005 psig D PI.-1-20A_ ions.y psig . 1005 psig C start) i d.ESG No. 4 Pressure PI-1-27A t o o9.t, psig 2 1005 psig
$, %" '.i f SG No. 1 Level LR-3-43 Ag,6 % Info
[' -l'SG No. 2 Level LR-3-43 .13.1 % Info J5 .SG No.i3 Level LR-3-98 27.i 1e @g4fu. ' SG No. 4 Level LR-3-98
% Info M.M. 'w ST Levels . LI-2-230D/ M ,y 24,9 %
ft. Info Info o / Jc/ Aew / nlnlPy
~~
f .'C7?lA
% i',8.3.1.11.1..JG No. 1 Pressure PI-1-2A 993.6 psig
- 1005 psig Q A O ff g Mp(Af ter yg'SG 'No. 3 Pressure PI-1-9A 993,6 psig a 1005 psig SG No. 2 Prbssure ump has M PI-1-20A q u,g p'sig a 1005 psig
- 4 9 stopped) {,j SG No. 4 P'ressure PI-1-27AB Ho.6 psig
!4"% ,,1005 psig 7 T.!/ .
LR-3-43 ' Info
-h '*fd,6. N.. u.i..; SG No.~1 LevelW LR-3-43 '
4 %SG No.3(e. 2 3Level
,19.3 Info d LR-3-98 39. # ,' +b . $ #.t';SG,No. 3 Level $$p..,1SGNo.'4 Level.,;.
LR-3-98 Sy,o Info Info
~! LI-2-230D/ 26,o f t.
4.,.fCST* N Q i",;.1.g.. Levels [. ., ,. Info (M _ m / it/nlyy LI-2-233D .15 . L .n V [hMnHM,' 8.3 .10. A-T'AFWP'Suetion T- C'*"
" '*^
PS-3-121A ,1'7.7 psig > 12.9 psig (A.D. 14)9 " i Inhs g 9 p@ p d 2A-A H-D AWP PS-3-139A /(,,,MS psig > 1.25 psig r 4 p
'#. ' "d5 f.7,yS7 Suction (A.D. 14) h idnIn 4.p'd.5]d,/qdy2B-BM-DAFW PS-3-144A_]6 Ay6 psig. > 1.25 psi f ,itrQry!? Suction +- (A.D.g)nofg 3p ., i f.'Nl.-r.w1 e m 4'.w' 4.T-D AFVP Suction 4.2 e gliS ..g 5 W.;!l;".8'" Pressure Below 12.9 psig sec. ' < 5. 5 sec.
pijj-@- ' Sl1 2A-A AFWP Suction 4.2 sec. < 4.0 sec.
%"Y.-jM'.;';Q.72PressureBelow1.25psig c ,. .,i . 'sy s ^ ' n l'k3*ikd.t.'l 4A sec. < 4.0 sec. .Jed /A /iS,/p, T(e f ,1 kht$fy.';..y'!$. 3,r.rPressure 2B-B Below AFWP 1.25Suction psig - .gl V.' . .pf .: $,h?,' ';
d d,8.3.1.2_p.,;2A-ADischarge PT-3-122A /16S psig Info W y4.w.sc Pressure (RTDTS) lj (2B-BDischarge PT-3-132A //19 psig (\ /
,f Info fdh mfs /nftthy %'ip. - !s an (RTDTS) .)
w.m ,w!M b$ ~ Pressures :. ~e . . * - n~ . -. .%. erey.v. . .w:w 2A-A Recirc. Flowrate k, FT8. 3.1.10. 5 fMA gpm
.WN4'd'M! M/A igpm Info A//A- ."."W#if > F2B-B Recire."Flowrate u * -~ . Wp / - . M& -
- .).'..3.% ' '.T Il3.Lf3 ~
kk,W .v, . ~ .g :..?w:f _ - h ... PAGE X-a 61 opb.-# - i
'% fmek .',-4, . A PPENDlX 6 GB o w. . . . .. .
PMT-53 w.... .a_- .
.pa ge So _ . '+
d.,n={l. :n,n .. x 8/24/84 N.:;,..r
.>..g g 9.r g- c -js-tV WIWWI #
- 4. . . . .'s.---w -
. ...-_ PMT _53. .. AW System ' ..a a M a' S00 00_?6.. . . ~ . .9. P -4 n ..at ,,VfG. "g#. t. ~ ~ M,. ' ' .C *". ' . . -
Data Sheet 8.3.1 (Continued) g.N T
}Qv'?j.Q - Page 2'of 3 ' [.. 1%h:.4[ M r :I M U,4., '
s 1 wx. . : . ' :3 ._:. .. . nu
. .. q ...++.t.<&y? .w. r%p% j . W e Un.it 2 T. H --
7,_'_" ,.e. .,~.a,,.,.-.
. .. . . .-.. Two-P. ump S t a r.t.. Te s t. ' .. ,. .,'m .. Y.s ..,. ,, % . . . . . ..s ,._. . .. M.,g*- -W .;..%.-v . % :.-- ~.--;.... . w.e. s.=.. . . -y..- .e . .. ..
- u. :o..: y py'.,Q. .: g .
-.cr n-,-....- - ..
r . . ;..s .
..,.... . . . _ - . . . .s. q.,s ; c .r ..-.
2Ko ,m * *,m.4 .W. e. ~, .s,, ..
~. . .! ,,..... 2. . Data Suggested . 4m .. ' . *Y.- Step ~ - - -Measurement- . . . . #_ . h.'.~,..
Instrument - W/ Units ---Value Reco'rded by/Date w ); h..->......v. ~.... .
- w -- . ,,.. . m . .. . e -- .
P, ' yy 30.T.YI{ovi.t'o
- .. 1 *f . . s- *SG . a ne**eny - % . n...,.9 ,I.',"'*~*..: . .3-*
6 2-FI-3-163A *g. . , , . Nc .f.'h gpm
. .. ae . . .} * 'v,;,QInfo .c . . , . . , s.R.fi,@'.;bW,
_ *. p .. . e.. r.,. ,. ars gfT-Q) Flow to SG 2 Z,f,n i."; .2-FI-3-155A?_p;20,3 gpm-Q'. .((., , . ,,. -- w. Info . .- X *' '-. - .. Y. +. ,. s
. w. . .e.+. m. . :. .-,. .. w . s - w .-.. m....<n , . ~.( A.D -10) - 3s-9.i W ; m o..gc..N..,00.,, ~. - . -.<.a.p . . .- ~.
A;M,-C
., m.. .: : c~- , . -
l
- -y . v.
_q.
, ^$Dp'd .*.Fi!To ta1 Tl'ow f rom ]GEpY:= ..,,.:.w.- gpm e,,,-.- EdM ':.WM mp%m - ' H - .. *** t "----~%;57.nem..
k .nv:
- -A #W T -.;
47/.9 M gpm /*- '.* Y f"'i"-' " --- *T){ " r4 e. 1
.~ .i,n :o. S.G~'I.. "and x. .. r 2 'Q. n.N.-W.n;;ne, ,.,., .n. .,s m_;tr3, .x m- m . - % ~Mr~rrv W.v.~ #.
w,_w %':
=* ,.c- . Flow .to.~SG
- m. .3"~--@2-fI-3-1.47A . : m. _~
- ~ - s m.: .e.~.~.<r, .m.~c.. . .n.m..m W.. . .m .;i m. n .?,1.y 6, gpm +-m:; Info ."y * -a '2--- ~ -v .> --
g m .,- :.m
+.
3 .::: s..(A . D. 10) :~.~ m: g.6%y.,;. .n&.to:..SG , ~w.+ - . . F. ;g.W.m. . ~.,w-~~ w.v 7-2 l e ..:;s.g Flow .
- 4. j ,.62-FI-3 w
- s. .170A SA3.0 gpm * % : Info 4.: p" ~.c.m ..-.x "-* '
~. x ~ ' ' ' - y .: . -ih D ~ 10 - '
I *' f4::2::i.,@';:ssM- ::#.4
.h 4 ;pw . -, .A,'%h).2.T(IF - W -2..c3.wE m
- .1.r.:%?.'"n:rb C'
- .-i.T'iWn**/ ~@M&,"v:r 4
--~y1-@t..gog 1
O Pn . Total. Flow from . : L.Mt.;.;:.?/,597 pump 2B-B 6 gpm W t'trC M.-.
%, r.....a:; m-: ;go go-3.ind.4 T ' ' **7 -' . J. 500. r" gpm ~ ' .- f @ ng p,. 3g '"'d c ...rp_ .
w.m.. m ,.a.. . . .
..u.e .: - ,:m ata. m f . .. ~
t 7 -%o 'w..ev,-VM [6l3 . , ...g g -
.r. .w e c .. y 2. tog- 0.a ,bui ,
iQT* i. :. l Ti'me,,.,'o t ,reicT640" gp MER2:4 2A A_ F1ow I from pump 4 08sec. T*23i75 sect b ". b484. h
.,g.em u .. s .-~ . :.5; ,~g s .1 .4 ..m.pnd 2)7,;G.,)g.4) .- i :. . .>::.n.f.:%.
sw dp. P
- In %g..-M.Ae
.. w !q.k-M ..,.ccfgd g" .
p .r f...,.(.w..~.30.SG Nos
. .m. n;:.,:,.; / ,
- b. sw ...
. .r i9? E2B-B (Flow to SG Nos.. . / ,and Time f) to reach 500 gpm4frocLpump .3.8 /8.C sec.. <..* . 4 - r. cn~ "y45,w.4 _
z: :
.2. ev.WKhM&3 .. &*.Q. -
A.4P:s*/..[G)
.~M. 'S .ww.:.*1 .M.. .., . . w~. .,.r.W,r.:n::s. i 3.;.;sL', 2 4 . , . , ,
J -In. Hg. Info .-scr J.,. .,"%
.3.1.10.3 .TFf2 a . Barometric
{-D.. puan.s d. ' f pressurePS(A . D 4.30 [u
) , .,8f.Y8 '. / N N./7.f)*/ ; .J ' 9 .m. . - 4. . .;m e p. :',',,1,. a %] ~> ......p.. . ,. , ) s.' i - .p.:x ... p. F' - ) : w s ,,. "
o 8.3.1 3
..AFW temperature to log T2425- r. M (, F, . Info n .. a y. 4 . A y q, ' . .d:...n:gne SG No *L rp:"4.AFW temperature 1 " M ,, ',
Info
~ -' '
to log da T2426 M ,e t 4,y.(oF D.M 2 N:QS,$.'J,T.
"--' $? ';;E,. l. Mi _W SG 'AFV No.tempersture 2 to log T2427 M.2s F Info Mm+N4rcuA 4p a- 4 Lp f cid. t Io( ; ' .g," M G P a g). wl.c. . . SG No. 3 L'W h M O*- 6p,3.
M F We NSE @ % ,.w.Q
..m. , Q .~ .- AFW SG No. ., ~..
temperature 4 m - to log T2423 f,4.4 Info
' 4 /,.n.l 6 g - ] *e- .& &@y,g 2'[U"N. .'.\eb D- - ~ I : - amm"~.- . _- ~* *'s -- ~ ~ ~ ~ ~~
N-'. A*
.t
- 8.3.1.2'...;d 2A-A pu=p~ speed Strobe._ g fD rpm Info l ..% 1FL.
l'E !.e,.. . ::a ..:i. j, .
-- w > p- er'ah.s. 3 - .-- . .I 2B-B .- pump - ... speed- -
Strobe _ M90 rpm Info e/f/t.pr/.n.
,p,.,,
M *yThis time criteria was calculated as follows:
- l. ,;j . ,; ,
t' f' y - . . s ; .,. , . . -. y a. - - . .- . - ~ - ~ ~ ~ - -"
.- v . . r, . q,; -, ' *~ w.' y.:- net'd. . .. ; . ,.$ 'S'in y % conds (risYonse time from'Bo signal to full flow) minus 26.25 seconds 7-3 .
hg(cGximuRToad s~equchce equalsdelay 23,75 time) minus 10 .,4yp seconds//M3 (maximum diesel g 22 4.e. : nd bus regenerization)
& df.2-.~A', . is +y r c.c. % - .'. : ... ,, seconds.1-{'{..re. , . - % ~ '. ;; -' - * ' ' - P ~
ggf l
% y. eme w.. . .. .2 :t.~.y --**.- PAGE '/.'.'a.5'2.OFY.s .
- g. iry.<.%jg&.W.. g g
!-.M. ,-.,:Myn:h. .w _ s m ,,,, ,w y.g. m m w .,.. > .mc.
.,pa .g% -a. mWW.M5pn. @f . <... .v n g -W' s ~ @ V %
1 -. . r -. < w a. m. - - . -
7.5 88 OA , % Asuis 2
\ ' 'r, &&de,A 2. -
f
TVA 10697 (DNE 446) DNE CALCULATIONS . SC7!
TITLE PLANT / UNIT , AuxtuARv FetowATtn SysTs'm PRESSuRt DRot CAttutATION SEcuoyAg / tlatt \ka ! . . . PREPARING ORGANIZATION KEY NOUNS (Consult RIMS DESCRIPTORS LIST) % MEb - HC.G AFWi PRES 5uRE DROP S V 6T E M REs t s TANCE d M 8R ANCH/ PROJECT IDENTIFIERS number is filled in. Each time t'hese c.lcuistions e,e assued. preparers must ensu,e that the onginal (RO) RIMS secession E sHP t-a- CA -D053 Rev- (for RIMS'use) RIMS accession number ' 0-HCG- lrww - osan% " l 6 830 5 \'A b 000 8 l mEB ,S30509 Sol (h APPLICABLE DESIGN DOCUMENT (S) R 6' nEsmN canemA 81033\Eoco4 Ba5 0 03 a'\ B0%-
}' ,, sea- et - v - n.s.s a .a l$nrnn n,.m. . B25 880430 806 SAR SECTION(5) UNID SYSTEM (S) 10 14. % a o3% ~ ' "'*83i'1sh % 0 Revision 0 R1 R2 R3 (A4/ Or.h14 / Cesb Safety 4 elated ? Yes @ No'O ECN No. (or ind.cate Not Appitcable) g/4 Statement of Problem Prepared OthervnInc the pre 55urt clrep (dP) 3.w. Aderhe/d2 Checked 3P. Hofn fY k I7 E. W. S2eiro Aouser H.V Garrell11(aff$/ s1s L svs y rin3 i firsk is We E
p . Se,ed Approved RW. Bond b.Y& N ' ' * *3 L
- f Ut- %A*f ' bt\Vt h he AI.R. Corle d; .7 E. h.lgru,rf g s
Af'VJ fugs (muvwP) M Turbins Date I~ elasby
- DrWen AFW Vuwif 8 (TD AFWP) 3 slaslev 2'10ca. 0e. z I- W ""^ 3" g*j List all pages added by this revision.
Revis/en f.ey ** T'I $ AWeb.d A
} .,. List all pages deleted t- iroA e ft f*Q 3g;f by this revision. ? "" 5 "#'
List all pages changed b; this revision. / Abstract These calculations contain an unverified assumption (s) that must be verified later. Yes O No % An analy sis' oS We pressure acer (AP) in he dischary awd suchow i p pin $ of ht AFW puvays is yer formec\ b sbw W e. Ltd A? for ue. AFW syshm . The. AFW puynp flow pah cheesen lo repetsent We di for De. pwyng discharge is he Now pgW le Slenm Geweraloc (s/a) No 3 3 awA for ue. pump sue.' tion 'd is he \A -A t@ AV WP and IA-5 TQAFW9. hese pa%s were theosen because he dP resa\'ts obbine) are. ConStryahve,
~
O u.c, oram .no sio,e c.icui.e.ons in RiuS Service Cenier. u.cror im no oeitrov. O O u.c,or.im .no ,e,u,n c.ieui.i.oas io: 7.E. Picazim - SEQUOYAH A dd"58 : D6C - C 3 cc: RIMS, SL 26 C.K
g . 4 OQK'REr3 EN DES CALCULATIONS OIENAIl ; UNID P1, A N T/UN IT SEG VOYAH tJVCLEAR PLA AJT s m tsus) SGAl / h2 fat >[.
+s.I . AUX ' P AE S5 0 4.E . FEE ' ' D A20b tJ 9 ATE C A LRC fYSTE/A ULATic hJ cA *^ * " c " "($>
AW Ah AMN REV
%_ (FOR MEDS USE) ( MEDS ACCESSION NUMBER g.gggDESiaN ,.ggg=,c, aa 330512B 0008 (j$)MEB '830509 301 L. a'."lc';*f,'a^f' "' 8 70331EOOO4 hB 2587 oa 2 4 s o .1 AN Us I(L. Oggtqg aa -. . *e.
KEY NOUNS R3 AFW, P4EssoRE DR,oP REV RO R1 R2 R3 STATDIE.NT OF PROBLD1
- 5 PR DATE 0/23/74 u' AR E D O3/23/87 / Q g,,he y g j g g, k p pgsg u,A J >/di,lddf /8)f4, d" P i" &^ '
etpsng -fa5+ - h w y A 4 dis My c o a.< wen
~3 t a m e.
- W.W%s LH. E&drJ A L/ WfN d <'m d M"
- k @.*f"fd.EenssMV'f.
r ik z. . / T' p.-p s,
- i. ^!#=n"I' -
47/A-- r am oM 2 af ^ *** i'o'l#!v'Mf!REv, e< ,,, , , A, < , c /# U p-p s .
t'e n # E Ev. /
H ANGE D B HIS REY. ABSTRACT y An m\y s',5 of L. P res.s wee d ro e in L dis &qa. of +L, AFd sy sY% %,Eo r- d Hvex p%g I} p,ps p; mi A.Au e d <tm p-p is perforvj, The-pressae ci-O e :n A pfe.1 m p;p g i s. A J a*%hel- z S. u . '
~,%
TV A 10697 ENDES-7 73) 'Use revision log (form TV A 10534)if more room is required O VM O %~l fhc\ O kT ' . $2,b !, d)/ W ff \/ Go.ced+ SGN Dsc. DS ,
[ - x ~ .t - r 'xs - '. .
. a-
((M..%- . NEP-3.1 (g;/ . . d Attachment 6 7jr , , Page 1 of 1 i
;f. ., ,.-
CALCULATION INDEPENDENT REVIEW VERIFICATION FORM SN P, I- a - CA -00 5 3 . o -hcg - 7WW - 0B Q374 R9 . Calculation No. Revision
~
i Method of independent review used (check one or more):
- 1. Alternate calculation method
- 2. Testing method *
- 3. Other method K
Justification (explain below): Method 1: Identify the pages where the alternate calculation has been included in the calculation package and explain why this method is adequate. Method 2: Identify the QA documented source (s) where testing adequately demonstrates the adequacy of this calculation and explain'. M_othod 3: Justify the technical adequacy of the' calculation and explain how the adequacy was recified (calculation is similar to another.. based on 2
. accepted handbook methods, appropriate sensitivity studies included for confidence, etc.).,
c:ALQxA7 ot/ /3 7% cM c4cc y A OL O UA ff- x?ACAust- 17" /S BArGD . OA/ A cc urts___, H4ND 80 s k ms yMoos AMo M,uca co,orj. 7psjt
/2C/ft/Ncts 4x1 sagst7/pste w s7His *fw4 cat cata ryo gt ) hhDesignVeri$ler fb'7/W Date (Independent Reviewer) e II ;n--- .. .. M - - - - - - - * ~ - - - - - ~ * - - - * ~ + - - - - - - * - * ***--
; .: a. .
e , a REVISION LOG
, SAlp/-t' C4 - b o.T3 , Tntle:$MX/tMCy kf0kl4TCf SMTEr}f ?ALS$ut'C bkor Csici<inriers o- i, ec -1is ts - eezz79
- h. "'
" '[,* ' " , 'DESCR)PTION OF REVistON 4,$, o O /4/TML /fsuE / RE SPoNSE N /7?Cino f2eds d.W. WILSON TD C. B. /rt.e k (Rims B7S~ 8 7 c/09 02 7).
Ek PLANA 17/0D o F,4SSUMP7~/cd AbbCb . SE VI S/ ON l0 4 A bb Eb . 6 EC N is /A/Vej.y$l} N Eb EuTggs ( AL C.ut AT to ri To Docum E NT REF ERENCE S AWD A ctEPTABLE M E W OO (5') 10 VETERmINE PRussuRE DRo?S FoR AFW SysTam . Aveto Avesneix A 3 T-SWEETS. gl e N ,x ' 4.. .- T)* A 105 34 (E N DE S-4 7 8)
r 1
# F stwwm.g_S3 sum.?wtssnwt_Dwov .AunuAm s ur i or 4 _
de _Cn.e.uL Amotts it19 i- a .3.A _sto 53 0- Mt.re_ LW.W - caagl%__ COMPuttD. _h _ DAff 3 _ A 1,* $ 8 .__ _
^C cuecatoW/A _ om M26-M_ _-
A) 9uR90 SE T kis ca\c.u\ d ian dete.cadnes ut 3tsssues dcop (19) across Eke. AFW sy s h e.m pipiw3 > Gil.ings va\ves 3 dt. Tnt lobi ca\ cub h A A? Soc he 3 AFW sysb.m c.a o be. useA b dele.cwdwe. & bb\ cetus <el had tbd an AF W . pump must deve.\og to ocAer to ass u're 161 % pump can u d ,its Assip S uwdim . e g f e f. f 4 9 {.
- e
- .. r6) A s s'> mrious -
Uded in body of ca\cu\dion . t' e , e h
, t =
E C O
- e:,- __Att x ._Esa u.w)c s.a .__52 s .T en__ERE SMRE M9 M t r _Q or n
._SALC ML ATION _. w _5 M P _! .a _ f.A _ D A 5.3 . 0- Rca _,LtLW - o g aa w
( . . _ . . _ _ _ , . . . _ _ _ _ _ _ __ I COMPut(0 ' k OAfg 4 - &\ = BR CH(CKfD ^_ oat (
- k#h __
C) REY E REN CE E - i) TVA tAeinosed Design Guile oG - M'a . 8. 5 wev. 3 - O C.RAME TscWUca\ ? opec No. 4 to - Fl 'w of Fluids Throuf %Wes 3 Fiuing s ; and Pi s , 9 R%
- 3) AFW Mll si TAa't erid s -
% MM31 S e.eits u) AFW S ycl. em Desip. Cri't eria Soll - bc - V - \3.9.8 Rev. Ro
- 5) Medadc.d AFW P;9 n3 i b rovn ng s : '
to Awm e, _Rtvst m but "
't 1WW ao - 5 H/G \/& .
4 W % %~t - \ E \+R
.. 'NtW%M -a F 4 1+ & \la t/E %1 W4%7 - I rIc . sws a, - 9 sla r,wm - s e \ ,
inW%31~6 A / C. P/a
%7 WWa7 *+ 1/I \/; . in vi4B; - 8 E. t+%
4 + w%20 - to R 0 ' Q C.whcsde. %\\ of ths'te.c'd5 - M EM420 S teh s l
- 7) AV W P u r,7 s itUnieru ro Me.ed Re.gi se tA Cg\ c . - R A\'G g o o o Re.v . K4 (BSE SB0910 Bo*f)
O % der D r o n le g i : l b=AwNc- ten *AcT K tv \% tW UN \T toaspmtNT 1D g A- 2:5n -\3% S25Do-7 i l + 3e FE l% 2e A - tt E 00 - \15 3 3 500 -t 1 i+ 3 FE '5 - \4*+ E h
~
9 adroel fi\e. h3c24 B15 Vi he AFW Level coa r.\' %\sts. ( see. Nr t Ja c., t A ') l *
- - - - - ~ -,m,,,,,-.,,_,,,.,,--m___ _ , _ , _ . , . . , , . , , .,,,_..m. . , , _ - _ _ - , , - _ , , , . . . . - . . . . _ , - . _ - _ _ _ , , , <-
- I __ Aux. FEEbul/ELR__S3ErEm PRLssn9a_ DRo9 s <tr 3 or ic
_ c. a.c.u k h n ott ._ane 1-a_us _nos2 o - ucG_._IyLW - on3; M _.'___ ___ _ _. _- .____ co m ir & carc w . 23. es
-, n... mn _
FLOW RATES c . C Atcut. ATsos s
.AS SUMP Tl O N :
d hd -440 GPM A && - 220 ,/ g - ne. eressure Atop fee m ph N1: we cc. A h i - 2 2C' M *b t d *** k " 5 d
/[' y c
as e.ow s uv ob, v e. resw\b d b d g- SSO p f b3 &m - 4 4 0 l STEAM f" N *Nr t*th5 - 1 GENERATORS
$ b d__l- 2 2 0 , ( , ,4 & go d- 220 Y s x
s Sh
- CALCUL ATED d b d anci d to d s
[ a i i, I j ~ f <-$" d (n 4,
<_. e Jl/
4 " _> f < <__ q ~ yy -A ._. u '> ; d i 9"-> n f,, r ic t \g e e
% / {
- lA-S IA-A) 16-8\b 'q r i i i I i b
MOTOR - DRIVE N T UR SI NE AFW PUMPS DRIV E N (MDAFWL) A F !.- P U '.4 P (T D A;WF) N' TE : /\ - P m uc, runt sos Laumos 5mtv e j DESIGN CRIT ERI A DI AGR AM ce Aux. Ftt o wmt r.n SysTtu 5 Fumt D 15 c nR Gt PtviNG - G H tT \ ( GNiT a S um t A?d 5
-l . * - ' _llun1AP1._.EttnwAi tst._ San.t:A ht stVRt Dgo? satti . 4 or 16
_f ALf.uLAT_tQt1 --_ _ _ . -
$M i- 3 -CA-bo 52 o - nc, - zytyt. _ogc_q.
(m; . . - _ _ .--- -. _ _ . . _ _ - cewautto 2 RL. catt u aa eHtexto . _ 0 AT F (($ ,kk, ._ _ VitmcsLE NGTu t AHb C,ttA9 chtN't 5 hTWEEH N ob A1. PomTs' ON DEstGN CR\h.R\A. OtAca Ath ( Sketi ')FOR AF W Puv6P5 D\50 RARCsE Pt?t% . .. t.on.cs1. Pipst, rut it b suou Ge.cerd or (5/c)*3.concech 1. Sin Fulwa'ter Nt is al e.\ . uM ' - M " . Wor 6 3 from Wis 76' 6t back bb\a't o ti te \eqh 3 sel Gus s 3be ed e uAa'te. a pre S ridien ioss. At\ c.*7oetas ove We 3== she. as % 7i pe. , un\ess _ ohrdise, no't.e1. Y E1'Pt bil.E eder m 5) \- 3" %),e ( Lev 17a) A t ' - ripe. t.t . m ' - s " i- aducer (9" 3") 1 - se ' E%w I - Ga e. slaiv e n'-vip .
\ - 90 ' Ebo 3gv3 a - Check N.W.s e.l . T a a '- !" 2. S ' - P 'p e. 54 %
i t\\,ow k ),- Te e. (r "< 4"= 6") ## _t M 4' - 9;p e\. 3 tg '. 3 6 P W E S \1.N
* , oMh's$*3 l - 3 0 ' Ebw . (. 2 5 - P y. . e. \
5 0.3 5' % L s fer 315. \ 5* = B M \ . 5 ' h1-sbdarlTee T b^
\ ~ %O* L%n la . 3 5 ' - ? yt s t . E' - Pice. e.\. 113 ' 9 \ - 30' Lbw I - 9 0 ' Eb,, E b.7.E ' - Tire e.L .*A '-
M . 5 ' P.i te. c.\ . 13 5 '- 3 l- 40' Ebw I- 40' E%w u . ' - ci 9e s . s '- Pipe UNIT I- AS SHOWN 1- so' tNw i- so thw UNI T 2- StMILAR n.: ' Si n st. m '- i is t'- v;p t - w t.hu 1 - go e E% ,, E . 4 5 ' - VIs e. 3 . ' - ? ; p. ei. % 3'- o' 1 - OriEct ( F L tu s)' 1 - 4 5' ENw \ "a .1 ' - ?'.y e.
\-Of M s ( Ft )M f) ' \ - 90* Ebw 1 66 .~.t' E= L b 30.!' minu s 0.3 5 ' : MR.fa \- Gri= W ve 1- 90' ENv; ( ay g.r e v .) \ - 9 0' E. \b ow
- 9. 5, - ? .ip (. 9y <s v .) Ine rve ,
5.5 - i'ig e e i . .y '- 3 h., 3 b t- S W Aetllec re.t u o 3 'l -C/4 ' s \ - 90
- E\6a 3.1' - Pip. c.\ . U C ' - 3 ' ). ;! ' - ? ip E
) - %0' Ebw h tisc'no r e F \.v. .e. .{ Tot rwP (tA-c)
C $' b3 e O N t. I- C.kech Yo$o.
~ \- E c\sra a.c (,3" x 4") -
,s
(~'- AunuAn FuhwATtubsina Mtss'at._h e s tu 5 er. l/o g- f. h t & A I M 511P,1 "A - CAz_V05 3 0-wt.s._Iw w._osn 34 CChfPv f(D h_ Cat ( ggh$ C^ enento 7 h f -/_onst <A /S Or' shri a th inter:ec' tion phi (d) d ' l.Ne. MDAFwP aid TDAFWP and wo rk bck to & M sc h r3 t. of ht E MMFWP ( yoM b) . (ste ref e.rchts 5') V' Pet Stit turwe 6" Pwe Sitt. ' A fe,C A FW P G I- Shebl Tes ..,> > i.5' - PinAr,#t s (oprox.) , e l . 3 d'4, - 0., 's/s,V*4
; 10.4 , - Piet ) - St chel Tee. ~ '> >
- \ - R5* Elbow 5. 35 ' - Tipt ,
\ - %o
- E \ bow \- 40' E\ bow .
2.a 5' - Pit t t\ . T a 5 ' - 3 " Q\. t 5 ' - ?'pt s\. io t'-9' 1- 90* Ebw I - 90' tbw
\-Gds Wlvt 13.6 ?i9s (aptex.)
i-#ta Ww i- so tsm 1 - 90' E\ bow , 8 .- Tips ( ory e o x. ) 5.5 ' - Pyc ti. 330'-9" - 1 - 90 ' Ebw .
,, \ - 40
- Ebw I- Cavit ab',e Wdeurl I
8 25 ' - ?;pe. . %.ct ' - ?!p.
- t\.6Ta'-\"
l- AM E\bwe \ eb ' Y.%w
- 15. S ' - Pit t t - Ew\.gst ( 6 4")
\ - 90 ' . Ebw l . 5 ' - P;p e.
34.\'- Vies , tey.3., m \ - 9. d e t e r (c." , C )
~ \ - %0' E\ bow Lev-s- sh's \- htk W\wc i - Tee. (s" x s'x 4") _ ,y r ' t-so' Emu 3.7 5 ' - vie e. \ . 3a 2 '-o- - -- )- Ao
- ENw b Dide ,3e F\ <.e e? ft:frwP (se s') !
\.H ' - P;ps i i- %" V.\ve (uv - t - 1%s) -
l \ - Tee. (3 ? a' $ 4") '^[,#"w-g
"[Y i
t . 6' - N, c. i 3 '.ev.3
"^
1 - %'te % tie UNIT I - AS SHOWN !
- o. s ' - P;pt (qpov.) U NIT 2 - SIMil AR :
\ - 90 ' Tr b.,
{ e , ,, . tev.3.m ; k(Y . E d\ - T. e ( r .". 4"x 6") gpg)yg <# - ei .m* r o l
- E 3 n
. - - . - . - - - ~ . . . - ..-,-.-,,-.-,.---n , . . . , . . ,..,,,,-,,,.,n . - , , - - n-- ,..,--,-n, -,,-n,,, ~ , , , . - . , , - , = ,
p
- rarssear on0P cAtcutAtton SurET Sheet 'o of ik
(' SYSTEM hmm Fme (
- o3d CALC I D _ sw9 i-a -ca -nnss Computed by f % Date s-m u
. _o - uc c - sww - ea m q Checked byp* Dat e pu a Line Identification M*d dik N*[6 b*b Nb$ dhi Nominal Dia, In. (ce f. 5) D 6 fc, 4 u G 1 Schedule _ n 'A 0 tan __19 0 tan _Go (ce9. 3') _ tan Internal Dia, In. (re4. a) .
d m =.53r 3.404 s s.a y 5.cs/ f. <, a u Pressure, psia (ed.4) P \too uno 1100 unn uns _ g Temperature 'F T yo un un tm ao (ed.9) un 3 Spec Volume. Ft /Lb (cd.a) V M oMoa o Won 0 M9P 0 04n S Viscosity, Centipoise (cei.1) u t . r, i.G 16 s.4 1. 6 i . (, Flow, spa , (cd. Q Q oco uno s90 m 440 920 Flow, Lb/Hr (8.02Q/v) W tuo Su? se.;n rar?a p ;;3. pu //3, ,3 9 Velocity, Ft/Sec (0.0509Wy/d2 ) V g 5.9u m c.c. .s .4 u 3p
'Reynolds No. (6.31W/db) Re .fif, git, /57. 9/! M4 gr g g Friction Factor
( 2 dP/100' (G.000336W vf/ds) (c e.(. i ') f o m ooter oe364 o.epec o.o',os o m $4 3,g.5 0.46 .i? a. i g o. ? (, a.13 L/D 90' Welding Elbow (re.f. 5) 13 mi (2) s e /a) n,/q) 29 sr ) in h) L/D 45' Welding Elbow (<d.5) 8.5 - - - m) - a.s 0) L/D Tee (Thru run) (rd. 5) 20 - - - - po /,) _ u r ) L/D Tee (Thru branch) (rd.5) 60 60 /q M/i) MM - Jo rii
~
L/D 45' Lateral (Thru branch) 30 - L/D Rsclue.e.r/Edacgst (c t.T . ) + 5) - Suo) a .q ri) 2 y /,3 so.a o) ~ - m .<c) L/D Gate Valve * (ref. g ) 10 - - go (a) o ri. L/D Globe Valve * - - 340 - -- - L/D Swing Check Valve * (ref.5) 80 g - no/i) no rn) ao 6) niq Total Fitting L/D ;?t co.o sco.e ;M.c .m. E r. a c . c. Fitting Equiv. Length,Ft(L/D)(d/12) m r. o 3 .o_ Eo. 'c % . T. ma.o as : Pipins Length, Ft (ed.O _8.2.1 -A.A' 5.I ???.t N. ! %. I Total Equiv. Length Ft L 1"' R2 " " ' ' ( Orifice Plot e d P, p s i ($" c 0 9 '" ~ Pressure Drop, psi (dP/100')(L/100) A.n o.n 1. u o 9.45 f. M +'A,
*L/D for valves are in the fully open positior..
a .. . ' 'i -
./ tux 1L1/IPil FELD WATER __._SXE.T.E rA DE.55MRE._.D?aP satti ~t or llo
_tALLuLATl0N J N P__L- A - CA -M5 3 0 -RthM_W - 0 63_339__ C' comstoy?S_ cart 3-2-es e~ecare 7K' B _ we V2r,-??. _. . 0 C ^ "'" ^ * " ' AS SU M P TlON S : A A 1) modmuu tohl regerca Na CONDENSATE' CST CST tot om una - 9 x vo s = 18 60 3m STORAGE A B TANKS
=\. 70 s's " -~~ =
13 g
<-- %" V_ -- < ta" y 11 8 i is d d /fe , ie > % / , / . . _
t y O
. e o , gf 3 E V y -
Y
/
( g .y 1
,, y -
3 0 -7 N . 1 I I I MDAFWP f I I I g : 2B-B 2 A-A lE-E lA-A
' L/ fX f /'
I I TDAFWP 1 b I 2A-S lA-S
- CALCUL ATE D Ah A ar.a A b A NOTE: /\ ~Pwms Juscms Loc ^ms s mu-DE SIG N CRITERI A E I A G R A l,i or A ox F.15 0 wA T_t9, SysTtm.
PUMP $9tTION PWNG - UN IT \h s E s 3 2
~ . -- , - - . - . . - - . , _ y- , , - - . - . . , . - , - - . - , - , , , , , . r- m%m,.,.e----~---- ---..--y . - , - - y,
r e *- _/1uxn1 ARY.lEEWATER.__5_ysIteA. Patssu,wv __._ho? $"cci 8 or tro
-.S.AL.Lu L AT10 bl - _ _G bl P._ L- D _C A 2.DO 5 2 - - o - M%. _C.YLW- 01&3 OL coeurcogfS_.carc - 31_$$
cuterro 3 9ff esn (4 7A- A t _ _
?st m s \. Luc,w t ARs C.omtoutMis EtTWttH HooAt Po\uis CM DEstGH CV,tTERtA OsAgutA ( Skett. ) vek AP W tuv6P s Suc.Tsoa ? segue. . _
Longes't. Tiping can 'a 'to iA-A teAFWP and l A-S TtAFW? f r o,, We B C. S T . Tabu \dt pI yt \teg&s acd TilMwg from CST lo AF W Puvap:, in order lo ed cu\ slt a p}t irlc' tion loss. A\\ c.omponewls a<t he sant. site as ut gipt units 5 oder v/tSt not ed . (see rt.9erence 5 ) m . 3 Ta" Piet .sstt 40.3' - Pipe. (,a ppc o x .) 4.9' - Pipt (L 10 3 ' 'd ~ b i - Tee. (tf."r 8"r 16) 'S S ,
!# g l - %0
- ENw la ' - Pigg7 , ,
gypp
*" (*N H . 5 ' - Fl y c. b \- Tee DI.'r B"= II.") 1, u-i AN twN l - %0
- Ebw 3'- Pipe. (.pyee=h) u mrwp(:A.A) s7' 80' - Pipt
- 1 - Relu.tr (W"< to")
- g. gg e gg y , 10" PsPE S t ?. E.
h ,, al.s5' - P;Pe,
~
t - 90, E \ bow I' (
- f f '"' -
I- %0* Etbow 8'- Pips. 15.3' - Pipt l- 90* Egbow l- Gne Wlve 8' - P;7s 1 - Echt ger (G" x l(o") 1-30'Ebve 16" PIPE $ 12.E GST
- g ' . p, p g, E E ' PIf t a c:r Arv n?" kspuv3>
I g % %,* l- Tee (W'n ,n"x W) B 3 - FIPt ' 63 ' - ?ipe (3 g.c o.') l- 9 0' t%w A u-rArw t - 4 5* ENw ( a p p ew, .) /i6s t - Tse (to" s' #) #9' "%g " 9.85 - Pipe e1. 4 00 '- 9" c ' - P.ipe, y emrwP (is-a'
\- *3* ?_ b w I - Tee (u"r s"co") $3',,,d T7f[.3) - ~~y, - 9'tS i - v,d uue (u" = s") WL _yrAurwt (iA.f;
_g<< pset g g i- u.5* E.\'e>w e\. Too'- 11 15" M ,- P.ip brycov ') 14.15' - ??ys l - 90 ENw ss n
\ - % E
- Ebw 5.o.i 9;p d , geg,o . 3 z
\S ' - Tipe t-RO* C % a g l- Gas %be \-Gde %ive ERCW 5
e
- 30. ! ' - Pi Ie t - t'ne.sk %W. at DAFWP
'5' E t-%*Ebw ! - s t..A cl Tee. -
UA A) C 5 %. a s' - Pipe. 5' - Pipe
- A esT "' ..
n"
< 4Lh t - Tec, (u,"= lo: 16") , iru%
l
\ -- 3 0* Ebw rt AF WF $4-0),, . budion Flu gt atf ADAVWT (l A- A)
e'
- 31LK1L1PJOf E EE D W SXEPL.__S35 IE riL_.ERE 55 u R L_.D RQ P SHEE7 S or Ib l f ALiuLAnor4 _Silbi _A - (A _p0 53
_0- RC.G __ O LW _. W a A 3 R__ Cosputto f,6__, c Af( ,12.@,[_$6
.w cutcuto y/!//_ enst sf-26 -$f Sherl ok lhf. iwkt tstchgon p o'\ nh ok hht C.ST suppky ko he TADIsFWP (l A. A')
ard TD AF W P ( t A- 5) ac2 wo rk t o W.s suds'ew 4 the ToArwP (\ A- s), c ( H e. t e.h rec e.t. 5)'
\0 " Piet Scat -
A esT TDA'WP 4.1 l- Tee (to"r a vio") * *'. $ s) 1 u.s '- Pipe. ( approx.) 'gA t - s o E. u - - 6 '- Pipe. e\.100'- tik "
\ - 90 ' Elbow M ' , fi p e, el (Al - o "
1 - 9 0 ' E\b ow 3.9' - Pigs
\- 90 ' Elbow ,
S5 ' - Pipe.
- 4 t- 40' EWow
- to'- Pige e\. m * - o" i
1- 30 E%w
\ - Gale Wlve.
l - SO'. f Now
\ - C.ke.ek %\vt ERCW t - Shrdgel Tee CET <-
5.7 5'- Pipe < renwp (t A- s) t - 90' E\ bow fo,S' - Nye d'W '- 4" 1 - ha uct.r (to"*B")
- l- 90' E.tbw ,
M\ S u c' tier. V\a v y_ d 7 t AF W P ( \ A - N L
?-
E O s s - ~ - - 4 ..r-
- e, - - - - _
PRESSLTRE DROP CALCtlLATION SHEET Sheet J1of A C- SYSTEM Ame Fmmu /*ossh Computed byVM Date e m q CALC ID SM P l cA -nbE% , . _o - ues - sww - es m q Checked by1/14 Datev.n u Line Identification b la k d I* b N
- b e M
- k M k ._t & ii_
Nominal Dia, In. (ref.5) D \a tA Ifo 1/n to /t4 _ in Schedule (eef. 3 + 6) Sro go s, o
?o untro uo Internal Dia, In. (ref. 3) d 13.o s . t s.35 4.25 _L;E to O ht.a t _ so y Pressure, psia (ref. 3 + 6) P 65 65 _feji._ _Jd (, e Temperature. *T K
(rti. 4) ,T syd 40 no 40 uo _yo 3 Spec Volume, Tt /Lb (y,.9 . a) y o.onsa e.e e a owa o eim mm Viscosity, Centipoise (ref.t) u n . fe t.4 1. b 1.6 1.6 1. f.4 Flow, spa rno (re.f. M') Q m :%o ataE . M40 $?95 Tiow, Lb/Hr (8.02Q/v) W cea,m tan.na t.mwe tut *!t a sh ic.i c.t us t Velocity, Ft/Sec (0.0509Wv/d2 ) V g f, . t s u.eo ' n. % "d n', s.O Reynolds No. (6. 31W/d'u) Re - oa,ovy qgr,e su.m he #7[.Ia avo en Triction Tactor e.omo/ ( ' 2 dP/100' (Ol000336W vf/d ) S (ed.1) f e. o i n o oio- g g
- f. l a o.34 o. a o c.14
- e. m m a.w h.oq o.us L/D 90' Velding Elbow (<e4. 5) 13 s a /u) g - -
53/u] - L/D 45' Welding Elbow (etb O 8.5 - asah)
~~ , L/D Tee (Thru run) (rti. 5) 20 - ,o m p (r) :nM ao/0 soM L/D Tee (Thru branch) (etb5) 60 - --- - - -
L/D 45' Lateral (Thru bran:h) 30 - ~ - L/D Rsaue.ec/Enhessc (e,4. i+ 5) s .m) i3 /q L/D Gate valve * (et ' . 5) to g in en - - - L/D Globe Valve
- 340 - -
L/D Swing Check Valve * (etE.5) 80 - - Total Fitttng L/D c,7 ; ca. f ;o go 50 /$3 :o fitting Equiv. Length,Tt(L/D)(d/12) (a ; !vo. l na ;; 5. 4 4 5.8 /.$ 2.1 M, *; Piping Length, Ft (ee.f. 5) 134 m stii u o. 3 I!3 5/? - m Total Equiv. Length, Ft L Mi.; g ry cf.7 pu in. 9 /u. l 3 9.s ( Orifice Plat e d P, psi - Pressure Drop, psi (dP/100')(t/100) .:F o. :2 9. i 2 0 nE 1.u k!M4 6 54 t.50
*L/D for valves are in the fully open position.
' enzssinz Dnor catcutATION sxzEr Sheet u o f K
{' SYSTEM Amum F m Arn (
- 03d CALC ID - sup .i-a - eA -nnss Computed by f?B Da te 3-41-n
._o - uem - sww - e s m a Checked by #"/A Da t e was Line Identification bt* b bb'[L . Nominal Dia, In. (re4.5) D 6 to Schedule (et f . 3 ) 40 th Internal Dia, In. (re4.&) d 7 9pl te>.o A Pressure, psia P M _W (re4. 3)
Temperature. *T uo _uo (rt.9. t)) ,
.T Spec Volwee, Ft3/Lb (ref. &) V o oi m o.o' m Viscosity, Centipoise (ref, t) u & t . r.
Flow, spa , (ref.9) Q uG5 _930 Flow, Lb/Hr (8.02Q/v) W a n,ses um Velocity, Ft/Sec (0.0509Wv/d2 ) y 3,,g g Reynolds No. (6.31W/d'u)
, Re'i m 11:333 -
Friction Factor (ref, l') f o.oieq o.or55' * (
- 2 dP/100' (0.000336W vf/d )S o.1 a o.a o
?
L/D 90' Welding Elbow (re9. 5) 13 g gn(q L/D 45' Welding Elbow 8.5 - - L/D Tee (Thru run) (m4 5) 20 :oI_ n ao(G L/D Tee (Thru branch) (ref. 5 ) 60 50/0 60/0 L/0 45' Lateral (Thru branch) 30 - - L/D Rsaacer/hhc3 c(ce4. p 5) 5.u /d 5.4 r.) L/D Cate Valve * (etE S) 10 to (0 to /n L/D Globe Valve
- 340 - -
'L/D Swing Check Valve * (re?.5') 80 mM Total Fitting L/D am.4 29; e Fitting Equiv. Length,Ft(L/D)(d/12) f u % . r. m. :
Piping Length, Ft (nf.5) 1 ** . 4 .LO E._. Total Equiv. Length, Ft I. SM 340 3 ( Orifice Pla t e d P, psi - Pressure Drop, psi (dP/100')(L/100) 3.M o ~3 %
*L/D for valves are in the fully open position.
M Orga nt .'s 65 p l. v. to b e d ttk *k
- N M P5'* b b ^'U t CI'C'k V8h t ' * ^- t Y## *
- / -+
., f
_eUAXnaARY EEEQW ATIL _5 'f 5TE k\ ___iPE55%RE_D R OP -te'
.._.._l A _ :r _ _ % _;
_ cab 1EA110!L 5 M?.1- 3 r.tA M5 3 , b Y . hbIk , [ P
.o,W ,,, reg-ge e
1 O. c At tut ATiON S t) Orlfice ?\itet f r C.ompult Ut dP Tof Ot o$$$c,t. yhlts \wS'tod\td $w Ut AFW y$pidg . o = a n a.' c ] y ' (ree.a) b g kkhk t = flew cot &ita ; av = pnssure. Acep b es; - 3 f = ws@'t ku.6'ty
-f o ya ~
AP = f g ag 3,a.c j
%J AP he n_ tw a .
( a=sae3ee 3 a,-3.ud 6 va.83; c=oe;9=<.a.w.(e.koe) , A? = 63,42 4 980 R
= B, ;a isi ! , 236 (o./e9)(s.soas);
i 6 FM 6? hr FE-3-\47 f G= aRo gp , l = i a.sson 6 (eti. B 3 3 e = o.vi a 3 9 = 6;.n% A? = Ga,W. O.a 9'gq I,;
* ( G26(o,Wa)(a.55037)) '
a E
=
2
13 of 1/c PRESSURE DROP CALCULATION SHEET Sheet SYSTEM Au riuiav veteW Att a -
- 03B CALC ID swP t "A - cA - 00 5 3 Computed by_CP6 Date u.a s . s g o . ute. - T ww - ns 227u Checked bpwWDate o .u-c,9 SUBJECT *st u aac ' t ue, Atten Ter AF W Lt vt t_ PewTwe. OWis c% wr V en RGE or Tau TunsmE - Drivtw A FW Puwp -
3" LCV 3 - M ;t . M 3 , N4 , + n c; D. SWW m5 CONTROL VALVE N 5 Con?dt dP Ser LN tu o n Liquid
- Sizing Coeff.
Cy - tss (<g . q) N
\/ '
l . Cy = Q G ----------------------------------> Q = Cy 6_,P. ' g g , ;;) EP - G
, i C_ v. * /d_. ' I 6'P = Press. Drop = psi Q V6P I I Q = Flow Rate = gpm 9.u.
[Qj}2=c
\ 6P 1 G = Specific Gravity =
1 6P=G[Q}2 (Cy/ I i Q = l G = SP. GR. = 1.004 1 1 = C = Flow Rate = 330 gpm I I =( )( ) Cy = Flow Coeff. = 155 I l Q = gpm 6P= (i. cot >< un 12 ( 155 12 l 1
= ( t.6M )(4.unn ) 1
( (3% o35 ) i l I 6P = 3. o A pai i I l
- 4
og PRESSURE DROP CALCULATION SHEET Sheet tu og 16 SYSTEM Au riu tuv FEEDWATit .
- 03B CALC ID sNP t cA - t e s t Computed byA99c Date #-al-eS o . ute. - www ne mu Checked bf/h// Date cr u m-SUBJECT Purssunt 'tRcP Atmess 7ut AFW LtvEt f_ewT net valve s ew Tut DiMwAur e, van Moves . tmsw Avw Wars -
4" uw m m 1% ; au . + t 4 t O. C$Lc u'_fa m u s s CONTROL VALVE .)
- LCN 1 Coayiti I? for L.CV ty g b
A Liquid' Sizing Coeff. Cy = 1o 5 (ces, q)
^
s . lC - Cy =Q -----..-.........................-> Q = Cy ' OP. ' (ref.A) { i l i Ca = /G_ ' i SP = Press. Drop
- psi Q v 6P l 1 0= Flow Rate = _ gpm ,
[Ca}2 o l
\Q / bP 1 G = Specific Gravity =
l 6P = G [Q ___
\Cy/ \2 'l I
Q = _"' i I G = SP. GR. = t 0S t ~ I
; l =
Q= Flow Rate = 333 gpm I t 1 =( )( ) Cy = Flow Coeff. = , RE i I Q = gpm i dP= (l.09% )( DL& 12 l ( 19 5 12 i
! l = ( g qq t ) ( uq,u rn ) l
( J6 03E3
) l I
OP = 1. M psi l 1 i I e
.x 2 l
_AulLtAF,'f ELED.W ALER_.,.E'tSI E rA PY,tss uY__Q nn9 ? tti L5_.or 16 _C ALML Altoit _S NP t c A - D_CL5 2 B - Mta - 7ww - 083 37 4 _ oart p-al- H cewurtp/KweW&!*C c~testoM .
. t C. C. Atc.ut ATioR t t) Mt AF W P '
h Cotopde h kt. tola\ petsswrt cop (4P) for 1.ht tGAFWP ( *iping 3 valve.s i ard fil'tigs) 31 he +dd enum esg d etd bw of 44e gy<a to two s b.a ra gtettdoes (s/c.) .
~
ADA7WP as? = f d le d + d b + LtV + Orikt. 9\d.t dPm
- A?>.a + .JPa.3 + A?3 ,, + APu.a & dP g3 .g + A P o .iq +A?*-is i litt 4.1I (ns 4.1) *
- d?a-v. + div .-n t APn .i + A? ...,3 + ain . 3.,y dPm = 1.33 & 3% + B .9 5 + 2.3 5 + o. 8 t + o.13 + 0.0 5 + 1.5 0 + 0. l'A
+ 0.af + t . 2*f + R . S H ,
i dP, * ' A3.7'f 9si fleTt : TkIs TAD AF W9 dP va\at dots col.
*de\uds Ot. AP vaht for us Codl*N,3 .
Wel.uri (or WepuSeUsbr3tl.Ns coa).aMc3 vu? turi 4? is accouded f.'r in esf u e net ' 3 . t [ () TD AFw? - t.cntd.t Fr e. hh\ dP for h e 7 D A F'W ? mwp ) a as ,6;#;wm esgarsA f t.w ei uno av t> two s/s . ii (ttegivabesandf 3 TOAFWP dP = *M) + / odt + L c.N + Orifice ?\ 'tts APT * (d Ps .s + dPs-6
- dP6 3 + api i +
fnin+db a hu J. H p.s4.ij
+ d P,, . ,4 + J Pm. ,, + J P ,, , ,, + d? a - a t d 4 ,3 + J Pm . ,u + a? ,,,3. ,n i m 4.4 f + 4 P , c . , , ,,, , I m ,\ a \my) 3 A P, = 6.n (o.a s) + o . n + i.wo + ' B 9 5. + a.s s + o. 81 + o . n + o.o s + 1.s o b 3 + o i a + o .l o + a .o a + s . B + B.u (e. s t) i e
E '= 1 5 .13 pci APT 5
. i
_AanktAR'L.EE.ED.NIATI.R_5NSIEm_?ns5 4RL DEoP setr % or 1(o
. 3 AbeubATA0!4 J5 tif t - a ._c A _p.os a._, 'o -weAc _ww - o mw ~
4-a1-88 coeuito}28_._.ontt
. . - -o ave ..,ause-T ht AP vabes used for Re. MD AF W P and TDAFWP suc't{or, pip'mg ,assqvnts a TB AFwP f\ew of BBC gym wh ch [s gren'ttv' thaw 'th t. mtw$mu m re(uired 4\ew of tan gp,e .
There. fore 3 he lobi pump suc't{ow pip?n3 A? ' _valu e used is conserva' tin. s even Reu3k ue AMf er tete beb>eew AP volves for a Tt Arw ? % of 880 .#A tWo gem ar e. sma\\ . Ako , the. Nw b ough the sud.iow pying 15 ki3 hr Nw b 't of N. sytcific. pump be(n3 considered h e.ause. i't is asswnd ud a\l six AFW pumy,s oct ruww'm3 simu\beausI): This approach is c.owset va'tivt since & tob\ AP 9er he suc.'tiew piy iw3 is C gher. Tk t 0\ow rd e.s for the AFW pumps sudion piping Includ ec %. pump
- e. tire. . flow as a5 gym per rAoAFW P and 50 gpu. per ToAFWP.. ,
Tkt -pressure drop ( A?) Wrough We m.h f eed wa'tc.c be "from We. AFW p.,- ' tit i n . 't . u t. shw ge.nsrobe i negl iliW since ?t is a skor t .rwn of p i p,. a nd %t AP for ano gym W rou3ka %" p ipe is very syna\\ . e S. . O 484
=
h p - - ~ . - -pe-. ,y ,_ + . - . . . , , , . -,.,w ,,,.y .-. , . ,
J. . s . , " ,,.. .
- y. 4< . . = . .
F
, j . ' l ;*.Q ~( , , * :. . . y ,*:T t ...y g; g_l; $. y.'M. [b' .3? y.!. . -h ;'. ' ':) ; l
- .i.y;.l,3
} a ,- . ATTMcH/ met /T b \ faae AI' j . . SNP t- R - cA - p05,3 s 0 -HCG ~ JWW - 08 a3%
R-l ' j
$ l&C F Otti R10/73 REOUISiTION H0. 03b 77 --
i I T E14 H0. - b PL3 4-- HFR DATA IIF dP) x , [ 2 0[j A.NhTY ,_, __ 6
--> t.cv-3. I sy(,p,, f i _ d -
- 3__lJt.STRU
- LENT NO.
4 d _4 ORAWlHG- 1
~"'"
d
~R'EF E'RDICE Sf_qc i to 4 3 :
2 f5* HANU F'ACTURERTi40 DEL MAsoggu i MS x i 7 "dfilDRTCY/Onim I a I 7 STI ICE A u,r FW ) - 8 C r i t 9 TYK CL 3EISHIC i l CT I 0i! OT flGII AL moeu r. Ars -#o soma x N R4 10 x il LlhE SI/EiSCHEGULE 4" : 32 o ! S
,12 H AX Lil!E711ESS'. 7P'51 A)-
f t,, go 0
- " 3_ HAX Vtv CEO5 ED) # 3 or O 4 ~IIfX'il4L Y MMP-~FF) /00 ~-"
SIZEi5ifLE i 64 o_ tic. 2L
- 7IISTTITIffDlH ATERI AL 9do ! CAprewStm I i g T7-- -ENO C61FHE'CYl'OliS- A'eauato X
~"
o TB- T'0)ftiET B TYPE' MT X T9~~PRUN G M3 X 20 LEAK 0'FF CONHECTIONS A/A X 21
- 72~ PLUG FORM MS JC 73 iTIYE'RI AL Sr4/wssT S+ e e c. v ~~
3 '24 HO. OF PORTS / PORT SIZE / i M5 V I ZE 21._RLD.1hG MJ X
<- _ , 28 SPECIAL TRIN N M O E N 6'O MM X i L 77 s
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re- ' A rTACHMENT A n%g Ay - T mEfiSEc VALLEY AuTHonlTY ' xuoxv:Ltc. Tcuticssec s7eoa
#
- M -NU W8Cl26 Commercial Realty Management Building - #S /
400 Comerce Avenue
') 2 2 -= , . Decerber 21, 1979 ' REB 791 S 27 l
l Masoneilan International Incorpcrated % _ 63 Nahatan Street i Hoewcod, Massachusetts 02062 I i Attention: Mr. Edward J. Canniff, Certi'fied Print S-Gentlemen: o
---, I SEQUOYAN AND WATTS BAR NUCLEAR PLANTS UNITS 1 At 2 VALVES AND CONTROLS - NUCLEAR M.di[
l CONTRACT 73C34-83577 __ I REF N00 .n nau twoise We have your transmittal letters dated September 17, 1979 (EEB 790920 029), October 9,1979 (EEB 791015 028), and followup letter dated , November 6,1979 (EEB 791113 002), submitting drawings as listed below. < We are returning two prints each of drawings marked (A) "Approved." . l ! We are returning one print and the sepia of each drawing marked (N) -
- "Approved With Correction as Noted." Please make the necessary corrections on those marked (N) and resubmit. j1
. Item Ref. or - Rev Status No. Serial No. Plant Dwg. No. Date Title y v um _ -
A 23 N-00137-12 SQN cpl-9-175 B Control Valve 4" 20,000 Series - ANSI CL 900 - A, 24 N-00137-27 SQN CP40-8-98 A Control Valve i . 3" 40,000 Series
, 900 ANSI A 24 N-00138-23 WBH CP40-8-195 9/14/79 Centrol Valve " 40,0 -
l N 39 N-00238-1 SQN & cpl-3-293 10/4/79 Contr5100 ^VaWe 3eries - WBN 1" 20,000 Series N 40 N-00238-2 SQN & cpl-3-293 10/4/79 Control Valve , WBN 1" 20,000 Series N
- 41 N-00238-3 SQN & cpl-3-293 10/4/79 Control Valve WBN 1" 20,000 Series N 42 N-00238-4 SQN & CP1-5-172 10/4/79 Control Valve l WBN 1-1/2" 20,000 Series -
N 43 N-00238-5 SQN & cpl-5-172 10/4/79 Control Valve WBN 1-1/2" 20,000 Series N 44 N-00238-6 SQN & cpl-5-172 10/4/79 Control valve WBN 1-1/2" 20,000 Series - N 45 N-00238-7 SQN & CP1-5-172 10/4779 Control ~l21ve WBN 1-1/2" 21C00 Series . N 46 N-00238-8 SQN & CPI-5-172 10/4/79 Control illve - WBN 1-1/2" 20,000 Series l , i i An Equal Opportunity Employer
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7._ 9 se ENCLOSURE 3 PROPOSED TECHNICAL SPECIFICATION CHANGES SEQUOYAH NUCLEAR PLANT UNIT 2 DOCKET NO. 50-328 , (TVA-SQN-TS-88-02) DETERMINATION OF NO SIGNIFICANT HAZARDS CONSIDERATIONS 4 l { 1 l
r j. p t 7 1- ENCLOSURE 3 1 Page 1 of 1 L Significant Hazards Evaluation TVA has evaluated the proposed technical specification change and j determined that it does not represent a significant hazards consideration i based on criteria established in 10 CFR 50.92(c). Operation of SQN in accordance with the proposed amendment will not: (1) involve a significant increase in the probability or consequences of an accident previously evaluated. As described in section 10.4.7.2 of the SQN FSAR, the AFW system is an engineered safety features system designed, constructed, and operated to serve as a backup to the main feedwater system to provide feedwater to the steam generator in the event that main feedwater is not available. This maintains the heat sink capabilities of the steam generators. The AFW system is directly relied upon to prevent core damage and system overpressurization in the event of transients, such as a loss of normal feedwater or a secondary system pipe rupture, and to provide a means for plant cooldown following any plant transient. The proposed change to SR 4.7.1.2.a adds pump-specific, dif ferential pressure test values for each AFW pump. The new test values ensure that each AFW pump will provide a flow of at least 440 gal / min plus
' pump recirculation flow. This flow satisfies the FSAR assumptionsThe concerning 440 gal / min AFW flow to two intact cteam generators.
addition of pamp-specific test values merely reflects the performance characteristics of different pumps. Because the revised SR ensures conformance with the FSAR accident analysis assumptions, the probability or consequences of an accident previously evaluated remain unchanged. (2) create the possibility of a new or different kind of accident from As described above, the proposed technical any previously analyzed. specification change to SR 4.7.1.2.a adds pump-specific, The differential revised pressure requirements for the testing of the AFW system. requirements ensure that the AFW pumps will satisfy the assumptions ' of the FSAR AFW analyses. No changes, other As than those to the such, the possibility testing values, are made to the AFW system. of a new or different kind of accident from any previously analyzed is not created by this change. The proposed (3) involve a significant reduction in a margin of safety. changes to SR-4.7.1.2.a add pump-specific, differential pressure test . values for each AFW pump. The new test values ensure that each AFW least 440 gal / min plus recirculation pump will provide a flow of atplant operation is bounded by the FSAR flow. This flow ensures that analyses assumptions that 440-gal / min AFW flow is availabic to the steam generators. Because operation remains bounded by the FSAR analyses, there is no reduction in the margin of safety. M ? C' ---g - . _ _}}