"Rosemount Transmitters Model 1152DP & AP (PT ... - NRC.gov

82
e QDR-5437-241-01 QUALIFICATION REVIEW PACKAGE ROSEMOUNT TRANSMITTERS_. MODEL NO. 1152DP&AP (PT-LM-201A,PT-LM-201B) SURRY UNIT 2 .. ·:·, __J

Transcript of "Rosemount Transmitters Model 1152DP & AP (PT ... - NRC.gov

e

QDR-5437-241-01

QUALIFICATION REVIEW PACKAGE

ROSEMOUNT TRANSMITTERS_.

MODEL NO. 1152DP&AP

(PT-LM-201A,PT-LM-201B)

SURRY UNIT 2

'· .. ·:·,

I

__J

91 D CLOPPER ROAD .GAITHERSBURG. MARYLAND 20878 '1111111111911'301 J 258-s=o

Mr. A. L. Parrish, III Manager, Multiple Power Projects Virginia Electric & Power Co. P.O. Box 564 Richmond, VA 23204

Attention: .J.E. Wroniewicz

NOB.l-VOl-290 April 30, 1982 File 4.1

Subject: Surry Unit 2 Transmittal of Qualification Review Package No. QDR-5437-241-01 for TMI Item, Rosemount Transmitters

Dear Mr. Parrish:

Transmitted herewith is one (1) copy of the qualification document review package QDR-5437-241-01 for Rosemount Trans­mitters PT-LM-201A & PT-LM-201B for your review and acceptance.

In this package because s~fficient justification for aging is not provided we rec0rnmend including these transmitters in ari Ongoing Aging Surveillance Program.·

Upon your review and acceptance of this, a final revised signed off copy of the complete package will be transmitted for your permanent files.

cc: -N. -:.Garg .. ,_.,w/enG·. R. Bell, w/enc. B. J. Reckman, w/o enc. J. L. Renehan, w/o enc. S. B. Gerges, w/o enc.

0 A Halliburton Company

/

Very truly yours,

(2a)~_ R. C. Wilson Project Manager

TABLE OF CONTENTS

Section

2

3

4

Qualification Document Review Checklist List of Reference Documents Qualification Report Review Sum.1Ttary Attachment #1

VEPCO P.O. No. 39306 dated June 17, 1988

Rosemount Report No. 117415, Rev. B Dated September 24, 1975 (Ref. No. 6)

Conclusion Section& Reference Section

ILLUSTRl,TIONS (Section 1)

Figure

l

2

3

3A

Table

1

2

Block Diagram for Qualification and Type Test Procedure for Pre~sure Transmitter, Rosemount Model No. 1152 AP, DP, GP Rosemount Report No. 117415, Rev. B dated Sept. 24, 1975 (Ref. Report No. 6)

Class IE Equipment Qualification Type Program per IEEE-323 Standard 1974

LOCA/HELB Temperature Transient

LOCA/HELB Pressure Transier;t

TABLES ( Section 1)

Special Environmental Requirements

Special Requirements

Worksheet

Test

QDR-5437- 241-01

1 5 8

10

2a

14

15

16

17

6

7

18

NUS CORPOR.C..TIOl'-J

·-

e

ROSEMOUNT TRANSMITTERS MODEL NO. 1152DP&AP

(PT-LM-201A,PT-LM-201B) Surry Unit 2

QDR-5437-241-01

SECTION #1

COMPLETE CHECKLIST,

FIGURES, & WORKSHEETS

NUS CORPORATION

' ' '

s. . . .. .

e

, Rev

t . Po~: ~~-3/Cl/BO Cl!ent ID: Virainia Electric & ?ower Comoa..~v Pl~~: 51.ir:-f U:ii t 2 . -

Qualification Document Review Check.:ist

Revi~ for: DOR Guidelines[] , ... Nam~ of ~~e Revi~w~r: Manhar Patel

D.ite I By 4P

. Sheet l OtiR-5437 - 241-01

Oat e : 2 - 1 7 - 8 2

2. Equip:nent Covered: Rosemount Transrnitt~~s M~cel Np.1152DF&.ZI.P

J. Equipment Tag No(s).: PT-LM-201A, PT-LM-201B

4.

•s.

*6.

--1 •

Does the report add:ess all of the Class I£ equipment in this cat~gory listed in the master IE ecr~i~nt list? ·

Is t~e report traceac:e to the plan: eg,.Jipment?

Ooes the re;>ort specify an acceptance criteria for equipment performance?

Was a base line test done to estab­lish tbe ref~renee basis?

n:s I X

X

X

X

•e. 00 the maximl.:lt L'"ld/or ac:eident X te:?erat~re and pressure used in t~e test envelo?e those for t!:le plant? (Table l}

N,-.. ,_.

9. Are t.."ier:nal aging pa.rameters chosen x a.'"lc used in the test~.s~pported by Adequate documentation or references? Note: Aging times less than 100 brs

not acceptable.

*lO. Is radiation 1q~n9 addressed? (Test x or L.~alysis. If analysis, is ade-quate documentation providecdi')

NA

P.O. No. 39306 1

Re:. Report f6, Sect. 6 &· Kor}:­sheet #10.3-1&2

Attachment #1

Ref. Re~or::. :#6, Page 2, ec.4.1, & Attachme:-it :;:l Ref. Re::_::,ort :i: 6, Page 3,Sec.5.2

Attach. #l,Fio.. 3 & 3A & Sec. s:s o £ Refer er, c e # 6

A~tach. fl & Sec. 5.2 of Ref. Report #6

Ref. Report ;:6, Page 5, Sc::. :i • .5

*ll. noes the radiation oose profile, i.e., x Attach. ~l a:1d inte;:ated dose for normal o~rations worksheet nos. and accide~t for the pla..~t, fall wit~- 10.3.1 and 10.3.2 in the envel~ used in qualifications?1.-~...1-~...1-~.....i.~~~~~~~~~-

~: Asterisk * in,t!ie~tes i~~s •P?lie&t.le to r,oA ;uicelines •

Form QDF-3/01/!0 Clier.~ I~: Vir~inia E!ect=ic Plant: s~=-:-Y Unit 2

& Power Corr:.pa:.y Sheet 2 QOR-5437-241-01

· !?es I '5c I NA l Page Re!. *12a. Does the tota1 integrate: dose

include Beta radiation? b. If r,ot is there an analysis for this? c. Is it requfred?

13. W~s humidity a;ir.g oon!idere~? (~ot re~uired for cacles.)

14. ~as vibration (&.It~ie~t) a;in; accressec?

•is. was mech~~ical and/or electrical cycling ao:ressed?

•16. I>o the DB! test para~eters meet or exceed those ;iven in the spec­ification? Make a copy of the tem?erature envelope used in the te~t a.nd s~pe:impose it on the req~ireo e~vircr.me~tal ~velope. Ass~re that 6eviations betwe~~ the two a:e justified in the report.

17. ~oes DEE te~pe:ature en~elope used in the test c~ratai~ t!:~ double ~ak req-.Jired by I~!-323-74? •

*18.

19.

20.

*21.

22.

t>oes the ~=E q-Ja:ifie~tio~ include che~ical spray? (T~st or &nalysis}

Coes the spray concentration used in tests m~et or ex:ee-c tbose to be use!! for the pla.r;t? -

was the spray testing dcne vhile u..~cer t.be extreme! of pressure a.nd temper atu:e?

Are ~e ~rgins used in DEE test para.meters defi~ed?

Do the margins eor:.form to t!lese required by ~-323-l9i4 and any applieaole dau;bter standard for this ~.iipment?

., ,l,

X

X

X

X

X

• .. • • ~ • • • ' :i, ·, l, 1-~ ·, • '".. .... . • • . , ,·, • , •' • . 1'l"'. I 0,. •,' • •' ' - ' T- 0. •.' • " ' •• .,.- • , • ._

X

X

X

X

X

X

X

Transmitters are located outside the containme;1t

Ref. ReDort #6, Sec.5.5&Attach.#i

1-.ttach. *1, Fia., & 3A and Sec. 5.5 of Reference ReDort #6

, I ~ransmitters are !located outside the ~ontainment & work lshoo-'- .ic 1 n ") - " r. I -- L.,. 'f'" V • _J .,:._ C,

J

10.3-2

Attachment *l, Sec 5.3 thru 5.5 o: Re::. Report :/!6

.... , .. ~ . '.-.

e

Client Plant.:

I T'\ • .., . VirciLia Elec~~ic Surr.:· Unit 2

*24.

* 25.

•26.

.-­~ I •

Did t.~e s;,eeification pro~ide the require-: Q?erating time- for the equipment in ~~e OB? or other 1peei!ied ha:sr. environment?

1'0es the test op~ratinc; time. 1.!.":der t~e t,ars~ e:.vironme~t equal or exce~= thAt in the eq'..l::.~.ent spe:i!icaticn? A5sure t~at ace­quate j~stification is p:ovided fo: oev::.!:ion.

Does t~e S?ecificatio~ call out the s~broergence require~er.ts if a:.y?

-Does the test ge~ce tests? justification

pro9ram incl~ce s~~mer­lf not afs~me that the is prov idec..

Is fhe ac:~racy ~e~o~s:rated during tes.t'inQ ec:..21 to or better t~1:..n that S?ecified?

*28. Are the nt:i~nting a,-,c ins:1:lation interfa=es used in t~e test config­uration ,imi!ar to these used in tbe plant'?

29.

30.

31.

32.

33.

Was t:ie test measuri~; equipme~t (T!'I.!:) calibration •ccressed in t~e report?

t>oes it s-:>ecifv that t.:,e calibration of t~e ~ is tracea~t to NBS or other secondary stanca!ds?

wa.s t~e seis~i= testing/a.nalysis ~cne on ag~d coeponent or e,quipmer.t?

Did ~e s~ismic t~sting/a:;a.lysis add:ess e!fects of age?

~s the seis:ic test respo~s~ a.n~/ or criteria us~d •~v~:o?i the r•­quir~ resi)Onse S?e=~:a for the p:a.nt?

Sb~et :3 Q!)F.-S43i -241-01

Yes I No I NJ.. I Page Ref.

X

X

X

X

X

X

X

X

Worksheets 10.3.1 land 10.3.2

Attachment #1

Worksheet Fo. 10.3.1 & )0.3.2

Ref. Report fo, Sec. 5 & Attach. #1

Attachr.-,ent # l

r... d. iA~pen ix 1, Fage

1

28 of Ref. Rercrt #6 and Attachment #1

lR ~ I e.:. • Repo!'t ~ f. 6, Sec. 5.4 !Page

I I I ..

i • e

e

'P'orm QOFe-3/01/80 Client ID: v~=cinia tlectric , Power Ccc?a~y Pl•u'lt: s~r=-.t Unit 2

. -.­.J I •

Was the aa.me test speciml?n suoject to t~e entire test seque~ce? {In­cluding aging tests? - Ntr?.E~ OS88)

Co~pare tht olock ~iagr~ for this report ac;a.i:-.st. the one you have pre­pared fro~ yo~: understa~cing cf ~bat t~st a~d procecures are regu~rec as per !~E-32:-1974 anc a~y applica~le c5ai,j;hter stancarc for this_ equi?ment. Do yo~ be:iev~ the re?ort meets the i~te~~ of ~~ese sta~oar:s?

ls t~e q~ali!iec life (QL) explicitly statec? Fill this information in the master LE eq~ip~e~t list.

00 t~e aging tests/analysis res~lts s~fport the Qt conclusion a~a is ade:;:·~ate doc-.i:rientation provideo to s~ppcrt ~his conclusion?

'38. Revie•· the test res~lts on a re:a:i,.-e comparison basis (i.e., performance para!nete:! of the ~ase line tests versus t~ose during t~e vario~s tests). Was t..~ere any major discre?ancy?

•39. If so, vas it satisfactorily eX?~ained in tbe repcrt?

*40. Are maintenance reqi.:~emer,ts a.'l")d com­ponent re~:ace~ent intervals specified?

•41. Bave yo~ eom?ar•d m.aintenance a.rid re­placement req,.;ire~ents to t..~ose in the stanoard i~struction/~air.te~ance ma~ua~s a.ne identified any speci~l ite:s in Ta~le 2?

..... ·•, ....... ...

Y~s

X

X

X

X

:;.:

I No '

X

.

X

I

She~t, Q!lF. -5~37- 241-01

RA t Pagt! Ref. -. Ref. Report ¥ E , Paqe

.., Se.c:. 5.1 -~ '

I & r: - ') _.1.,:>.""'

I Figures 1 a:-Jd 2

sec. 5.3~4 C,:: R~.:: .. t::..:..

Report #6 and Attach. :l!;

".J.

Sec . 5.2 0£ Fe= . R.e}:•crt f6 & • Attachr.',ent ... s

-r -

Attachment J; ' .,, .i

X

Form ODR-3/01/80 She-E't 5 Clie.?'\t ID: Virc-i:"lia !lec"t.:ic .. Powe:- Company ODR - S 4 3 7- 241-01 Fla,, t ~ Surry Unit 2

List all t~e reference doc:.mients useC, !or this r~vie._ b,0

their titles and identification no., with their :evisio;. le9el and date.

1) IEEE Std. 323-1974 - IEEE Standard for Qualified Class IE Equipment for Nuclear Power Generation Stations.

2) NUREG-0588 - Interim Staff Position o~ Environ~e~tal Qualification of Safety-Related Electrical Equipm~~~-

3) IE Bulletin 79-0lE - TMI Review Resoonse SubDitt2l, dated Feb. 1, 1981 Worksheet Nos. 10.3-1 & 10.3-2.

4_) Environmental Zone Description, dated Aug. 24, 1982 VEPCO Surry Power Station Units 1 & 2.

5) VEPCO Purchase Order No. 39306 dated Msv 17, 1980 for Differential Capacitance Absolute Pressure Transrritters.

6) (Reference Report No. 6) Qualification TeEts for Ro~e­mount Pressure Transmitters Model 1152. RMT Report No. 117415, Rev. B,dated Oct. 26, 1976.

... • ......... ·~ .• .. . . ,·y

' I

?ABLE l

:_D.e·\;. Datec Sheet~ ():)?-5.;.37,- 241-01 Su:!:"ry U:-:i t 2

s~ecial Environmental Reauire~e~ts

ROSEMOUNT TRANSMI TTE?S MODEL NO. 1152 A? ...--------.;.;.::.:...::..:=...:..::....::.........:::....._:__~..;;__..;:_...;._ _____ =======-------------"-

11 i, 1 I F J..?J,.Y.ETER

O}'EF:J.~r:' INS '!"l~i:.

F·P~~ES SURE

1

1 DOCJ}E::~'I' RE:FE~!,::'E • ! I

I SPECIFIED QU.;".,.LIFIED J S?ECIFIE[, QUAi..IF:;::::::::;: I ~ I

I i I

120 Days -,.120 Days

i Accdt: 205°F

! iv; Ref. Ltr-. INo. NN-SS­'79257

S&W Cale.

j L + - .,; ,- I '1 ne 1. • .t",eport -, o J.

5 ~ 2 ~ -1 ! Sec. . =,. ana !

!Jlattach. #1, ,f

!Questicn 8 of ! i this QD?. !

j Max. / Nor.:nal: 1CJ0°F

12846.44-PE-I 3 5 0 ° F Max. I O 5 0- 0 ,

! ;

Ref. Report #6, Section 5.5.2

!

I Ji.ccd-:.: I I I

1 i I

15.2 psia 84.7 ps.:.a

Max. SA11E

e/ ..__ _______ ..,J..... _______ ....,_ _______ ,1--_________________ ____;

/

' -,.,crrl4- •

i

i I !

I I i I i

l I ! i l

e

... "'"j,, _.u L. • 100% \..J....,I ..L.J.:"'~ .J. ',i __,

H~Y. IDI Tj;" i No.rmc.i: NC*

I

40 Yrc:: • ~ ~. 3

4.87xl0 Accdt: c:; R.A.~IJ.._TJO!'~

9.3x10-

SUBY.ERGE1~C£ NR

NR = Not Required NC= Not Calculated

100%

I !

h 5.xlO~

NR

SAME

S&W Cale. 12846.44-G:R

I (B)-043-0

! ! J I ! Env. 2,one DescYipticn Table AB-1 J;.

I ( 0)

i I I I ' ! I

I i I i I

I I I

I l

SA!-1.;.E & Attach . #1, Quest. 13 of this QDR.

Ref. Rerort -:i; 6, Section 5.3

.

NP "'

?'orm ODR-3/01/i: 0 Shet:t 7 Clien~ ID: ·v·:.=;i:-.ia. Elect=~= & Power Co:r:.pz..ny ODR-5437 -241-01

Surry Unit 2

T&:ile 2

l. M~ir.tenance Requirements/Intervals

1) Consult manufacturer's recowmendations as sated in his maintenance manual.

2} These transrni t ters are recorri.mended for incl us io::1 in a:::: on going aging surve~llance program.

2. Rep:~cement Re~ui:ements/!ntervals

1) As we calculated the 18 month life of these transmitters we recommend to inspect and conduct usual tests during each refueling outage for any required replace~ent.

N/A

None special

. . \ . ~ . .

Pont Q:::P.- 3/0 l/ 5 0 St;e-et 8

Cli~nt ID: Vi~ci~ia Elect=ic & Power Company P~ant: S1.:.r~./ linit 2

O'DF -54::7 - 241-01

l. !q-~ip:ne~t Quali!ication aevie~ed: #117415, Rev. B for RosPmount 1152, d2ted oct. 26, 19 1 F,.

_Qualificatio:. Tests PeJo~t PrE· !3 s u ,-e Tr c::: s:·-.:. t t e ,- !'-\c,.:J €: J.

2. Status o: Qu!!ific~tion Reco:cs:

X

X

F.e:o:cs ioe~t if ieo (Full/ra-:~fa-±), c:;,tai:"1ed (F'..'.l:/?a:--",c~!-l-'. , anC rei1 iew {F~:.l/P.&-f-~i-a-:.) S~!"~~.arizeC c·nc,r;;,-3/01-80 fo:-;r;s.

The following additional aocuroen~s h!ve ~ee~ :e~~es:ed:

1.

. .; . :: .... ro:lcwin; areas/docurnen:s

Vendors New Aging If-St Pa:ra:p~ters

, -. 3.

:: .., .

., .. 4 .

6.

r~quire accit:~na: revie~:

:2 •

,. 6.

O~her co:roe~ts on status cf qualifica:io~ reccr~s:

3. Stat~s of Quglifieation

y

X

, - " .r• . ..,.. . .,,- ...

Eqi;ipment qualification :Deets the guida!'lce- of NC~G-05S8. For additional comments and recO:::L"7iendatior,s, see section 5.

Ad~ition&l evaluation is needed to ju!ti!y cr~alifica­tior. status. Details of additiona! ~v!luation needs attachec.

Quali!ication tests ccnsiste!"lt witr, ~e re:or::::::e-~oations of 'h"'Jr.Z~-ossa for ca:e9ory l e-q"..li?1:te::t shou:.:3 ~ pe::­fonneo on the equipment.

. - ... - -.-

~or~ QCR-3/Cl/SO She~t 9 Cl iui t In: V.i:::-c:inia tlect.=ic _, Power Co::?pa..~::· ODR -5~ .3?--241-01 Plant: Sur::-y U::-iit 2

!q,~ip~ent should be relocated to an a~ea ~here it will not be expoaec to a harsh •nvir~rM11ent.

1) Rosemount tested model no. 1152 transmitters in 1975 per IEEE-323, 1971 and now is coITu.llitted to retest them to­qualify per IEEE-323-1974.

Initially Rosemou:-i.t tested these transmitters for t~o cycles (100°-0°-200°-lOOcF) of eight hours each which is no~ enough ta establish a qualified life 0£ 40 yrs. We are unable to justify more than 18 months life even after taking the credit from extended steam pressure test (See Question 9 in Attachme~t #1). Hence we recomrr,2nd inc 1 uding these tran sn-,i tter s ir: an ongoin~ aging surveillance progra~.

2) For add.i tional cor.-!Inents see attac;:me:-i.~ J:.O. l.

z..,vironme:ital qualification doc·ll:t~nts for t~e ~q,.,~:mer:t ide!'lti­fi~o he:ein ha~e ~en revie~ec a..~c determined to be acequ~te &r,a a~ditat1.e.

Prepared by: .... }~l~·_;,,t~_·.:---p;...;;.a~t~e.l __ ~-1f17~v-·_J?./:~,f}~·~ l.),; ,:_-;

C-r~' ... ·-~i·e~ ·y·. __ R~·~J_.~B-~_-_1_1~~~'~.f~' ....... 1,1-__ _ .. - - lol ,,, . • A . I

.... - ....

Oate:

oi.t~:

4/i/82

4/22/82

A?TACHMENT #1

Question Nos. 4 & 5

Sheet 10 QDR-5437-241-01 Surry Unit 2

System component evaluation worksheets for FT-LM-lOiA and 101B indicate only Rosemount 1152 AP transmitters are used in Surry Plant. Reference Report #6, Section 6.0, covers type testing of the 1152 AP transmitter. Hence the report is considered traceable to the plant equipment.

Question No. 6

Per re~erence report no. 6, sec. 4.1 on page 2 satisfactory performance criteria is based on:

(1) Performed wichin 2.0% accuracy after being subjected to 5xlo6 garr~a radiation dose. The accuracy after recalibra­tion was within ±0.25% of the sDan.

(2} Remained operable, within ±0.25~ accuracy when subjected to seismic disturbance cf 3s level over a range of 5-100 Ez.

(3) Performed within an accuracy better than 1/2% full scale after exposure to stea~ pressure environment.

Question N8s. 8, 16 & 2L

As shown ir, Figures 3 & 3A Rosemount concuct.ed a steam rressure test for 50 hours (Sec. 5.5 of Ref. report no. 6) which envelo~s the required one hour plant HELB conditions. Hence the conducte~ test is considered more severe and the transmitters are qualified for HELE conditions.

Question Nos. 9, 36 & 37

Rosemount conducted two cycles (100°-0°-200°-100°F) of eight hours each towards the thermal aging test. This is not enough to satisfy IEEE-323-1974. The vendor qualified these trans­mitters per IE~E-323-1971 in the past and is corrw.1itted to conduct additional tests to qualify them per IEEE-323-1974 by the end of 1982.

At this time even though we take credit £or the extended stec~. pressure test we are unable to qualify these transmitters for more than 18 months (see the analysis below). Hence we recom­mend including these transmitters in an ongoing aging surveil­lance p::-ogram to extend the qualified life till Rosemount corr:­pletes the tests per IEEE-323-1974 and a new qualified life is established.

NUS CORPORATICJN

e

ATTACH.YlE!~T # 1

Question Nos. 9, 36 & 37 (Cont'd)

AEalvsis for Qualified Life:

Following tests were considered:

Sheet 1l QDR-5437-241-01 Surry Unit 2

i) Thermal aging test: 2 cycles (100°-0°-200°-lOOcF; 2 hrs each,per Sec. 5.2 of Ref. f6) of 8 hrs each. Out of this test only four hours at 200°F are considere~ because other temperature values are lower than the plant arrtbier.t temp­erature.

Applying Arrhenius eq~ation:

l (T2-':::'1) K T

1xT 2 ,.,..,

~

X

TL =Life@ ambient temperature= 100°F - 311°K 1

'T"i = 4 hr:= .. @ 2oocy = 366c'K Y.

Tl = 311°1-~

,..., ... ~. = 366°K

'-

e = 0.7 (See note below)

Substituting the values and solving:

IT\ .J.T

.l..Jl = 203 ho..:rs.

ii) Credit from extended steam pressure test:

In the following calculations the first one hour (See fig. 3) of the test which envelops the plant HLLB condi­tions is not considered.

a) Test profile FG:

Tl = 100°F = 311 CK

'T' = 303°F = 424°K -2

TX = 7 hrs.

TT = to b-2 calculated "-'1

0 & Kare same as in (i}

f'.JUS CCJRP::JRA.TIO~-J

Question Nos. 9, 36 & 37 (Cont'd)

Sheet 12 QDR-5437-241-01 Surry Uni t 2

Substituting these values in Arrhenius equation and solving:

TL = 7,386 hrs. l

b) Test Profile HI:

rn - 100°F 311 °R -' 1

'T' = 230°F = 383°R -2

T = X

42 hrs.

rn = to be calculated "'I.,2

0 & Kare same

Substituting these values in Arrheni1..:.s equation and solving:

T = 5,699 hrs. 1.2

Hsnce corr,bining the results fror:1 ( i) and (ii) c.bove the totc.l qualified life= 203 + 7,386 + 5,699 = 13288 hrs= 1.5 vrs.

NOTE: 2nd Fara, Page 83 of Rosemount Report No. 57820 in QDR-5437-13-01 reads as follows.

The integrated circuit used is a linear device of mono­lithic bipolar construction; it is an LM308 device. An estimate of the activation energy is provided in a mili­tary technical report generated by the Air Force Rome Air Development Center (reference 9.7). In the conclus­ion of this document, it is stated that a range of activa­tion energies for microcircuit technology varies fro~ 0.7 to 2.3 electron volts with no discernable correlation with microcircuit technologies, packages or ~a~ufacturer. Using the smallest value of this range gives the most conservative estimate of test time for ther:r,al aging when used in conjunction with the Arrhenius equation.

NUS CORPORATIO~-J

Question No. 11

Sheet 13 Q"CR-5437-241-01 S'.lrry Cnit 2

Eauioment Evaluation Worksheets indicates the transmitters ma~ b~ exoosed to the maximuffi radiation dose of 4.87xlo3 R~uS 40 ~ yrs (TID) plus 9.3xlo5 R!l,.DS DBE. (Total lxlo6 RADS). P.eference Report #6, page 5, section 5.3 indicates 1152 model transmitter was expc,sec to total cf 5xio6 RADS durirn; radiation test, which equals the anticipated 40 yrs TID plus DBE dose.

Question Nos. 27 and 39

Accuracy after recalibration remained s~fficientlv near to the specified value at all times except during the exireme conditions of the steam pressure test which were well above the plar.t service ccnditions. Since the accuracy returned to within 0.25% of specified following the steam pressure test, it is the judge­ment of NUS that this is not a detriment to qualification.

Question No. 28

The test report does not define mounting details except for seismic testing. It is assumed that for both the manufacturer sponsored type testing and fo= installation in the plant that the manufacturer's mounting recomr.,e::dations were follm,·ed.

Question Nos. 29 and 30

The TME calibration dates are recorded in Appendix i, page 28 of the test report. The traceability of calibration to NBS is not considered critical since generally the test facilities have a qualify control procedure which is recognized by the industry and which assures proper mainteLance o: calibration for the TfliL.

NUS CORPORATiOf'·,!

FIGURE: 1

Sheet 14 QD:\-5437-241-0l Surry unit 2

Block Diagram for Qualification and Type Test Procedure for Pressure Transmitter, Rosemount Model No. 1152 AP, DP, GP. Rosemount Report No. 117415,Rev. B, dated Sept. 24, 1975 (Re:. Report No. 6)

I

BASELINE CHECK

THERMAL AGING SEC. 5.2

FUNCTIONJI.L TES'I'ING SEC. 5. 2. 2

RADIATim-i .P>.GING S:i:::C • 5 • 3

POST R~D. TEST SEC. 5.3.3

I SE1s1,nc AGING

SEC. 5. 4

! POST SEISMIC TES~

SEC. 5. 4. 3

I STE.i\.t( - PRSSSU.R2 (MSLB) -SI:C:; .5. 5

I POST MSLB TEST SEC. 5. 5. 3

I CONCLL'SIOt~

SEC. 6. 0

/ I I

i i

: I I

f"-JUS CORPORA.TIOr'J

e

e

ShEe": 15 C,2F,- 5437- 241-01 S"'...lrry Unit 2

Cl>.SS IT £Q:JIP. Q'J~LIF', T'!PE TEST FROGRA.."I PE? !EEE"-):;'j ~':"J.."<:'>.?.~ 19?.t

!n•?eet:..on t~ cetermlne da1T,age 1! a.~y a:.tbse=~ent to ir.Anufaeture

I O.tcrin:..n.etion of Ga.ta baae ror p.r!orlM.nce under no.r-?Yl and 1DOre straaa eo~dit1ons

I Det~r-~na.tion of basalin~ data. for ex~el!lt.1 oparating ~r!orma.nce and electrical ch&.racteristics given in equip111&r,t !!pees. texclud­ing DBE and post D5E unlesa data art avail&hle from other tests on identic&l or eaeentially a1Jll.il~ Joqu.ip::t16.nt

I ?quipment aging ia a condlt1on eq-vip1:1ent to end (of uaeful life) qUAli!ied life condition. Sim~la­t.ion for degrecin~ influences for thermal, radiation, vibration, elec:~ro."llE'ch~nical equipment a~all be operated t~ s1.111ulate the ex­;,ectec m.:chanical wear a.nd elect. cont.act degradz.t1on. Sa!npling aging ti.mes of lese than 100 hrs. vill net be permitted.

I IA,ged e,quipment aucJeet. to -chV1ical. vil:.rat.ior, &a will be ae.en in 9ervie11. This includes .-ial!l.ic vibration (IEEE Std. 34(-71) aelf induced vibration (a .. 344-?l) a.r vibratiot from ot..~r c11wie (such as might be aee:n by p~-acunted equipmsnt)

j ~quipment shall bl! operated white .x;>oaed to the simulated poat­&cc:ident condit.iots. Those func­tior,s vhich ll'IUt be per formed following the simulated DBE muat. be monitored. E.xpcHd ti.!Da au.st t:. &n hour or over

I Tt• aged equJ.?l!lent oper3teo wnile expcs.e-c to siz~lated DBE. Those f~ct.io~s which must be perforl!IE'd ~uring the si.mul&ted deeign basis ievent (D3Ei m~t bt, inc:mitored.

I c~1a.s s.ei:..t Lt nece: s s.ary for ins?E' c­t ion cf the st.a.tu• and condition c! t.~ equi.?llli!nt &rid record !inding.

I

~ajlation: Ma:eria~s or c=~?O~en:~ ~hich 11:.Ay be degraded tc a oegree ! o! poorly perfon:u,ce due to rad~&-, t.1.on •xpoaure will t>e A;:>pliec i,;.;.tl: ll,

a radiation dosage equivalent to .-----t t.ne ex-.,cctee s;erv.;.ce. T~e a;::-Flled

dc1,ac;e wila. de:e:r:r..:.r.e the q1.al1!.i.ed U fe aerv ::.ce l 1 fe and CSE con di - ! tion• appli=a.tion. I! aervice ccnd.:. tio::a en.:c~"' tar qamma I el u.d beta (Bl raciatior, thE equiv a lent <;a.m!U 18) mcy be utilized.

-

-

Suggested factor to be applied to environlN;nts for type test~n; &ra &I followed ~

l.

2.

3.

4.

5.

,.

7.

e.

Temp + l5C·p (8°Cl When quallfication testi.nc ia. conducted under satura::.cd stea.m con~iticn - temp zr.a.rg i.r, is !'llC'h tt.a t test p:e11s•.ir~. wo:-, 't exceed sa-::u.ra- \ t.ed st.e=-~~prei:s....::e tlj' =:::e lO ::..bf/ ir,"

+ 10\ o~ g~uge, but~not acre tt.ar, 10 Lbf /in~

Radiat.ion + 10\ (on &cd.~ent do•el

Vol taae -+ l C-\ o! r11 tee val ;,ie

under· ot.'t'.e::-111·i•• apei:: 1 f i.e.!

rre~ncy • 51 unlea, ot.."1.erv.i.se i';;,eci!ied

TiJNt + 10\ d the p-eriod of ti.me tr,e eq;.;ipment is required to be in operation fol~ow~ng the DB£

~nviror.me~ta! transient: the initial t:a~!ient and the Dwell a~ pea~ temp. ah&ll be applied at leaat tw.1.c•

i

I l I l I

I

Vibration+ 10\ added to the accelerAtion o! t~e respc~se •pe=t.rulll at: the moW\cing I poJ.nt o! eq:.iip.

FIG::.:Rt 2

..:: ......

---- J /1C/\ PHOFILE

Time After LOCl\ /JTELD (seconds)

[

Ref.: s~w Calculation J No. 12846.44-US(B)-052-l for. Zone [or inside c0n­t;-1i 11 rnsc~l1 t

e

NOTE: Required llELB condi.t.iuns rxist f01- <)llf' hnur.- nn ly.

o----o ACTUAL TEST PROFILE (Ref, Section 5.5, Rosemount Report: No. J.17<115, R0.v. H dat:cd 9/24/7S)

o,---0 !IET,B PROPILE (Ref. S&W Cale.' l284G.44·-l'E-050·-0 fur 7.onc /\n--lJA)

LOC/\/flELB TEr·lr[R/\TUI\E TFU\NS I ENT

r.rr.um:~ 1 Shr:,r>t 16 Qflk-S ,L\ 7-·241-01 r;urr~y Unit 2

--- T.,OCl\ PROFILE

[

Ref.: S&W Calculation ] No. 12846.44-US(B)-052-1 for Jnsi.clc Conl:;:i·inm0nt

o----o /\C'I'U/\L TF:ST I'ROFit,F: (Ref. Soctiol"i S.'j HosPmo11nt Report ~Jo. ll.7tll'J, n.0v. B dnter] c?,/24/7S)

o---o IIELB PROF.ILE (Ro[. s.~w Ca. le~' 1284G. 44-1-'P.-()S()-0 for Zone AB-J3A)

LOC/\/11[1_ n 11f{ESSIJHE T~f\r,!S I G!T

F'IGURE 1 f\ Sheet 17 QDH-S41"7-241-0l Sur-ry Unit 2

• • •• Facility: VEPCO, SURRY SYSTEM COMPONENT EVALUATION WORK SHEET - SUPPLEMENT 3 t}lit: 2 locket: 50-281

S'tSTM: Environment Documentation Reterence out-LEAKAGE K>NI'l'ORING standing

1!.QOIPMZNT DESCRIPTION

PLMT ID NO. PT-LM-201A

<DMPONENT: Pressure Transmitter

fl\NU.P'ACTURER: Rosemount Inc.

Units SPecification

OPER. 120 days TIME

TBMP • See.. i-ij .3 OF

PR.!SS. <llll S° e e. F-1'. 3 ,4, psia

MJDEL NUMBER: REL. ~ I e. o -r. 1152AP7A22PB HUM. I

PUNCTION: CHEM. NR Post-accident Monitoring SPRAY

IICCORACT: Spec: ±.251 of Span Demo: ±.251 of Span

RAD.

Cf,3 )c I 0~

LOCA • ih5 X 196 40 Yr• 2,5 K 1&•

4.i'1Xto 3

Qualificatl.on Speci ti cation ? J,;;_ () l:,4. ~.{

Notae 1 Westinghouse Ref. Ltr. No. NS-SS-79287

• s~e. -Fi,. 3 S+-LN c.a..\ c... .. ll- rt!/', 'l'I-PE-6$-0 -o

i11t 5 u.. \:' i '.l' • '3 A- ';;>M

-I oo-," -E11v. ,oAe.. NR -t>•J<r .. ,,+,'•/\

A-B'-11A(o)

S6M Cale. 1281t& .38 RP•

Qualif. Method Items -'»..., 11

Nete ~ .-.,pc... ic;+ Nol\<:.. Nute .. ~ ...-Gl."-"'l~ ,1.s

~n "11'- T•t+ - -+-

None ~"""(~.r,'J

b.., /") HR

l'f pe. ,~+-T'

•ai.. ... lyJfJ None

~n .«.. ,es-I-None

NR.. NL - IW,. None

~ pc... ,-.,.1+- f'J O" e.. II 1 olla-e ,-

J.DCATION: AB'-l3A(o) AUX. Bldg.

SERVICES

AGING 4 O '1 r.s.

~6. l/ll- vR..(BJ -0 '13-0

- VEPCo P. D. ;Uo. 3'l3D(, 'J:>.._ic. ....

Sh..u.+

lr.47\,~~I ~¥n:f1\ Reactor Containment

Pressure

FLOOD LEVEL !LEV:- -21 1 11• ABOVE FLOOD LEVEL: X Yee

No

SUB. NR NR Env. 2011.c... •. I• .l) ~s c.r ,·pr,.,.., IH3' - ,:1 A- ( o)

Q"-""l~s,·.s

NR NR None

NR • Not required. All numbers written in Documentation Reference Qualification column are identified in Section 10.5. tOTES: 1. Transmitter is qualified to the requirements of IFEE-323-1971. At present transmitters are being qualified to

requirements of IEEE-323-19711. --r;; oh+"-;" "'- <to 'jN, /,' r::e_ f-1,,,·s -hA.,....Cfh.j ++-er i'J -f.o lo-e.. ,'r,e../ vd ~d /11 V Ef C O's

o" '10 ; "-j 0-.., i "-1 s "r V e.i I \ Cl. V\ c..-e... pl" 1 n .. I\\ . . .

the

10.J-,

(I) IO (I) s::: t:, !J Ii :,;1 CD Ii I CD '< u, rt"

"'" c::: w I-' ::::1 -...J 00 I-'· I rt" I\..)

"'" I\..) I-' I

0 I-'

• • Facility: V£PCO, SURRY SYSTEM COMPONENT ~VALUATION WORK SHEET - SUPPLEMiNT 3 Unit: 2 Docket: 50-281

SYSTEM: LEAXAGE IIV)NITORING

Envi~onment

l!,QUIPMENT DESCRIPTION

PLANT ID NO. PT-LM-2018

COMPON£NT: Pressure Transmitter

ff\NUP'AC'l'URER t Rosemount Inc.

MJDEL NlMBER: 1152AP7A22PB

Units S12ecif !cation

OPER. ·120 days TIME

a Su .. Fi'~. 3 TEMP op

PRESS. ilR Se.e Fi, . 3 A psia

REL. M' I 00""1 .. HUM. I

PUNCTION: CHEM. NR Post-accident Monitoring SPRAY

1CCURACY: Spec: t.251 of Span Demo: t.251 of Span

IIJCATION: A i3 -13 ,4(0) Aux. Bldg.

SERVICE: Reactor Containment Pressure

RAD.

AGING

FLOOD LEVEL ELEV: -21 1 11• sue. ABOVE FLOOD LEVEL: X Yes

No

'1. 3 XI o ~­LOCA : hS x 18• IJO Yr "' 2 li X 1.0 •

~.8'7 X111, 3

~ 4oyr.s.

NR

Qualification ,;> /2. • C"'f S Nott T

-~ec... ;:::.,·7. 3

- s e..e... l=-13 . 3 .4

tM' / oo /b

NR

-f,c) 'f(.S.

NR

Documentation Reference

S~cit1.cation

Westinghouse Ref. Ltr. No. NS-SS-79287

S'it-w CA. I c.. IIR' p .. ,!t'</1.. </'I· Pl:·

oro-o

~-::) lMt

E.,w. Z.•"t... Nit

D Q$,r;r-f-l •" r4 B- D Mo)

S&ff Cale. 1.:.1.811& .3t,*'RP-­

.Jl.l& 9-/;J. r <I I,,. YV- U rt..(B) - C, 'l-;J-0

• VE Pc a f. o. lu o. 3't:SDb bc..+/1-- .51-ee.+

£.nv. 2one.. .IIR-'t:,uc.r,'p+h ... ,t 8' - /3 .4 ( o )

Qualif. '=- n

tlete 1

~17

~17

~11

Nil_ 11ft:

NR

• out-

standinq Method Ite.!!!!._ T1pc. ,-.._.,+- /LI<>" e... NQt.e 1 Nn1io 1

-.t- ai....c( 1J•°J

'l'~ ,er/-Mt .i- None a. "',..I ~J,'J

-r.j P~ -ru.J.--~ None t1. "-"I~ -'•'J

4"t r., pe ~Jf None

AJf'... .M None

°"1 pe.. TiJl- /\)011 ~ r.la:2 t IZF1 t

IIJ pe.. TeA+- /\J ote.. I ...... 2 ,

t:tl'\. .. l'j/1~

NR None

NR • Not require,!. All numbers written ln Documentation Reterence Qualification column are idf'ntified in Section 10.S. !OTES: 1. Transmitter ls qualified to the requirements of IEF.E-323-1971. At present thf're are no transmitters qual1.fied to

the requirements of IEEE-32J-1971J. -ro .,1,f,.,·I\ t::'... L/r:> 1 ..-s. /,.P...c.. f-l,,;.1 +r4.11sM,·-iJ.~r iJ +. be.. i'l.c.lvd-<!!c:/ /" VE/J(o~

ol'\.,Oil\.~ a..~;"'-~ Svrve..i ll11.l\<..C.. (J(d ~Y-..M,

10.3-2

Cfl l() Cfl C t1 ::r Ii !;cl CD Ii I CD I<! u, rt

,i:::,.

C: w I-' ~ -..J \,0

1-'· I rt l\J

,i:::,.

l\J I-' 7

0 I-'

1

,, ~ ~ ~

' t ...

SECTION #2

SPECIFICATIONS, PURCHASE ORDERS,

VENDOR PROPOSAL

NUS CORPORATION

e VEPCO P.O. NO. 39306

DATED JUNE 17, 1980

Page 2a

e

NOTES OF TELEPHONE CONVERSATION SURRY POWER STATION- UNJTS 1 & 2

J. 0 . NO. \ '7... ~ :...l G · ;..J ;.

ETA NO. ;:::; ::::_,--...~~

From To

STONE & WEBSTER ENGINEERING CORPORATION Page of

Call Date: ~ : ··(Jr C:::Z- ' _______ .a.__ _________ _

Time : ___ 2.._· ....;l~S ... P ___________ _

of VEPCO -----,------------------------------------'\I ,<..... -i--

/

. ~ \ (::7'r•· ~ _,. 'j I~ of S&W

"X._ G o,.r..,_ L~~ d 0 / I . \_.,_ () -:· :'" i"f" ., \ \ ·,"'.-r \._ ~ ..., r ,.,,,' I :, i~) \ 0 f

.... \ ___,~~----,--~------~·-·-'-~--~· ~'-'~··~· -· --,---------- ----

SUBJECT S-tc tu:. -1', \.\\ u) ~) \ '.r l.. ·~ ~ ... ~;, ·r :, / ,r ·-

"\

SUMMARY \ I , ;. : r ; ... · .. J

c..."'' LI -_; I\ I<::' 1 .. _., . ' .. ~

' . -,1,·i,.;_-_J/

- ' - / .;,.._

....... . ·, I -

\ .. ' : ~ ._ ,·; .-J . ~ :.

...... J ':, - ' -- i .\

ACTION REQUIRED __________________________ _

F .l'r. Alligood 11. Bowling J-:-fastwea&­VEPCO Proj. Engr.

G.~ H.W. Durk±n--0, A Piccione

-B-:-Sbefwooe ~wn_

,) File Job Book All Participants

-"" ; ~ "."'.. C.i·cr :· '.l 1-:,. ---r·:·;,·.:._.

(_ ', I.) ,)•~ • .) ',I.J l '1 Z:, ..........

Proj. Engr. Concurrence ---------(required for any changes

scope or schedule)

- - GENERAL OFFICES • RICHMOND, VIRGINIA

--·-r

L

~~, INC. 1GCO FC~ST AVE. RIO?C-i:>1 VA. :?3229

SUBJECT TO CONDITIONS SPECIFIED BELOW

PER QUOTATION ~OUNT flillO. • EQU1$1 Tl ON lltO. WATE•IAI.. ... Q ... lllll.C •j1110M1SCC

SHIP TO

ORCER NO, 6 39306

OUR PURCHASE ORDER NO. AND REQUISITION NO. MUST APPEAR ON ALL INVOICES, SHIPPING PAPERS. PACK· AGES. AND CORRESPOND­ENCES.

VIRGINIA ELECTRIC AND POWER COMPANY

1 AT

.J

~ PO&R STATICN (SEE BEl..O..)

BILL TO VIRGINIA ELECTRIC AND POWER COMPANY

RICHMOND. VA. 23261

DAT!

ZST/?

--

,70Ns _____ euNOL.ES, _____ ~OXES _____ CRATES _____ esi..s. _________________ _

;:..OAD CAR NO. WEIGHT PRO, OR FREIGHT BILL NO,

:,!"\CEL POST 'R~. :At. D~L.

TRANSPORTATIO:~ INFOP.MATIOr~

0 PRcPAID CHARGES $----------------­\ 0 COLLECT CHARGES S-----------------:-

( -----,N""A.,..M..,.,.E""'O""F....,,,c;""'A..,.R"'R""J,..E""R-------- CHARGED TO--------------------)

·'"'TE RECEIVED------------------­

;,Ec;oRO .11\l..L P.ARTIAL SHIPMENTS ON RF.VERSE SILJE OF NO, 3 COPY OF THIS ORDER. RECEIVED ev __________________ _

~·t".:-,11111·• -":"-~•~T

i ..

,. ll

i; ;,

!· ;· I ;

; I·

i. '.

1 ·

I· I i i.

j; I ·,.

; ' '

- ...t.,a,-.•. ....... ~

I

t t

VIRGINIA ELECTRIC AND POWER COMPANY

39306 , ORDER NO. _____ _

1 PACE NO.

~ i U'J,,.;;flTY ' U~'IT I_ Vt:t-'t.;U • U:S:IT '"·.1. REOU:RC1) ·• STOCK NO. OCSC~l?TiON pri,c:: --------------'--~ ---- ---------------------~~-• ..... "-----'-4__ ~----------)~_: Diffcrc::ti.:cl __ C.:i2_~cit~ncc_/\bsolutc rres~urc ____

1

~_9-~95~.

__ ! -------+--..fu_-S=--"~~~r.ans::·,i.t t.~.1-_s, _Re sc:;::)l)n t_J._ri~_,_, _ _l-(9_d_ QLJ;g_,____ _ ! _I ~- 1

115V.P7t,?.2PB_(:·l.:irJ.-. -~o~. __ PT-L'.-1101A/3_l 201.A,B)__ ~----

11 I II I I

____

1

__ ,2-t ~ : DifJ_g_re_ntL:i_l_C_?J?i:,!CHJ.~1.c.9_1,_~y-~1_ Tr..:ins::,i_t_ter.s ,_ _

1

$_'J_GC_J __

-- 1 1--~: : Rosc::~o'..mt... Inc ......... Hd1.:L~:o_L_.ll.5..2.ULiA2_'.;.I:D_{Ucn.·J;_--! ··----~· ___ _

_ _j__ J_I LE"1 ~:;s. LTc(:)'109_,_ 200) _ . I 1-----___ j_ I J.1:.,,ns~i.tt_e1:!'\ .. !:h_f1_ll _ _ti_<; __ u~I_!=J:i.~ _ __r_g_q .. )it:.cJ!1_\:!.!.U:s ,...' ____ I _______ _

1 I : $_pcrificd in tlds rcrulisitJon nncl tc:ihul.n_tcd on! 1 ..... · ___ _ J I

"n,cc. ·

.- - . ,. ..,_ ~-- ·------- ----· ~ PAGE 7

rw,i-,-:D:-v-,:-.::,~, ... :,.:-,--:,:,-o"'c"'•--T----------------------------T'-----r...:.;...:_ ___ _ t ,; . .., atc.v••lD • .., •• ,. ,,.~ •• ~TION •r .. e& •uic11

I # --t----"t----t-----------------t----+-----...J 1 ·:----t-------+-----~-"' .... :.:·"1.:..,~ .. ;.:-;..;'.;,;.~ ! · -~ ..... ., l J h,. car",-., c o(' c: <1"1 i·-; n· · cv.:­, f , ----.i-----·-r-----...J.-c-~·-~-:::;.:..;.o:-~ - -l ., r t 'h" •·oJ, ,..,..; r: s .... "'; c""'+----i-----+-------.J

l ,.,., ... 11 • \, . .- ...

1------;------"t-------+--~,~~a:=::~::::"b,~rl~:!::;:..i!~;-r.c~~=~~j:J~..J-=·~n~~~:-----0----------,-----~ i , ir:~"' ... , t '.:..:.,_:-.!,r>;_ ________ .4 -S-__:,1~:::'..::0::_...;..-;:-______ -+-----+-------...J

.... ______ -l

r-----t------+-----4--/1:..~---1P:..· ri:.·;.:.·.;.; .. ..;; .. :..· -~·.:.:·"~--------''~'i.t.:;""'~·-Q.C' .. r--'-.c~ ....... .,,.;~.::C-----+-----+------.J

I

U, : 1: • ; ... ·---------__.t:;..,Q'-1..-t--. ~~ -----+-----+--------.: 2 ., '" , r, ,..:-,,.:i,,:

-----1------l------

1

1 I

I

-i i I I

I !

i I i

I

I ----.

t

J-----+------+-------l!-~ll~o~-~·-:::;:~.::::-";..,~_.:..;n~-; ':!"-~'.:~: j .Li:-;:: ..• ------------+-------1~-------1 ., 'T',- , -,i:.o'li' i-----,---------1-------~-1.--.~µ~l.1.ll.:.e _______ __,_._ _____ ...,.. __________ _,1------

!~ r---'-. --------1:-------"'--~"--.i:..l-P,.:c"'.::-~'-i:"'l.:' -::.c ... ~---------~! ... + ""'"I "-.h ,,.. ... .; ,.. (",: 'i-­~, i------1------~----____ L...... •. P.:i~i . .:.. 'h ~r:

3. Hu;:-.i cl i.!;'_: ____________ ,"'_..:O'"'O.....:n·"'!'C ~~ t

6 ·-~--~---~5~~~--1 .... n - .. ~~

(40 yr c.ose)

t-----:1--------4-------/.--.C:.:Zt)'-:.I"!::.· ·5.! "''"U'1J.: ,-::.c,..~.,.~.-~"~~ ,!~~~:..;•:,i1,lj..!"'l:· ~ ~ .,..t e f"'\ ~' + ""',,. + T"!l 'r'\ "",-..; • .a c "'!"" r ... .

I ..._ ____ 4-_____ _

\,"ill bf! r>:,~oscd to, r."'ld r.:rn.11 br:: ca:on'ble of.

,_..; p, ... ,, ,,,.d ",.. t hU~j{i r. ~.-.. r-n .... ~ .. "-·-·--... r> ... • r,...· ... ~: ... ;·...,:_, ... c ... '"'=-· t ... _-+ _____ ,. ______ _ I I

........ ; ... "".., ... "'"""' ... ,....,. ,n ,..~,.,.+,e,,:: i I

I I I I

I . , ,..__---;-------+-------~----"~.e.c-·-:..:-::.·o.;-.. :..:"..;"..,0 ::"'~:=--·i.:-;.'..;;• .. r:;;.~ :.n~., ... Ci.....;;·-.; ... , ,f, r, ~ T) -..a::;1.;:"l;...~'-.---~--1------..... ------

I

! i 1 ----+-----:-l------.t-----l"L-.::-'i:,=-:· !':s,-rc o,. ~ 2. 5 :-'~" : I

!----t-----~----J----------·--------------:-----+------ : :

'T',-q,., .,,,... i + + ,.. - ~ ~ ... .,, 1 h C CI".. '.:'r· .._ .. _, r._•_. ~--,,_.....,""f'__.r._•...._ ,.,.., __ .. ....__;...;. ..,,.._,:::;o .... ~._-4-____ ~-------- !

l

- r--jt-------f------~~.c-~-·~ --::.:·.,:i.;·:.;.~.(-;i.' -Q...~· ;:...::,.: ... :.!;''~"'O..' ,ll-,..:"C.'O.: A-= .. :::.· 1l-JrlJ,l:!T"IJ:f':J:"r'!"~~.J i'JT1l"':.....:i!.;..,::l'.lli"~:.!"'--l------.J--------_; f .• . .

nr-tinro :::im'.ll tn:1~,ius1 v \.-1th tr.c Ooe:r~ti n."" .....,,,-=..:..::= .... --;.-----4-------·-

'D - '"i. ':' ar"' 1:,::., ~ 1·c ( Q':1":') rc_.; .. ~ .. o ..... :i ... c __ J ...... o .. a,...a~:i ... n..,::~ .. ---~------..-------. ------1 ______ ......., ____ _.... ______________________ ...r._ ___ ..J... ____ _

t r f 1

' I

i

I

- ----- - ··-----;--.:1.ICTITY sTOCIC

01/lll[D Wt.>Kbtlll

--

-

I j

I

J---

i I

I

I

-

.

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SECTION #3

QUALIFICATION REPORTS

NUS CORPORA,101'-J

---

ROSEMOUNT REPORT NO. 117415, REV. B

· DATED SEPTEMBER 24, 1975

(REFERENCE NO. 6)

Page 3a

e

NO. 117415, REV. B

.BER 24, 1975

.E NO. 6)

Page 3a

... '

·e

e

lvri tten by

Approved by

Approved by

Approved by

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Rosemount

ROSEMOUNT INC., POST OFFICE BOX 35129 / MINNEAPOLIS MINNESOTA ~5435 i TEL. f612) 941·5~60

TWX: 910-576-3103. TELEX 2S·0183

QUALIFICATION TESTS FOR ROSEMOUNT

PRESSURE TRANSMITTER MODEL 1152

RMT Report No. 117415 Rev. 8

~~ /(.:~z(2 Date r::1.Lt.2f7s I I

D~i gn En,.cZg Date cq~ Z. 3, /'f'?S-. 1,,J' ~ .:,,..(

Project Engineer ;,

,J.-A. -~ Date Engineering Supervisor

~~ -2.L/., L!J..75-~ ,

Qzc.rQQ,un.;~~-,1 Date .5t. _,, :t'-: ~ c- 19z~ .. _ , .,. - 1-,

v ""Qua l ~ranc.e' J ,

Form No. 15215A

REVISION STATUS

Para- EngT QC Rev. Page graph Change Description App App Date

A Recollated Appendix, Delete Report 2758 1! /, 417, add summary page 37, add page 38 to .,.-...,..-

~}~,-J Y.->-r-Appendix; Change para. 4. l , 5.5.2; LL reference and spec. deleted.

B l Changed reference date of IEEE 323 I .. ·~. ,) 9#

10/., /_, 1i:.,.,,o, i.D

to 1971.

--

TABLE OF CONTENTS , .•

SECTION TITLE PAGE --1.0 SCOPE l

2.0 INTRODUCTION l

3.0 REFERENCE DOCUMENTS l

4.0 TEST PROGRAM 2 4. 1 Performance Criteria 2

5.0 QUALIFICATION TEST 3 5.1 Test Sequence 3 5.2 Aging 3

5.3 Radiation 5 5.4 Seismic Vibration Test 6

,,-- 5.5 Steam Pressure 9 ,e 6.0 CONCLUSION 11

7.0 .APPENDIX I 12 7. 1 · Radiation Graph 13 7.2 Seis~ic Vibration Data 14

7.3 Steam-Pressure Data 24 7.4 Equipment Lists 28

8.0 APPENDIX II 30

8. 1 Pressure Transmitter Specification Drawings 31 8.2 Report 2758 Summarized 37

8.3 Report 127516 Summarized 38

-e 1.0 SCOPE·

QUALIFICATION TESTS FOR ROSEMOUNT

PRESSURE TRANSMITTER MODEL 1152

RMT Report No. 117145

The objective of this document is to verify performance of Rosemount Model 1152 pressure transmitter under normal operating conditions; during and after radiation exposure, seismic events and a loss-of-coolant accident (LOCA).

The unit was subjected to a series of independent tests in accordance with IEEE 323 (1971) and IEEE 344 (1975), which includes aging, radiation, seismic

vibration and steam-pressure tests. Performance of the transmitter durina the

test program is described in Section 4.1.

2.0 INTRODUCTION The 1152 differential pressure transmitter is intended for use in

nuclear power stations and other applications where stringent quality control of pressure retaining material and cleanliness are necessary to insure high reliability over an extended service life. Typical applications for the pressure transmitters are where equipment failure can result in the release of radioactive materials. (See specification drawings in Appendix IO.

This report covers procedures, testing and results for exposure to radiation, seismic vibration and steam-pressure conditions performed on a test unit, Model 11520PijA22, serial number 090.

Qualification testing of the 1152 pressure transmitter, serial number

090, began on January 13, 1975, and was completed on April 9, 1975.

3.0 REFERENCE DOCUMENTS

3.1 IEEE 323 (1971) - IEEE Standard for Qualifying Class IE Equipment for Nuclear Power Generating Stations.

3.2 IEEE 344 (1975) - IEEE Recommended practices for Seismic Qualification of Class IE Equipment for Nuclear Power Generating Stations.

-1-

e

3.3 Rosemount Report 2758 - Seismic Qualification Test for 1151/1152 Pressure Transmitter with Stainless Steel Electronic Housing; by Ismail Ismail

3.4 1152DP specification drawing for differential pressure transmitters. 1152AP specification drawing for absolute pressure transmitters. 1152HP specification drawing for high line pressure transmitters 1152 GP specification drawing for gage pressure transmitters.

4.0 TEST PROGRAM

The test unit was first subjected to thermal aging followed by radiation exposure of 5.0 x 106 Rads total integrated dose of gamma radiation. The unit was recalibrated and then subjected to seismic vibration in each of the three major axes

independently, while it was pressurized at 60% of full scale. Vibration testing was performed with and without the mounting bracket at the .3 11 double amplitude or 3g level, over a frequency range of 5-100 Hz. Finally, the unit was subjected to sequential pressures of 60 psig, 350°F, dry heat environment for 10 minutes; 70 psig 316°F, saturated steam environment for 1 hour; 55.4 psig, 303°F, saturated steam environment for 7 hours; and 6 psig, 230°F, saturated steam environment for 42 hours.

· Calibration data was recorded before, durin~ and after each major portion of the qualification tests.

4.1 PERFORMANCE.CRITERIA

The 1152 pressure transmitter performed to within 2.0% accuracy after being subjected to 5 x 106 Rads total integrated dose of gamma radiation. The accuracy after recalibration was within:!: 0.25% of the span. Additionally, the transmitter remained operable, within the specified accuracy of +0.25%, during and after a seismic disturbance in each of the three major axes at the .3 11 double amplitude or 3g level

over a frequency range of 5-100 Hz, with and ·without the panel mounting bracket.

Finally, the test unit was exposed to a steam-pressure environment. tn cutout drift of 12% of ~p5n occurred during sequential exposure to 60 psig, 350°F for 10 minutes; 70 psig, 316°F for 1 hour; 55.4 psig, 303°F for 7 hours; and 6 psig 230°F for 42 hours. These temperatures are far in excess of the normal operating limit of the model 1152 (200 Degrees F) so no performance limit was set. Data was taken during the simulated accident temperatures for information only, and are proffered in Figure 6.

RMT Report 117415 -2-

After exposure to the steam-pressure environment, the unit perfonned within an ~ accuracy better than 1/2% Full Scale.

5.0 QUALIFICATION TEST Type testing of the actual equipment using simulated service conditions

is the preferred method of the IEEE standards and the procedure used for qualifi­cation requirements of the Rosemount Model 1152 pressure transmitters. Qualification is satisfied if the equipment to be tested is aged, subjected to environmental in­

fluences, and operated under post-event conditions to provide assurance that all such equipment will be able to perform their intended function for the required

operating time. The type test for qualification of the 1152 was a planned sequence of

test conditions that met or exceeded the expected or specified service conditions

and took into account both normal and abnormal operation.

5.1 TEST SEQUENCE The test unit was subjected to the following sequence of tests:

Thermal Aging (Section 5.2) Radiation Exposure (Section 5.3) Seismic Vibration (Section 5.4) Steam-pressure Environment (Section 5.5)

5.2 AGING The transmitter was subjected to two complete thermal cycles from

100-0-200-100°F, both as a preliminary aging and as an initial bench mark to compare with all future test data.

5.2.1 Test Procedure The aging test was performed on the transmitter at Rosemount Inc., Mpls.

The transmitter was subjected to two complete temperature cycles of 100°F, 0°F, 200°F and l00°F. All temperatures were sustained for a minimum of one hour before readings were recorded to assure ·that the transmitter was stabilized at that temperature.

RMT Report 117415 -3-

·e 5.2.2 Test Data Table 1: 1st Calibration Data for Aging

(Duration of the test was approximately 8 hours) % Full Temeerature Scale 100°F 0°F 200°F 100°F

b 1. 997 2.003 1.984 · 1. 992 20 3.590 3.616 3.557 3.585 40 5. 185 5.222 5. 131 5. 180 60 6.784 6.828 6.717 6. 778 80 8.365 8.421 8. 281 8.360

100 9.985 10.044 9.882 9.978 Span 7.988 8.041 7.898 7.986

Table 2: Calibration Check Between Aging Cycles (at 75°F)

% Full Scale

!:,e Output 0% 20% 40% 60% 80% 100% Voltage (VDC) 2.001 3.598 5. 195 6. 795 8.380 10.001

Table 3: 2nd Calibration Data for Aging (Duration of the test was approximately 8 hours)

% Full Temperature Scale 100°F 0°F 200°F 100°F

0 2.000 2.014 . 2. 000 2.005 20 3.592 3.622 3.570 3. 596 40 5. 185 5. 231 5.142 5. 190 60 6.783 6.835 6. 725 6.789 80 8.364 8.425 8.287 8.370

100 9.984 10.050 9.889 9.990 Span 7.984 8.036 7 .889 7.985

RMT Report 117415 -4-

--

~---

.a

5.2.3 Discussion of Aging Results The transmitter exhibited no significant change at any temperature and

performed satisfactorily within the specification limit during and following approxi­mately sixteen hours of thermal aging.

5.3 RADIATION Radiation testing was perfonned at Isomedix Inc. to find the effects of

5.0 x 106 Rads total integrated dose of gamma radiation on the performance of the

1152 pressure transmitter.

5.3.1 Pre-test

Table 4: Calibration Data Recorded at Isomedix Inc. Before Exposure to Radiation (Room Temperature-in Radiation Cell, 70°F)

Cl Full Scale 1152 Output (VDC) /C

0 2.003 25 3.99'2 50 5.991 75 7.970

100 9.990 Span 7.987

5.3.2 Test Procedure The test unit was exposed to radiation from cobalt 60, a source of gamma

rays. Dose rate was 1.0 x 106 Rads per hour for five hours with data recorded every

hour during radiation exposure. The test was performed in a radiation chamber, in air at ambient temperature (70°F) and a slight negative pressure (1/4 11 water).

Table 5: Data Recorded During Radiation Test at Isomedix Of Full Hours of Exeosure IO

Scale 1 2 3 4 5

0 1. 941 1.930 1. 930 l. 932 1. 936 25 3.926 3.918 3.917 3.920 3.925 50 5.930 5.920 5.920 5.925 5. 931 75 7. 911 7.900 7.905 7.909 7.914

100 9.934 9.924 9.927 9.933 9.937

Span 7.993 7.994 7.997 8.001 8. 001

RMT Report 117415 -5-

e

·e

5.3.3 Post-test Table 6: Calibration Data after Return to Rosemount following

the Radiation Test 0/ Full Temoer:§J:grg_ lo

Scale 100°F 0°F 200°F 100°F 0. 1 . 916 1. 927 1.944 1 .. 943

20 3. 512 3.540 3.515 3.535 40 5.109 5. 152 5.090 5. 132 60 6.710 6.760 6.675 6.731 80 8.295 8.355 8.240 8.314

100 9.918 9.985 9.843 9.933 Span 8.002 8.058 7.899 7.990

5.3.4 Discussion of Radiation Exeosure Results The test unit received a total of 5 x 106 Rads total integrated dose of

gamma radia.tion over a period of five. hours. Maximum changes in output, before (Table 3) after (Table 6) and during (Table 5) radiation exposure are as follows:

Pre to Post During Zero Pressure Shift -84mv (1.05%) -7 3mv ( 0. 9~;) max.

Span Shift +18mv (0.23%) +14mv (0.2~) max.

Linearity +lmv (0.01%) -3mv (0.04~0 max.

(0°F-200°F) Zero Temp Coefficient +31mv (0.4%)

( 0° F-200° F) Span Temp Coefficient - 1 2mv ( 0. 15%)

From the results, we see that the maximum change was zero shift of 1.05%

of full scale. This shift is within the performance specification of the trans­mitter, (See Appendix II). N~xt, the transmitter was recalibrated to the original output accuracy with the span and zero adjustments provided on the Model 1152.

This allows for easy maintenance during the projected operating life (40 years) of the transmitter.

5.4 SEISMIC TEST

Seismic vibration was performed at Rosemount Inc., Mpls., to simulate an earthquake disturbance .. A frequency range of 5-14 Hz ~,as covered at .3" D.A. level and 14-100 Hz at the 3 g level. The test was performed in three major axes independently; vertical, horizontal and 90° to horizontal, mounted with and without the panel bracket. (See Drawing #1 "Three Axes Orientation and Panel Mounting Bracket").

RMT Report 117415 -6-

-

·-

e

5. 4.1 Pre-test Table 7: Calibration after Radiation and Recalibration

(Taken at Room Temperature) % Full Scale

0% 20% 40% 60% 80% 100% Output Voltage up scale 1. 999 3.596 5. 195 6.796 8.381 9.997 (VDC) down scale 2.000 3.597 5. 196 6.798 8.383

5.4.2 Test Procedure The same transmitter tested previously in radiation was subjected to

seismic vibration. The unit was pressurized at 60% of full scale (90 inches H20) during vibration and a resonant search over a frequency range of 5-14Hz was performed

at a .3" input and 14-100 Hz at 3 g level. (Frequencies lower than 5 Hz were not covered because of the testing machine capability.) .A dwell for a period of 30 seconds was performed at each resonant point. If no resonance was found, then dwelling was

done at frequencies of 10, 20 and 30 Hz. Table 8: Hard Mount - No mounting bracket (see Figure 1 in .A.ppendix I ) .

Double Frequency Dwell Amplitude Output

Axis (Hz) (Sec) or G Level (VDC) Graeh Vertical 10 30 ,311 6.798 #1

20 30 3g 6.797 #1

30 30 3g 6.798 #1

Horizontal 10 30 . 311 6.845 #2

20 30 3g 6.845 #2 30 30 3g 6.845 #2

90° To 10 30 . 311 6.795 #3 Horizontal 20 30 3g 6.795 #3

30 30 3g 6.795 #3

RMT Report 117415 -7-

-· e Table 9: Transmitter Mounted with Panel Bracket (See Figure 2, 3 and 4

in Appendix I )

Resonance Double Frequency Dwell Amplitude or Output

Axis (Hz) (Sec) G Level {VDC} Gra12h

Vertical 68 30 3g

Horizontal 78 30 3g 24 30 3g

90° to 69 30 3g Horizontal 61 30 3g (outside 22 30 3g bracket)

90° to. 52 30 3g Horizontal 26 30 3g (inside bracket)

(refer to pictures and graphs in Appendix I ) * Statii head effect

5.4.3 Post-test

6.797

6.747 *

6.749 *

6.797 6.797

6.797

6.797 6.797

Table 10: Calibration at Room Temperature After Vibration % Full Scale

0% Output

Voltage up scale 1.999 (VDC) down· scale 2.001

20%

3.595

3.597

5.4.4 Discussion of Seismic Vibration Results

40%

5. 196 5.202

60%

6.801 6.802

80%

8.385 8.388

#4

JI'" 1T:,

#5

#6 #6

#6

#7 #7

100~

10.000

There was no resonance at any frequency in the range of 5-100 Hz at the .3 11 double amplitude or 3g level when the transmitter was hard mounted (no mounting bracket) in the vertical, horizontal and 90° to the horizontal positions.

On the other hand, there was resonance when the panel mounting bracket was used in the positions mentioned above. All resonances were dwe11ed at for 30 seconds with no significant change in the transmitter readings. Strip chart records demon­strated that there was no shift during seismic vibration and the data in Tables 7 and 10 shows there was a negligible calibration change from before to after seismic testing.

RMT Report 117415 -8-

The 92 option (stainless steel electronics housing rather than aluminum) was ... vibration tested as documented in RMT Report 2758 and ~mmarized in Appendix II. Subse­

quent to this Qualification Report, A random multi-frequency test was successfully conducted at Wyle Laboratories on a different 1152 test unit. One is referred to RMT Report 127516 for details of this testing; a brief surrunary appears in Appendix n.

5.5 STEAM PRESSURE

Steam pressure testing was performed at Rosemount, Inc., Minneapolis. The test

demonstrated that the test unit is capable of operating in the steam pressure environment

of a simulated loss-of-coolant accident and will continue to operate in the post accident period.

5.5.l

·e 5.5.2

Pre-test Table II: Calibrati6n Check (unit installed in steam chamber)

0%

Output Voltage up scale 1.998

(VDC) down scale · 2.002

Test Procedure

Before Steam-Pressure Test

% Full Scale

2M 4M 6M BM

3.598 3.599

5 .198

5.199

'6. 798

6.800

8.384

8.385

l 00%

l O. 001

Tested the same transmitter that was exposed to radjation and seismic tests. The transmitter was installed in a steam autoclave with a pressure input line connected

to the high side of the 1152 and the low side vented to the outside atmosphere. (Refer

to Figure 5 in the App-2ndi x I . The electrical wiring was connected to the signal

terminals of the housing and a pressure tight conduit connection from the housing through

the autoclave wall was used to prevent the terminal side from filling with condensed water. The steam generator used can only provide saturated steam. Thus, because of the difti~ulty

in supplying super heated steam at 60 psig, auxiliary heaters and dry air were used to raise the chamber temperature to 350°F in five minutes. The following sequence was then followed:

RMT REPORT 117415

Temperature

350°F 316°F 303°F 230°F

Pressure 60 psig 70 psig 55.4 psig 6 psig

Hold Time 10 minutes

1 hour 7 hours

42 hours

-9-

Steam Environment Dry

Saturated Saturated Saturated

5.5.3

(Refer to Figu~e 6 in Appendix I , 1152 Steam-pressure: Output vs Time).

Table 12: Calibration Check during Steam-pressure Test (at 230°F) (Data was recorded 40.5 hours after the start of the 50 hour steam-pressure test)

Output Voltage

(VDC)

0% 20%

2.101 3.662

% Full Scale 40% 60%

5.220 6.783

80% 100%

8.314 9.782

Post Test Table 13: 1st Calibration Data After Steam-Pressure Test Unit at> 200°F

(5 minutes after test).

Output Voltage

(VDC)

0% 20%

2.117 3.650

% Full Scale 40% 60% 80% 100%

5.220 6.784 8.293 9.872

Table 14: 2nd Calibration Data after Steam-Pressure Test (Data taken after return to room temperature~ 75°F)

% Full Scale

0% Output Voltage up scale 2.041 (VDC) down scale 2.043

20%

3.639 3.640

40%

5.240 5.240

60%

6.843 6.847

80%

8.430 8.431

100%

10. 036

Table JS; 3rd Calibration check after Steam-pressure

% Full Scale

0

20 40 60 80

100 Span

Temperature (°F) Room Temp 100° 0°

2.045 2.047 2.075 3.644 j,642 3.676 5.245 5.238 6.846 6.838 8.431 8.421

10.038 10.026 7.993 7.979

5.276 6.875 8. 461

10.060 7.985

200° 2.060 3.630 5.203 6.788 8.349

100° 2.044 3.639 5.236 6.836 8.418

9.939 10.022 7.879 7.978

RMT Report 117415 I

-10-

.,~

e

\ __

5.5.4 Discussion of Steam-Pressure Test Results Comparison of data before and after steam testing shows an increase·

shift at all pressures. However, the shift was l/2% full scale between the readings on tables 11 and 15 at room temperature.

6.0 CONCLUSION All qualification tests for radiation, seismic vibration, and steam-

pressure were passed by the ll52DP test transmitter. The 1152DP (differential pressure) is representative of the other models of pressure transmitters AP (absolute), GP (gage) and HP (highline) in mechanical and electrical features. The only differences in the varies models is the input (pressure) and output (electrical) relationships. These are primarily calibration differences; not influencing qualification capability.

The output option D differs physically from the A option by a slightly different amplifier printed wire board assembly. The D option amplifier board was tested independently in radiation and has passed the same levels as described in Section 5.3.

Similarly, the 1152 transmitter is mechanically identical to the 1151 model. The 1152 has the requirements of material traceability of pressure retaining parts and the use of non-Teflon wire in its assembly. The 1151 also has DP, AP, GP, HP and pressure transmitters that are qualified by similarity to the 1152 DP test transmitter, except for radiation levels.

RMT Report 117415

-11-

e

7.0 APPENDIX I

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6

7

8

9

10

11

12

13

14

15

16

17

DESCRIPTION

Digital Multimeter

Power Supply

Vacuum Tube Voltmeter

Logarithmic Converter

Vibration System

X-Y Recorder

Resistance Box

Digital Multimeter

Pressure Tester

Signal Cond. Amplifier

Tracking Filter

Charge Amplifier

Fixture

Power Supply

Potentiometer

Triple Beam Balance

Speedomax Recorder-Azar

e· EQUIPMENT LIST

Serial Number

MFGR MODEL RANGE ::,ystron u-10DOVDC; 0-lOOOVAL Donner 7205 0- lOMn; 0- lAmp

___ V.llillAI.l l~J H~T FOIITPt< ENl I ISI Kepco --- 0-40V

HP 001-33143 lmv-300V RMS • UU l to 1 V AL , .UUJlb

HP 561 to 3.16 DC Unholtz Dickie NA 10

HP 806-03398 0-50 V/inch l'.UUn + REC NA soon

Fluke 51412 0-lOOOV DC Mans tl e 1c1 & Green 67818 0-831 11 H?O unno1tz Dickie 340 2Hz to 30KHz Unholtz Dickie 239 5Hz-5KHz Unholtz Dickie 390 20Hz to lOOHz

RMT --- ---S.1£/\M:-P..R[S.SURLE( WPMENT .. USJ

--- --- Set for 30V

L & N 1606954 -11 lOlMV

Cha us None 0-2610 grams

L & N 68-581'1'l-l-1 0-lOOMV

e'

CAUB. FREQ•

ACCURACY (MOS.) ±.02% Rdg; ±1% Rdg ±1% Rdg 3

--- As used

±2% 3

±0.Sdb 6

10 1

0.2% of full scale 6

.01% 12

±.03% of range 3

0.025% 12

±5% 3

±.5DB ±.3%FS 3

10 6

--- ---

--- As used

±.05% 4 I 0-10 gr; -.2 gram I 10-2610 gri ± l gr. 3

I oo) 6

., •. , .......... 1.

;:o 3:: ~

::0 ro -a 0 , r+

~ "U "Cl ro ::, n. ...... X

H

-0 QI

lO 11)

N ·.o

• ITEM DESCRIPTION

18 Recorder

19 Pressure Tester

20 Digital Voltmeter

21 Pressure GaQe 400#

22 Resistance Box

23 Type K Thermocouple

TABLE EQUIPMENT LIST

CAUB. FREQ•

MFGR MODEL RANGE ACCURACY (MOS.)

HP 903A08223 10 10 6 Mans fl e Id & Green 67818 0-831 11 H20 0.025% 12

1J-TOUUV TIC; 1-lUKU ±.Ulto Kdg uc;±.USX,l<dgl1 Fluke 77420 0-300V AC ±1% Rdg AC 3

U.S. GaQe --- 5 to 40011 +5# 12 200 ohms

RMT NA 500 ohms ±.02% 2

--- --- --- --- ---RADIATION EQl IPMENT LIST

Power and P ressure Sourc1 in console built by Ro'. emount.

Power Suppl y set for 30 ' DC.

Load Resist or 500 ohm ( c, librated at 500.08 ohm)

Pressure fr om six inch b ,11 ows.

Calibrated model 1151 DP A24, cell Serial No. 44 39755.

1 , I f ,,~ .I .. ,

8.0 APPENDIX II

RMT Report 117415 -30-

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1 lQ_ o !-\ ... L. ~~ L--~,4 .., '-FLANGES CAN DE IIOTA TE'l .;,:;w 90" CA 1110°

-TABULATION

MOD(l NO DIM A

1152GP:; Z-1111 1152(.P4 2-118

11"17.GP5 z-,,a 1152GP6 2-~16 --,_!.152GP7 2-]/16 ll"l~GPII 2 -114 ,.__ 1152GP9 2-911_2_ 1152 GPO Z-21164

MOIATIN) NC\.(·

All( 1116-lO ~"" • s,eonr.

I DIM.A ......

04774 cl l 152GP r 2 1

i

t I I ;-

...

I ,lo,I

-

SEISMIC TESTING 1151/1152 TRANSMITTER WITH

STAINLESS STEEL ELECTRONIC HOUSING (Summary of Report 2758)

The testing consisted of six separate test configurations: rigidly mounted

t~d panel bracket (PB option) mounted in each of three orthogonal axes. The

manner of test was to perform sinusoidal frequency sweeps from 5 - 70 Hz for

each configuration at levels of .5, 1, 3, and 4 g's. These frequency sweeps

were for a duration of approximately 4 minutes each. If resonance was found,

the frequency of maximum resonance was dwelled at for an additional thirty

seconds. Following these series of frequency sweeps, each configuration was

vibrated for 2 minutes at 10 Hz and 4 g's for fragility investigation.

During the frequency sweeps at various g-levels the test specimen demonstrated

sufficient integrity to withstand without comprimise of structure or electrical

function the described environment. However, during the 2 minute dwell at 4 g's

in the X-axis configuration (after 4 g/2minute dwell in the Z-axis) a crack

started to show in the panel bracket. Because of this, a fragility limit of

3 g's is established for the transmitter/bracket assembly. In the case of the

panel mounting configuration, resonance was found at 25, 50, and 29 Hertz for

the x, y, and z axis, respectively.

RMT Report 117415 _ 37 _.

RANDOM MULTI-FREQUENCY SEISMIC TESTING (Summary of Report 127516)

Two DP transmitters with aluminum housing were tested by Wyle Laboratories. Each was submitted to two different test series. The first was a biaxial test series and the second v1as a psuedo-biaxial 11 fagility 11 test series. All vibration v,as random multi­frequency input motion. One transmitter was a model 1151 the other was a model 1152; mechanical features of the two are identical for seismic considerations. The test units were powered continuously and were pressurized at approximately 50% full scale.

During the biaxial testing, the test specimens were subjected to horizontal/vertical and

lateral/vertical phase incoherent inputs of random motion; consisting of frequencies spaced one-third octave apart over the frequency range of l Hz to 31 .6 Hz. A ~inimum of five biaxial tests at one-half level followed by a full level test, each of 30 seconds duration, \vas performed in both the horizontal/vertical and lateral/vertical orientations. The full level test exceeded a response spectrum defined by the following, at three per­cent damping: 1 Hz, .5 g; 3 Hz, 1.5 g; 3.5 to 6 Hz, 2.7 g; 10 Hz, lg; 30 Hz, .5 g. Both transmitters were mounted with the Rosemount panel bracket (PB option).

',.Fragility testing was done on a long stroke ,single axis machine inclined 45° to the · horizontal. One transmitter, the model 1151, was mounted using the panel bracket (PB);

the other, model 1152, was rigidly mounted. The specimens were mounted with their longi­tudinal axis parallel to the horizontal and the input motion was inclined at 45° to the horizontal. The specimens were tested in the vertical and first horizontal axis simul­

taneously, and then the fixturing was rotated 90° and the test repeated for the vertical and second horizontal axis. This was repeated until all four principle horizontal direc­tions were tested. Input motion along the 45° inclined axis was analyzed at a 5% damping value. The response spectrum for this table motion exceeds a curve defined by the follow­ing: 3 g, 1 Hz; 15 g, 3 Hz to 40 Hz. Horizontal and vertical components can be determined

by dividing by the square root of 2.

It was demonstrated that models 1151 and 1152 possessed sufficient integrity to withstand, without comprirnise of structures or electrical functions, the described simulated seismic environment. And, although a slight amplification did occur at three Hertz durinc the

biaxial testing, no significant resonance was found below 5 Hertz. This is ~dditionally demonstrated by the fragility test data.

- 38 -

RMT Report 117415

/

SECTION #4

• CONCLUSION SECTION & REFERENCE SECTION &

-NUS CORPORATION

~-

YE-VMS-2 OOC- 1 YE-Vt,'1..S-200C-2 YE-Vtt.iS-2 0 lA-1 Y .E.-VMS - 2 0 1 l-. - 2 YE-VMS-lOlB-1 YE-VMS-lOlB-2

CONCLUSION SECTION

2 273Af~2 0 2273AM20 2273AM20 2273AM20 2273AM20 2273AM20

10.3-13 10.3-14 10.3-15 10.3-16 10.3-17 lU.3-18

The monitoring equipment is currently in the process of being qualified to the requirements of I~E~ 323-1974. The information on the wonrnheets is the levels to which the egu1.pmern:. will. bE: tested. The test report is due by December 31 , 1~ 8 1.

q. Endevco Supplied Cable - Acoustical MOnitoring Equipment

Pla.""lt ID No.

Low Noise Cable

Model

3075.M6

Wcr}~sheet. Paae Nu.

10.3-1~

Tne cable is currently in the process of neing qualified to the requirements of Il:..EE 323-1974. Tne informa.:.ion on the works.tlee"t.. reflects the le:vels to which the eguipment will .De tested. 'I'ne test report is due by December 31, 1981.

5. Rosemount 1nc. - Pressure Transmitters

Pla.""lt ID Nu.

PT-LM- .20 1/l. PT-:-LM-201B

Model

1152AP7A22PB 115LAP7A22PB

Worksheet Page No.

10.3-1 10. 3-:.t:

Transmitters t~st docmnentation is presently being upgraded trom I~Li.. 323-1~71 to I.i:..EE 323-1974.

6. Valcor - Solenoid Operated Valves

Plant ID No. .Model Worxshee:t Paqe No.

TV-.SS-202A V526-5b83-19 10.3-32 TV-SS-202B VS.26-5683-19 10.3-33 TV-SS-20flA V526-5683-19 10.3-34 TV-SS-20bB V526-5683-19 l0.3-35 HCV-SS-201D V526-Sb83-19 10.3-36 HCV-SS-202.P-. V526-5683-19 10.:;-37 HCV-SS-.:tOOA V526-5683-19 10.3-3ts HCV-SS-200.E:i V52b-5b83-19 10.3-39 TV-SS-203A V526-5683-19 10.3-40 TV-SS-203B V526-5683-1Y 10.3-41 S2-XC.."V-24U 11. V526-5683-19 10.3-6:t S2-XCV-2401B V526-5683-19 10 • .3-ti3 S2-XCV-2422A · V5:t6-56i:S3-19 10.3-o .. S2-XC.V-24L2B V52b-5683-19 10.3-b5 TV-GW-200 V5:l6-5695-31 10.3-?6

S2 10.4-2 Supplement 3 April ,, 1~81

-

SECTION 10.5

REFERENCES

1. Automatic switch Co. - Test Report No. AQS21678/TR, Rev. A.

2. Cleveland Development Co. - Qualification of NAMCO Controls Limit Switch Model EA-180 to IEEE Standards 344 (1975), 323 (1974) and 382 (1972), March 3, 1980.

3. Babcock & Wilcox Transmittal 86-.1119091-00.

4. Comsip Delphi Test Report No. 1035-1 dated 12-1980 for Delphi KIII-KIV Hydrogen Analyzer.

5. VALCOR IEEE Qualification Letter SK-10616.

6.

7.

8.

9.

10.

11.

12.

13.

14.

15.

16.

·01_. 18.

Qualification Tests for Rosemount Pressure Transmitter Model 1152, Rosemount Report No. 117415, Rev. B dated September 24, 1975.

VALCOR Qualification Report QR-52600-515, dated

NAMCO Controls Report on switches EA-180 - "Estimation of Qualified Life of Nuclear Switches" Rev. dated April 26, 1979 .

QDR-5437-252-01.

QDR-5437-245-01.

QDR-5437-241-01. f QDR-5437-251-01.