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CONTROLLED COPY EACT,0R COOLANT SYSTEM JET PUMPS LIMITING. CONDITION FOR OPERATION 3.4.1.2 All jet pumps shall be OPERABLE.
CONTROLLED COPY EACT,0R COOLANT SYSTEM JET PUMPS LIMITING. CONDITION FOR OPERATION 3.4.1.2 All jet pumps shall be OPERABLE.
APPLICABILITY:             OPERATIONAL CONDIT104 b and 2.                                                                 l ACTION:
APPLICABILITY:
With one or more jet pumps inone Able. be in alleast_liOT SHUT 00VN withinf 12 hours.                               w;W Thtnh tE Wl o 3 re.h iC, acq 8 MUL
OPERATIONAL CONDIT104 b and 2.
                                                                                ~                                         --
ACTION:
SURVEILLANCEREOUIREMENTS)                                                                -
With one or more jet pumps inone Able. be in alleast_liOT SHUT 00VN withinf 12 hours.
4.4.1.2.1              Eac ode,above required jet putnps shall be demonstrated OPERABLE
w;W Thtnh tE Wl o 3 re.h iC, acq 8 MUL SURVEILLANCEREOUIREMENTS)
              .:prdomta=I11               t=E0WER exceed 4ar$+aHalWMoMAL-Swrn-*n+ at least once per 24 hours by determining recirculhtien loop flow, total cote flow and diffuser-to-lower plenum differential pressure for each jet pump and verifying                                 --          '
~
that no two of operating lat3h,the   ^
Eac ode,above required jet putnps shall be demonstrated OPERABLE 4.4.1.2.1
followi,y ollimiillfow            condii ions en7enlc.xalu       phr- occur when both recirculation
.:prdomta=I11 t=E0WER exceed 4ar$+aHalWMoMAL-Swrn-*n+ at least once per 24 hours by determining recirculhtien loop flow, total cote flow and diffuser-to-lower plenum differential pressure for each jet pump and verifying operating lat3h,the followi,y condii ions occur when both recirculation loop that no two of ollimiillfow en7enlc.xalu phr-
                                                                                                            - - ~ ~ ~
^
(,e n 'il - o g loop L,
- - ~ ~ ~
                                              ,      ~ - ~ .          . . -
~ - ~.
k'                     a.     The indicated recirculation loop flow differs by more than 10% fron.                       T'IC "*-
(,e n 'il - o g L,
the established flow co.itrol valve position-loop flow characteristics                     71gyg     ,
k' a.
for two recirculation loop operation.
The indicated recirculation loop flow differs by more than 10% fron.
l                         b.     The indicated total ccre flow differs by more than 10% from the estab-
T'IC "*-
                        -            iished total core flow value derived from two recirculation loop flow L                                 neasurements,
the established flow co.itrol valve position-loop flow characteristics 71gyg for two recirculation loop operation.
: c.     The indicated diffuser-to-lower plenum differential pressure of any individual jet-pump differs from established two recirculation loop                                 >
l b.
operation patterns by mora than,1,0%. 2o g
The indicated total ccre flow differs by more than 10% from the estab-iished total core flow value derived from two recirculation loop flow L
  -            4.4.1.2.2 During single recirculation loop operation, each of the above re-quired jet pumps shall be demonstrated OPEPABLE at least once per 24 hoursy by                           ._      -- - s
neasurements, c.
[ ;o$$
The indicated diffuser-to-lower plenum differential pressure of any individual jet-pump differs from established two recirculation loop operation patterns by mora than,1,0%. 2o g 4.4.1.2.2 During single recirculation loop operation, each of the above re-quired jet pumps shall be demonstrated OPEPABLE at least once per 24 hours by
I e,,      verifying that no two of the following conditions occur _,:,,g           ,_
-- - s y
TMb[h.I' Ik ' '#I*)
verifying that no two of the following conditions occur _,:,,g TMb[h.I' Ik ' #I*)
74TEd r W row. Tt w E R.                       /
[
l
e,,
  ' won                   'a.       The indicated recirculation loop flow in@the        operating loop differs ~
;o$$
88                             by more than 10% from the estatlished single recirculation flow gg                             control valve position-loop flow characteristics.
The indicated recirculation loop flow in@the operating loop differs ~
  '$$                      b.       The indicated total core flow differs by more than 10% from the estab-L gg                                 lished total core flow value derived from single recirculation loop l u                                   flow measurements.
' /
  .O                                                   ct:ffat.eA l o n:                     c.       The indicated .differenea-to-lover plenum differential pressure of any
74TEd r W row. Tt w E R.
  @@n.                               individual jet pump. differs from established single recirculation loop patterns by more than;10%. ,qoy, k Tk.               p ew tu. v e,   of     spec t(ecd m 'i.O 9           u   Jap%    l M prwided 4,b n      e.*o e d l n e. a  y.. c C., -cd s ; lbN   t r. Li s. Jh      d eceA g 2 5 7, d WASHINGTON NUCLEAR - UNIT 2                     3/4 4-4           'R AT E b 'T t)E R.4 AL 7tsg r ,
I l ' won
'a.
88 by more than 10% from the estatlished single recirculation flow gg control valve position-loop flow characteristics.
b.
The indicated total core flow differs by more than 10% from the estab-L gg lished total core flow value derived from single recirculation loop l u flow measurements.
.O ct:ffat.eA l o n:
c.
The indicated.differenea-to-lover plenum differential pressure of any
@@n.
individual jet pump. differs from established single recirculation loop patterns by more than;10%.,qoy, J a p % M prwided l
k Tk.
p ew tu. v e, of spec t(ecd m
'i.O 9 u
y.. c C., -cd s ; lbN t r.
Li s.
J h d eceA g 2 5 7, d 4,b n e.*o e d l n e.
a WASHINGTON NUCLEAR - UNIT 2 3/4 4-4
'R AT E b 'T t)E R.4 AL 7tsg r,


    ,                                                                                                                INDEX s
INDEX s
LIMITING CONDI'i10NS FOR OPERAl10N AND SURVEILLANCE REQUIREMENTS SECTION                                                                                                                               PAGE 3/4.7 PLANT SYSTEMS 3/4.7.1   SERVICE WATER SYSTEMS Standby Service Water 5ystem.........................                                                                     3/4 7-1 High Pressure Core Spray Service Water System........                                                                     3/4 7*3 Ultimate Heat 5 ink...................................                                                                   3/4 7-4               -
LIMITING CONDI'i10NS FOR OPERAl10N AND SURVEILLANCE REQUIREMENTS SECTION PAGE 3/4.7 PLANT SYSTEMS 3/4.7.1 SERVICE WATER SYSTEMS Standby Service Water 5ystem.........................
3/4.7.2   CONTROL ROOM EMERGENCY TILTRATION SYSTEM. . . . . . . . . . . . .                                                         3/4 7-5
3/4 7-1 High Pressure Core Spray Service Water System........
3/4 7*3 Ultimate Heat 5 ink...................................
3/4 7-4 3/4.7.2 CONTROL ROOM EMERGENCY TILTRATION SYSTEM.............
3/4 7-5
~
~
3/4.7.3   REACTOR CORE ISOLATION COOLING                                                                 SYSTEM................ 3/4 7-8 3/4.7.4   SNUBBER 5.............................                                                               ............... 3/4 7-10 3/4.7.5   SEALED SOURCE CONTAMINATION.... ........... .........                                                                     3/4 7-16 3/4.7.8   AREA TEMPERATURE MONITORING... ......................                                                                     3/4 7-)I IT 3.4.7.9   MAIN TURBINE BYPASS 5YST ''. . . . . . . . . . . . . . . . . . . . . . . . . . .                                           3/4 7,)1 ''o 3/4.8 FLECTRICAL POWER SYSTEMS 3/4.8.1   A.C. SOURCES A.C. Sources -                                                                 Operating.............................     3/4 8-1 A.C. Sources -                                                                 5hutdown..............................     3/4 8-10 i
3/4.7.3 REACTOR CORE ISOLATION COOLING SYSTEM................
3/4.8.2   0.C. SOURCES D.C. Sources -                                                               Operating.............................     3/4 8-11 D. C. Sourc e s - 5hutdown. . . . . . . . . . . . . . . . . . . . . . . . . . . . . .                                     3/4 8-15 i
3/4 7-8 3/4.7.4 SNUBBER5.............................
WASHINGTON NUCLEAR-- UNIT 2                                                                           ix                           Amendment No. 67
3/4 7-10 3/4.7.5 SEALED SOURCE CONTAMINATION........................
3/4 7-16 3/4.7.8 AREA TEMPERATURE MONITORING.........................
3/4 7-)I IT 3.4.7.9 MAIN TURBINE BYPASS 5YST ''...........................
3/4 7,)1
''o 3/4.8 FLECTRICAL POWER SYSTEMS 3/4.8.1 A.C. SOURCES A.C. Sources - Operating.............................
3/4 8-1 A.C. Sources - 5hutdown..............................
3/4 8-10 i
3/4.8.2 0.C. SOURCES D.C. Sources - Operating.............................
3/4 8-11 D. C. Sourc e s - 5hutdown..............................
3/4 8-15 i
WASHINGTON NUCLEAR-- UNIT 2 ix Amendment No. 67


t
CONTROLLED COPY t
    ,                              CONTROLLED COPY ELECTRICAL POWER SYSTEMS 3/4.8.3 ONSITE POWER DISTRIBUTION SYSTEMS OISTRIBUTION - OPERATING LIMITING CONDITION FOR OPERATION 3.8.3.1 The following power distribution systu divisions shall be energized with tie breakers open between redundant buses within the unit:
ELECTRICAL POWER SYSTEMS 3/4.8.3 ONSITE POWER DISTRIBUTION SYSTEMS OISTRIBUTION - OPERATING LIMITING CONDITION FOR OPERATION 3.8.3.1 The following power distribution systu divisions shall be energized with tie breakers open between redundant buses within the unit:
: e. A.C. Power Distribution
e.
: 1. Division 1, consisting of:
A.C. Power Distribution 1.
a)     4160-volt bus SM-7.
Division 1, consisting of:
b)     480-volt bus SL-71 and SL-73.
a) 4160-volt bus SM-7.
c)     480-volt MCC's 7A, 7A-A, 78, 78 A. 78-8, 7F.
b) 480-volt bus SL-71 and SL-73.
d)     480-volt Power Panel PP-7A-B.
c) 480-volt MCC's 7A, 7A-A, 78, 78 A. 78-8, 7F.
e)     120/208-volt 30 Power Panels PP-7A-G, PP-7A-A-A.
d) 480-volt Power Panel PP-7A-B.
f)     120/240-volt la Power Panels PP-7A+A, PP-7A-F, PP-7A-E, and
e) 120/208-volt 30 Power Panels PP-7A-G, PP-7A-A-A.
                          ''-7A.
f) 120/240-volt la Power Panels PP-7A+A, PP-7A-F, PP-7A-E, and
: 2. Division 2, consisting of:
''-7A.
a)     4160-volt bus SM-8.
2.
b)     480-volt bus SL-81 and SL-83.
Division 2, consisting of:
c)     480-volt MCC's 8A, 8A-A, BB, 88-A, BB-B, 8F.
a) 4160-volt bus SM-8.
d)     480-volt Power Panel PP-8A-0.
b) 480-volt bus SL-81 and SL-83.
e)     120/208-volt 30 Power Pancis PP-8A-G, PP-8A-A-A.
c) 480-volt MCC's 8A, 8A-A, BB, 88-A, BB-B, 8F.
f)     120/240-volt 10 Power Panels PP-BA-A, PP-8/.-F, PP-8A-E, and         (
d) 480-volt Power Panel PP-8A-0.
e) 120/208-volt 30 Power Pancis PP-8A-G, PP-8A-A-A.
f) 120/240-volt 10 Power Panels PP-BA-A, PP-8/.-F, PP-8A-E, and
(
PP-BA.
PP-BA.
: 3. 0)rision 3, consisting of:
3.
a)     4160-volt bus SM-4.
0)rision 3, consisting of:
b)     480-volt 30 Engine & Gen. Aux loads Power Panel, c)     120/240-volt 10 Power Panel PP-4A.
a) 4160-volt bus SM-4.
d)     480-volt MCC 4A.
b) 480-volt 30 Engine & Gen. Aux loads Power Panel, c) 120/240-volt 10 Power Panel PP-4A.
: b. 0.C. Power Distribution
d) 480-volt MCC 4A.
: 1. Division 1, consisting af:
b.
a)     125-volt 0.C. Main Distribution Panel $1-1.
0.C. Power Distribution 1.
b)     125-volt VOC Motor control Center MC-51-10.
Division 1, consisting af:
c)     125-VOC Instr. and Control NSSS Bd. Distr. Panel DP-51-1A.
a) 125-volt 0.C. Main Distribution Panel $1-1.
d)     125-VOC r ihA b 1
b) 125-volt VOC Motor control Center MC-51-10.
e ^ Remote Shutdn. Distr. Pnl. OP-51-10.
c) 125-VOC Instr. and Control NSSS Bd. Distr. Panel DP-51-1A.
e)     125-VOC Diesel Gen.1 Dist. Pnl. OP-51-1E.
d) 125-VOC 1
f)     250-VDC Main Distribution Panel 52-1.
ihA b
g)     250-VDC Motor Control Center MC-52-1A, Part A and Part B.
^ Remote Shutdn. Distr. Pnl. OP-51-10.
n)     124-VOCPowgr{ane{OP-50-A.             _
r e
                                                                              ~
e) 125-VOC Diesel Gen.1 Dist. Pnl. OP-51-1E.
: 2. Divihob2f c$nsistin[of:                     *            '
f) 250-VDC Main Distribution Panel 52-1.
a)     125-volt 0.C. Main Distribution Panel S1-2.
g) 250-VDC Motor Control Center MC-52-1A, Part A and Part B.
b)     125-volt YOC Motor Control Center MC-51-20.
n) 124-VOCPowgr{ane{OP-50-A.
c)     125-VOC Instr. and Control NSSS Distr. Panel DP-51-2A.             ~7 d)     125-VOC Critical Swgs. & Remote Shuton Distr. Pnl. OP-51-?0.       ., f e)     125-VOC Diesel Gen. 2 Dist. Pnl. OP-51-2E.
Divihob2f c$nsistin[of:
f)     :::24-VOC Power Panel DP-50-B.
2.
: 3. Division 3, consisting of 125 volt 0.C. HPC5 distritution pansl.           g WASHINGTON NUCLEAR - UNIT 2                   3/4 9-16
~
                                                                                                  -}}
a) 125-volt 0.C. Main Distribution Panel S1-2.
b) 125-volt YOC Motor Control Center MC-51-20.
c) 125-VOC Instr. and Control NSSS Distr. Panel DP-51-2A.
~7 d) 125-VOC Critical Swgs. & Remote Shuton Distr. Pnl. OP-51-?0.
., f e) 125-VOC Diesel Gen. 2 Dist. Pnl. OP-51-2E.
f)
:::24-VOC Power Panel DP-50-B.
3.
Division 3, consisting of 125 volt 0.C. HPC5 distritution pansl.
g WASHINGTON NUCLEAR - UNIT 2 3/4 9-16
-}}

Latest revision as of 12:14, 13 December 2024

Proposed Tech Spec Surveillance Requirement 4.4.1.2.1 Re Jet Pump Operability
ML20091K319
Person / Time
Site: Columbia Energy Northwest icon.png
Issue date: 01/14/1992
From:
WASHINGTON PUBLIC POWER SUPPLY SYSTEM
To:
Shared Package
ML17289A267 List:
References
NUDOCS 9201240105
Download: ML20091K319 (3)


Text

.

CONTROLLED COPY EACT,0R COOLANT SYSTEM JET PUMPS LIMITING. CONDITION FOR OPERATION 3.4.1.2 All jet pumps shall be OPERABLE.

APPLICABILITY:

OPERATIONAL CONDIT104 b and 2.

ACTION:

With one or more jet pumps inone Able. be in alleast_liOT SHUT 00VN withinf 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br />.

w;W Thtnh tE Wl o 3 re.h iC, acq 8 MUL SURVEILLANCEREOUIREMENTS)

~

Eac ode,above required jet putnps shall be demonstrated OPERABLE 4.4.1.2.1

.:prdomta=I11 t=E0WER exceed 4ar$+aHalWMoMAL-Swrn-*n+ at least once per 24 hours2.777778e-4 days <br />0.00667 hours <br />3.968254e-5 weeks <br />9.132e-6 months <br /> by determining recirculhtien loop flow, total cote flow and diffuser-to-lower plenum differential pressure for each jet pump and verifying operating lat3h,the followi,y condii ions occur when both recirculation loop that no two of ollimiillfow en7enlc.xalu phr-

^

- - ~ ~ ~

~ - ~.

(,e n 'il - o g L,

k' a.

The indicated recirculation loop flow differs by more than 10% fron.

T'IC "*-

the established flow co.itrol valve position-loop flow characteristics 71gyg for two recirculation loop operation.

l b.

The indicated total ccre flow differs by more than 10% from the estab-iished total core flow value derived from two recirculation loop flow L

neasurements, c.

The indicated diffuser-to-lower plenum differential pressure of any individual jet-pump differs from established two recirculation loop operation patterns by mora than,1,0%. 2o g 4.4.1.2.2 During single recirculation loop operation, each of the above re-quired jet pumps shall be demonstrated OPEPABLE at least once per 24 hours2.777778e-4 days <br />0.00667 hours <br />3.968254e-5 weeks <br />9.132e-6 months <br /> by

-- - s y

verifying that no two of the following conditions occur _,:,,g TMb[h.I' Ik ' #I*)

[

e,,

o$$

The indicated recirculation loop flow in@the operating loop differs ~

' /

74TEd r W row. Tt w E R.

I l ' won

'a.

88 by more than 10% from the estatlished single recirculation flow gg control valve position-loop flow characteristics.

b.

The indicated total core flow differs by more than 10% from the estab-L gg lished total core flow value derived from single recirculation loop l u flow measurements.

.O ct:ffat.eA l o n:

c.

The indicated.differenea-to-lover plenum differential pressure of any

@@n.

individual jet pump. differs from established single recirculation loop patterns by more than;10%.,qoy, J a p % M prwided l

k Tk.

p ew tu. v e, of spec t(ecd m

'i.O 9 u

y.. c C., -cd s ; lbN t r.

Li s.

J h d eceA g 2 5 7, d 4,b n e.*o e d l n e.

a WASHINGTON NUCLEAR - UNIT 2 3/4 4-4

'R AT E b 'T t)E R.4 AL 7tsg r,

INDEX s

LIMITING CONDI'i10NS FOR OPERAl10N AND SURVEILLANCE REQUIREMENTS SECTION PAGE 3/4.7 PLANT SYSTEMS 3/4.7.1 SERVICE WATER SYSTEMS Standby Service Water 5ystem.........................

3/4 7-1 High Pressure Core Spray Service Water System........

3/4 7*3 Ultimate Heat 5 ink...................................

3/4 7-4 3/4.7.2 CONTROL ROOM EMERGENCY TILTRATION SYSTEM.............

3/4 7-5

~

3/4.7.3 REACTOR CORE ISOLATION COOLING SYSTEM................

3/4 7-8 3/4.7.4 SNUBBER5.............................

3/4 7-10 3/4.7.5 SEALED SOURCE CONTAMINATION........................

3/4 7-16 3/4.7.8 AREA TEMPERATURE MONITORING.........................

3/4 7-)I IT 3.4.7.9 MAIN TURBINE BYPASS 5YST ...........................

3/4 7,)1

o 3/4.8 FLECTRICAL POWER SYSTEMS 3/4.8.1 A.C. SOURCES A.C. Sources - Operating.............................

3/4 8-1 A.C. Sources - 5hutdown..............................

3/4 8-10 i

3/4.8.2 0.C. SOURCES D.C. Sources - Operating.............................

3/4 8-11 D. C. Sourc e s - 5hutdown..............................

3/4 8-15 i

WASHINGTON NUCLEAR-- UNIT 2 ix Amendment No. 67

CONTROLLED COPY t

ELECTRICAL POWER SYSTEMS 3/4.8.3 ONSITE POWER DISTRIBUTION SYSTEMS OISTRIBUTION - OPERATING LIMITING CONDITION FOR OPERATION 3.8.3.1 The following power distribution systu divisions shall be energized with tie breakers open between redundant buses within the unit:

e.

A.C. Power Distribution 1.

Division 1, consisting of:

a) 4160-volt bus SM-7.

b) 480-volt bus SL-71 and SL-73.

c) 480-volt MCC's 7A, 7A-A, 78, 78 A. 78-8, 7F.

d) 480-volt Power Panel PP-7A-B.

e) 120/208-volt 30 Power Panels PP-7A-G, PP-7A-A-A.

f) 120/240-volt la Power Panels PP-7A+A, PP-7A-F, PP-7A-E, and

-7A.

2.

Division 2, consisting of:

a) 4160-volt bus SM-8.

b) 480-volt bus SL-81 and SL-83.

c) 480-volt MCC's 8A, 8A-A, BB, 88-A, BB-B, 8F.

d) 480-volt Power Panel PP-8A-0.

e) 120/208-volt 30 Power Pancis PP-8A-G, PP-8A-A-A.

f) 120/240-volt 10 Power Panels PP-BA-A, PP-8/.-F, PP-8A-E, and

(

PP-BA.

3.

0)rision 3, consisting of:

a) 4160-volt bus SM-4.

b) 480-volt 30 Engine & Gen. Aux loads Power Panel, c) 120/240-volt 10 Power Panel PP-4A.

d) 480-volt MCC 4A.

b.

0.C. Power Distribution 1.

Division 1, consisting af:

a) 125-volt 0.C. Main Distribution Panel $1-1.

b) 125-volt VOC Motor control Center MC-51-10.

c) 125-VOC Instr. and Control NSSS Bd. Distr. Panel DP-51-1A.

d) 125-VOC 1

ihA b

^ Remote Shutdn. Distr. Pnl. OP-51-10.

r e

e) 125-VOC Diesel Gen.1 Dist. Pnl. OP-51-1E.

f) 250-VDC Main Distribution Panel 52-1.

g) 250-VDC Motor Control Center MC-52-1A, Part A and Part B.

n) 124-VOCPowgr{ane{OP-50-A.

Divihob2f c$nsistin[of:

2.

~

a) 125-volt 0.C. Main Distribution Panel S1-2.

b) 125-volt YOC Motor Control Center MC-51-20.

c) 125-VOC Instr. and Control NSSS Distr. Panel DP-51-2A.

~7 d) 125-VOC Critical Swgs. & Remote Shuton Distr. Pnl. OP-51-?0.

., f e) 125-VOC Diesel Gen. 2 Dist. Pnl. OP-51-2E.

f)

24-VOC Power Panel DP-50-B.

3.

Division 3, consisting of 125 volt 0.C. HPC5 distritution pansl.

g WASHINGTON NUCLEAR - UNIT 2 3/4 9-16

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