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{{#Wiki_filter:EOP: TITLE: REV:
{{#Wiki_filter:EOP:
FIG-1.0 FIGURE MIN SUBCOOLING 00200
TITLE:
 
REV:
PAGE 1 of 1
FIG-1.0 FIGURE MIN SUBCOOLING PAGE Approval Authority: GS-Shift Operations FIGURE MIN SUBCOOLING NOTE:
 
Subcooling Margin Saturation Temperature From Figure Below[-] Core Exit T/C Indication RCS PRESSURE (PSIG) 00200 1 of 1 2500, _,,r,,--,.-7 --+' -,--
Approval Authority: GS-Shift Operations
+-i- ~---,-,---;-.-.,....,-,-.,..-;-,--,--,-,-,--.-,-,--,-,.-,-,--,---,-,--,--,-.--,-,--,-,-,--,-,......,.._
 
FIGURE MIN SUBCOOLING
 
NOTE: Subcooling Margin Saturation Temperature From Figure Below[-] Core Exit T/C Indication
 
RCS PRESSURE (PSIG) 2500, _,,r,,--,.- 7 --+' -,--+-i- ~---,-,---;-.-.,....,-,-.,..-;-,--,--,-,-,--.-,-,--,-,.-,-,--,---,-,--,--,-.--,-,- -,-,-,--,-,......,.. _,----,--,
2400 --l--,f--+--f-l-+-+-+--+-+-+-+-+-+-i-+---f-!-+-l-1-+-+-+--+-+-+-+-!---'--!--l--!
2400 --l--,f--+--f-l-+-+-+--+-+-+-+-+-+-i-+---f-!-+-l-1-+-+-+--+-+-+-+-!---'--!--l--!
2300 2200 2100 t+~s!!~~!~~e!~~t!~e!~s!!3sf~s~1a~e1~s!1~~!~~f!~~tilJ=
2300 2200 2100 t+~s!!~~!~~e!~~t!~e!~s!!3sf~s~1a~e1~s!1~~!~~f!~~tilJ=..... ~+-;~~=+~~~~~~~~~~:t1j~
2000..... ~+-;~~= +~~~~ ~ ~ ~ ~~ ~ :t1j ~
2000 1900 1800 1700 1600 1=1:=l=l=l:=S=:l=l=E~=!:=i~ t=:!=U=!=l:==1=!=!-=~ali+/-lJJ~LLd~::ti:::a~:!:::l+/-.:1 1500 1400 HEBBB§3~t ----.-i 1300 -l=+=!=~+=+=!=~::=:-+__:__~-~__'..._:_____..:!.::j:+.:~:!.:::+=t:=1=+=-!=+::::-=+=J/J',.=/::::;=+=;:::::H~-+-1 1200 +-i,-+-+-t-+-+-+--t--t----t-t--'-i-r--J-'--+--+-r--+-'----:-+-+--l--i--+-+--s-+--+-f--+-l#'---!-+--+-'-+-+-'-""--'-+--,---:L..-{I L
 
1100..J:=1++=1=+==!=!+:.r-:++=!=t=::l=i-+:!::+.=:=+:+=.!:=P=t=:!::+::::J=+=l==l=q,ff=µ~=-l--l-:l~---=!___!_+-1=--i--q 1000 900 800 ff~~g,~§§E§J~;E:jm~U=D.::a=!~~~l..!:i+/-.:EE:E,fr~E:.::J.d~
1900 1800 1700 1600 1=1:=l=l=l:=S=:l=l=E~=!:=i~ t=:!=U=!=l:==1=!=!-=~ali+/-l JJ~LL d~ ::ti:::a~:!:::l+/-.:1 1500 1400 HEBBB §3~ t 1300 -l=+=!=~+=+=!=~::=:-+ __:__~ - ~ __'..._ :_____..:!.::j:+.:~:!.:::+=t:=1=+=-!=+::::-=+ =J/J ',.=/::::;=+=;:::::H~ -+-1 ----.-i 1200 +-i,-+-+- t-+-+-+--t--t----t-t--'-i-r--J-'--+--+-r--+-'----:-+-+--l--i--+-+--s-+--+-f--+ -l# '---!-+--+-'-+-+-'-""--'-+--,---:L..-{ I 1100..J:=1++=1=+==!=!+:.r-:++=!=t=::l=i-+:!::+.=:=+:+=.!:=P=t=:!::+::::J=+=l==l=q,ff= µ~=-l--l-:l~---=!___!_+-1=--i--L q
 
1000 900 800 ff~~g,~ §§E§J~;E:jm~U=D.::a=!~~~l..!:i+/-.:EE:E,fr ~E:.::J.d~
 
700 600 500 400 300 200 10
700 600 500 400 300 200 10
: f ~~~ ~i~~i~i~~ ~~~+/-g~~~~~ ~i~~~~~~:+/-+/-;;~~ ~~i!i ~ ~;~~~~;~~:;:~ d 200 250 300 350 400 450 500 550 600 650 700 CORE EXIT SATURATION TEMPERATURE (°F)
: f~~~~i~~i~i~~~~~+/-g~~~~~~i~~~~~~:+/-+/-;;~~~~i!i~~;~~~~;~~:;:~d 200 250 300 350 400 450 500 550 600 650 700 CORE EXIT SATURATION TEMPERATURE (°F)  
PLANT SHUTDOWN FROM HOT SHUTDOWN 0-2.2 TO COLD CONDITIONS Revision 171 Page 79 of93
 
Page 1 of 1 Attachment 3, Full Range RCS Pressure Temperature Cooldown Curve
 
2500 <T-.... _..... _...,_,_._- _- _- _-....... _- _- __......,==* ::.-,---.-1 -,,,-,......,..: -.---1---,1- ;=aa=-;---,--y- --
RCS PRESURE -~~,~~.-. *:r*.~*~.-. *_ i --! I I T:~p I *-* *N~RMAL NCREMENTS.so PSIG -- -- - - r* ---- i.. -j FO RANGE 2250 I T I I j I. I *-... ! ; s 1 1 LEAK, *- l _ _ '":!:l==i==i=-I i i I f si u~~ - "T---,--,r IIC..


1, I I TEST I *,, 11 --..
PLANT SHUTDOWN FROM HOT SHUTDOWN TO COLD CONDITIONS 0-2.2 Revision 171 Page 79 of93 iii Q. -
2000 - /--'::=~ i:. rLIMIT - i.1... t ! __ _
11,1 a:  
 
~
I I *1 ***
* I l.j I
-* 'i" 1750 --*---'---.--+-- 1-------i--;- : -;-I*,_.. --,
-,- -I t.
-+---.--'--+-~- i:--c -+.:a~r,,.....;-+-,f-!--+.... i J 1500
-. I
" iii ! )
Q.
-11,1 I I
:, a: 1250
~
11,1 a:
11,1 a:
Q.
Q.
1000
Page 1 of 1, Full Range RCS Pressure Temperature Cooldown Curve 2500 <T-
 
......,==* ::.-,---.-1 -,,,-,......,..:-.---1---,1- ;=aa=-;---,--y---
r ' SATURATION CURVE PSIG 500
RCS PRESURE
 
-~~,~~.-. *:r*.~*~.-. *_ i --! I I T:~p I
I I,
*N~RMAL 2250 NCREMENTS.so PSIG  
 
-- -- - -r* ---- i.
INCREMENTS TEMPERATURE 20 &deg;F
1
 
. -j FO RANGE I
0 100 200 300 400 500 600 700 TEMPERATURE (&deg;F)
T I
DC Sources - MODES 1, 2, 3, and 4 3.8.4
I j
 
I I *-...
3.8 ELECTRICAL POWER SYSTEMS
s 2000 I
 
i i I f
3.8.4 DC Sources - MODES 1, 2, 3, and 4
si u~~-
 
"T---,--,r 1
LCO 3.8.4 The Train A and Train B DC electrical power sources shall be OPERABLE.
LEAK
 
*- l _ _ '":!:l==i==i=-IIC..
APPLICABILITY: MODES 1, 2, 3, and 4.
1, I I
 
TEST I
ACTIONS
11--..
 
LIMIT
CONDITION REQUIRED ACTION COMPLETION TIME
/--'::=~i:. r-i
.1... t ! __ _
I I
*1 ***
I l
.j I
-* 'i" 1750 --*---'---.--+--1-------i--;-
I*,_.. --,
1500 1250 1000 500 I t.
i J
-+---.--'--+-~-i:--c-+.:a~r,,.....;-+-,f-!--+....
r 0
100 I
)
I I 200 300 400 TEMPERATURE (&deg;F) 500 SATURATION CURVE PSIG I I,
TEMPERATURE INCREMENTS 20&deg;F 600 700


A. One DC electrical power A.1 Restore DC electrical power 2 hours source inoperable. source to OPERABLE status. OR In accordance with the Risk Informed Completion Time Program
DC Sources - MODES 1, 2, 3, and 4 3.8.4 3.8 ELECTRICAL POWER SYSTEMS 3.8.4 DC Sources - MODES 1, 2, 3, and 4 LCO 3.8.4 The Train A and Train B DC electrical power sources shall be OPERABLE.
APPLICABILITY:
MODES 1, 2, 3, and 4.
ACTIONS CONDITION REQUIRED ACTION COMPLETION TIME A.
One DC electrical power A.1 Restore DC electrical power 2 hours source inoperable.
source to OPERABLE status.
OR In accordance with the Risk Informed Completion Time Program B.
Required Action and B.1 Be in MODE 3.
6 hours Associated Completion Time of Condition A not AND met.
B.2 Be in MODE 5.
36 hours C.
Both DC electrical power C.1 Enter LCO 3.0.3.
Immediately sources inoperable.
R.E. Ginna Nuclear Power Plant 3.8.4-1 Amendment 150


B. Required Action and B.1 Be in MODE 3. 6 hours Associated Completion Time of Condition A not AND met.
I DC Sources - MODES 1, 2, 3, and 4 3.8.4 SURVEILLANCE REQUIREMENTS SR 3.8.4.1 SR3.8.4.2 SR3.8.4.3 SURVEILLANCE Verify battery terminal voltage is 2-: 129 V on float charge.
B.2 Be in MODE 5. 36 hours
- NOTE-
: 1.
SR 3.8.4.3 may be performed in lieu of SR 3.8.4.2.
: 2.
This Surveillance shall not be performed in MODE 1, 2, 3, or 4.
Verify battery capacity is adequate to supply, and maintain in OPERABLE status, the required emergency loads for the design duty cycle when subjected to a battery service test.  
- NOTE-This Surveillance shall not be performed in MODE 1, 2, 3, or 4.
Verify battery capacity is 2': 80% of the manufacturer's rating when subjected to a performance discharge test or a modified performance discharge test.
R.E. Ginna Nuclear Power Plant 3.8.4-2 FREQUENCY In accordance with the Surveillance Frequency Control Program In accordance with the Surveillance Frequency Control Program In accordance with the Surveillance Frequency Control Program 12 months when battery shows degradation, or has reached 85% of expected life with capacity < 100% of manufacturer's rating AND 24 months when battery has reached 85% of the expected life with capacity 2': 100% of manufacturer's rating Amendment No.130


C. Both DC electrical power C.1 Enter LCO 3.0.3. Immediately sources inoperable.
3.8 ELECTRICAL POWER SYSTEMS 3.8.6 Battery Cell Parameters Battery Cell Parameters 3.8.6 LCO 3.8.6 Battery cell parameters for Train A and Train B batteries shall be within limits.
 
APPLICABILITY:
R.E. Ginna Nuclear Power Plant 3.8.4-1 Amendment 150 DC Sources - MODES 1, 2, 3, and 4 3.8.4 SURVEILLANCE REQUIREMENTS
MODES 1, 2, 3, and 4, When associated DC electrical power sources are required to be OPERABLE by LCO 3.8.5, "DC Sources - MODES 5 and 6.
 
11 ACTIONS  
SURVEILLANCE FREQUENCY
*----------------------*r---------------------------------
 
- NOTE-Separate Condition entry is allowed for each battery.
SR 3.8.4.1 Verify battery terminal voltage is 2-: 129 V on float In accordance with charge. the Surveillance Frequency Control Program
CONDITION REQUIRED ACTION COMPLETION TIME A.
 
One or more batteries A.1 Declare associated battery Immediately with one or more battery inoperable.
SR3.8.4.2 - NOTE-
: 1. SR 3.8.4.3 may be performed in lieu of SR 3.8.4.2.
: 2. This Surveillance shall not be performed in MODE 1, 2, 3, or 4.
 
Verify battery capacity is adequate to supply, and In accordance with maintain in OPERABLE status, the required the Surveillance emergency loads for the design duty cycle when Frequency Control subjected to a battery service test. Program SR3.8.4.3 - NOTE-This Surveillance shall not be performed in MODE 1, 2, 3, or 4.
 
Verify battery capacity is 2': 80% of the manufacturer's In accordance with rating when subjected to a performance discharge the Surveillance I test or a modified performance discharge test. Frequency Control Program
 
12 months when battery shows degradation, or has reached 85% of expected life with capacity < 100% of manufacturer's rating
 
AND
 
24 months when battery has reached 85% of the expected life with capacity 2': 100% of manufacturer's rating R.E. Ginna Nuclear Power Plant 3.8.4-2 Amendment No.130 Battery Cell Parameters 3.8.6
 
3.8 ELECTRICAL POWER SYSTEMS
 
3.8.6 Battery Cell Parameters
 
LCO 3.8.6 Battery cell parameters for Train A and Train B batteries shall be within limits.
 
APPLICABILITY: MODES 1, 2, 3, and 4, When associated DC electrical power sources are required to be OPERABLE by LCO 3.8.5, "DC Sources - MODES 5 and 6.11
 
ACTIONS
*----------------------*r---------------------------------- NOTE
 
Separate Condition entry is allowed for each battery.
 
CONDITION REQUIRED ACTION COMPLETION TIME
 
A. One or more batteries A.1 Declare associated battery Immediately with one or more battery inoperable.
cell parameters not within limits.
cell parameters not within limits.
SURVEILLANCE REQUIREMENTS SR 3.8.6.1 SR 3.8.6.2 SR3.8.6.3 SR 3.8.6.4 SURVEILLANCE Verify electrolyte level of each connected battery cell is above the top of the plates and not overflowing.
Verify the float voltage of each connected battery cell is> 2.07 V.
Verify specific gravity of the designated pilot cell in each battery is ~ 1.195.
Verify average electrolyte temperature of the designated pilot cell in each battery is ~ 55&deg;F.
R.E. Ginna Nuclear Power Plant 3.8.6-1 FREQUENCY In accordance with the Surveillance Frequency Control Program In accordance with the Surveillance Frequency Control Program In accordance with the Surveillance Frequency Control Program In accordance with the Surveillance Frequency Control Program Amendment No.122


SURVEILLANCE REQUIREMENTS
SR 3.8.6.5 SR3.8.6.6 SURVEILLANCE Verify average electrolyte temperature of every fifth cell of battery is~ 55&deg;F.
 
Verify specific gravity of each connected battery cell is:
SURVEILLANCE FREQUENCY
: a.
 
Not more than 0.020 below average of all connected cells, and
SR 3.8.6.1 Verify electrolyte level of each connected battery cell In accordance with is above the top of the plates and not overflowing. the Surveillance Frequency Control Program
: b.
 
Average of all connected cells is ~ 1.195.
SR 3.8.6.2 Verify the float voltage of each connected battery cell In accordance with is> 2.07 V. the Surveillance Frequency Control Pro g ram SR3.8.6.3 Verify specific gravity of the designated pilot cell in In accordance with each battery is ~ 1.195. the Surveillance Frequency Control Program SR 3.8.6.4 Verify average electrolyte temperature of the In accordance with designated pilot cell in each battery is ~ 55&deg;F. the Surveillance Frequency Control Program
R.E. Ginna Nuclear Power Plant 3.8.6-2 Battery Cell Parameters 3.8.6 FREQUENCY In accordance with the Surveillance Frequency Control Program In accordance with the Surveillance Frequency Control Program Amendment No. 122}}
 
R. E. Ginna Nuclear Power Plant 3.8.6-1 Amendment No.122 Battery Cell Parameters 3.8.6
 
SURVEILLANCE FREQUENCY
 
SR 3.8.6.5 Verify average electrolyte temperature of every fifth In accordance with cell of battery is~ 55&deg;F. the Surveillance Frequency Control Program
 
SR3.8.6.6 Verify specific gravity of each connected battery cell In accordance with is: the Surveillance Frequency Control
: a. Not more than 0.020 below average of all Program connected cells, and
: b. Average of all connected cells is ~ 1.195.
 
R.E. Ginna Nuclear Power Plant 3.8.6-2 Amendment No. 122}}

Latest revision as of 08:59, 25 November 2024

Handouts to Applicants
ML23247A003
Person / Time
Site: Ginna Constellation icon.png
Issue date: 10/14/2022
From: Joseph Demarshall
NRC/RGN-I/DORS/OB
To:
Constellation Energy Generation
References
EPID L-2022-OLL-0008
Download: ML23247A003 (1)


Text

{{#Wiki_filter:EOP: TITLE: REV: FIG-1.0 FIGURE MIN SUBCOOLING PAGE Approval Authority: GS-Shift Operations FIGURE MIN SUBCOOLING NOTE: Subcooling Margin Saturation Temperature From Figure Below[-] Core Exit T/C Indication RCS PRESSURE (PSIG) 00200 1 of 1 2500, _,,r,,--,.-7 --+' -,-- +-i- ~---,-,---;-.-.,....,-,-.,..-;-,--,--,-,-,--.-,-,--,-,.-,-,--,---,-,--,--,-.--,-,--,-,-,--,-,......,.._ 2400 --l--,f--+--f-l-+-+-+--+-+-+-+-+-+-i-+---f-!-+-l-1-+-+-+--+-+-+-+-!---'--!--l--! 2300 2200 2100 t+~s!!~~!~~e!~~t!~e!~s!!3sf~s~1a~e1~s!1~~!~~f!~~tilJ=..... ~+-;~~=+~~~~~~~~~~:t1j~ 2000 1900 1800 1700 1600 1=1:=l=l=l:=S=:l=l=E~=!:=i~ t=:!=U=!=l:==1=!=!-=~ali+/-lJJ~LLd~::ti:::a~:!:::l+/-.:1 1500 1400 HEBBB§3~t ----.-i 1300 -l=+=!=~+=+=!=~::=:-+__:__~-~__'..._:_____..:!.::j:+.:~:!.:::+=t:=1=+=-!=+::::-=+=J/J',.=/::::;=+=;:::::H~-+-1 1200 +-i,-+-+-t-+-+-+--t--t----t-t--'-i-r--J-'--+--+-r--+-'----:-+-+--l--i--+-+--s-+--+-f--+-l#'---!-+--+-'-+-+-'-""--'-+--,---:L..-{I L 1100..J:=1++=1=+==!=!+:.r-:++=!=t=::l=i-+:!::+.=:=+:+=.!:=P=t=:!::+::::J=+=l==l=q,ff=µ~=-l--l-:l~---=!___!_+-1=--i--q 1000 900 800 ff~~g,~§§E§J~;E:jm~U=D.::a=!~~~l..!:i+/-.:EE:E,fr~E:.::J.d~ 700 600 500 400 300 200 10

f~~~~i~~i~i~~~~~+/-g~~~~~~i~~~~~~:+/-+/-;;~~~~i!i~~;~~~~;~~:;:~d 200 250 300 350 400 450 500 550 600 650 700 CORE EXIT SATURATION TEMPERATURE (°F)

PLANT SHUTDOWN FROM HOT SHUTDOWN TO COLD CONDITIONS 0-2.2 Revision 171 Page 79 of93 iii Q. - 11,1 a: ~ 11,1 a: Q. Page 1 of 1, Full Range RCS Pressure Temperature Cooldown Curve 2500 <T- ......,==* ::.-,---.-1 -,,,-,......,..:-.---1---,1- ;=aa=-;---,--y--- RCS PRESURE -~~,~~.-. *:r*.~*~.-. *_ i --! I I T:~p I

  • N~RMAL 2250 NCREMENTS.so PSIG

-- -- - -r* ---- i. 1 . -j FO RANGE I T I I j I I *-... s 2000 I i i I f si u~~- "T---,--,r 1 LEAK

  • - l _ _ '":!:l==i==i=-IIC..

1, I I TEST I 11--.. LIMIT /--'::=~i:. r-i .1... t ! __ _ I I

  • 1 ***

I l .j I -* 'i" 1750 --*---'---.--+--1-------i--;- I*,_.. --, 1500 1250 1000 500 I t. i J -+---.--'--+-~-i:--c-+.:a~r,,.....;-+-,f-!--+.... r 0 100 I ) I I 200 300 400 TEMPERATURE (°F) 500 SATURATION CURVE PSIG I I, TEMPERATURE INCREMENTS 20°F 600 700

DC Sources - MODES 1, 2, 3, and 4 3.8.4 3.8 ELECTRICAL POWER SYSTEMS 3.8.4 DC Sources - MODES 1, 2, 3, and 4 LCO 3.8.4 The Train A and Train B DC electrical power sources shall be OPERABLE. APPLICABILITY: MODES 1, 2, 3, and 4. ACTIONS CONDITION REQUIRED ACTION COMPLETION TIME A. One DC electrical power A.1 Restore DC electrical power 2 hours source inoperable. source to OPERABLE status. OR In accordance with the Risk Informed Completion Time Program B. Required Action and B.1 Be in MODE 3. 6 hours Associated Completion Time of Condition A not AND met. B.2 Be in MODE 5. 36 hours C. Both DC electrical power C.1 Enter LCO 3.0.3. Immediately sources inoperable. R.E. Ginna Nuclear Power Plant 3.8.4-1 Amendment 150

I DC Sources - MODES 1, 2, 3, and 4 3.8.4 SURVEILLANCE REQUIREMENTS SR 3.8.4.1 SR3.8.4.2 SR3.8.4.3 SURVEILLANCE Verify battery terminal voltage is 2-: 129 V on float charge. - NOTE-

1.

SR 3.8.4.3 may be performed in lieu of SR 3.8.4.2.

2.

This Surveillance shall not be performed in MODE 1, 2, 3, or 4. Verify battery capacity is adequate to supply, and maintain in OPERABLE status, the required emergency loads for the design duty cycle when subjected to a battery service test. - NOTE-This Surveillance shall not be performed in MODE 1, 2, 3, or 4. Verify battery capacity is 2': 80% of the manufacturer's rating when subjected to a performance discharge test or a modified performance discharge test. R.E. Ginna Nuclear Power Plant 3.8.4-2 FREQUENCY In accordance with the Surveillance Frequency Control Program In accordance with the Surveillance Frequency Control Program In accordance with the Surveillance Frequency Control Program 12 months when battery shows degradation, or has reached 85% of expected life with capacity < 100% of manufacturer's rating AND 24 months when battery has reached 85% of the expected life with capacity 2': 100% of manufacturer's rating Amendment No.130

3.8 ELECTRICAL POWER SYSTEMS 3.8.6 Battery Cell Parameters Battery Cell Parameters 3.8.6 LCO 3.8.6 Battery cell parameters for Train A and Train B batteries shall be within limits. APPLICABILITY: MODES 1, 2, 3, and 4, When associated DC electrical power sources are required to be OPERABLE by LCO 3.8.5, "DC Sources - MODES 5 and 6. 11 ACTIONS

  • ----------------------*r---------------------------------

- NOTE-Separate Condition entry is allowed for each battery. CONDITION REQUIRED ACTION COMPLETION TIME A. One or more batteries A.1 Declare associated battery Immediately with one or more battery inoperable. cell parameters not within limits. SURVEILLANCE REQUIREMENTS SR 3.8.6.1 SR 3.8.6.2 SR3.8.6.3 SR 3.8.6.4 SURVEILLANCE Verify electrolyte level of each connected battery cell is above the top of the plates and not overflowing. Verify the float voltage of each connected battery cell is> 2.07 V. Verify specific gravity of the designated pilot cell in each battery is ~ 1.195. Verify average electrolyte temperature of the designated pilot cell in each battery is ~ 55°F. R.E. Ginna Nuclear Power Plant 3.8.6-1 FREQUENCY In accordance with the Surveillance Frequency Control Program In accordance with the Surveillance Frequency Control Program In accordance with the Surveillance Frequency Control Program In accordance with the Surveillance Frequency Control Program Amendment No.122

SR 3.8.6.5 SR3.8.6.6 SURVEILLANCE Verify average electrolyte temperature of every fifth cell of battery is~ 55°F. Verify specific gravity of each connected battery cell is:

a.

Not more than 0.020 below average of all connected cells, and

b.

Average of all connected cells is ~ 1.195. R.E. Ginna Nuclear Power Plant 3.8.6-2 Battery Cell Parameters 3.8.6 FREQUENCY In accordance with the Surveillance Frequency Control Program In accordance with the Surveillance Frequency Control Program Amendment No. 122}}