ML19220B463

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Examination Rept on Operator License Issued for TMI-2. Written Examination Encl.Operating Test Administered 780608
ML19220B463
Person / Time
Site: Crane Constellation icon.png
Issue date: 06/16/1978
From: Collins P
Office of Nuclear Reactor Regulation
To: Withheld
METROPOLITAN EDISON CO.
References
NUDOCS 7904260218
Download: ML19220B463 (30)


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Sketch a trace of Xenon worth versus time for a trip frca full power.

Include equilibriur and peak values.

(1.5) ws )

Show on the above sketch how the curve would be affected if the reactor were brcught critical and

=aintained a: 10-o amps about 6 hours6.944444e-5 days <br />0.00167 hours <br />9.920635e-6 weeks <br />2.283e-6 months <br /> after the trip.

(1.5)

Would there be any difference in the Xenon curve if you were able to achieve 2"A power instead of 10-8 amps?

Explain.

(1)

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Explain how Ilutonium-239 is oroduced in your (1)

reactor, s11 What effect does Fu-T39 have on core life; i.e.,

extend, decrease, ar no effect?

Explain.

(1)

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Explain how lu-239 affects the delayed neutron fraction and what effect this has on reactor control.

(2/

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Euring a routine startup, the-reactor is subcritical, mcroupe withdrawn, and a stable count rate of 100 ces safet.7 on the Source..ange channels.

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(1.5)

'dould the change (time and magnitude ) in count rate

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xplain your answer. (1.5)

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jssune the following values for the effective multipli-n.

Nscation fae:cr a 3eginning of Life.

Cold, clean 1.252 Ho t, clean, zero power 1.190 Hot, clean, full pcwer 1.164 Hot, full power, equil Ze & Sc 1.118 (m

Define eff ec tive multipli cation factor.

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Explain.

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Steam Te=perature ggf4i r, (2) s sxpla_,n why steam temperature changes as it does as 4

load increases from Ch to 100h.

(1)

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driefly explain the processes that cause a

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The following chemicals are used in the Makeup and e

purification sJ" stem to control reactor coclant chemistry.

Describe what each chemical is used for and give an example of when it is to ce used.

Hydracine

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Lithium E"droxide

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Given that reactor is at 1C03 rated power, and all IUS

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response of the indicated parameters.

(2.5)

Discuss reasons behind the responses you indicate, j

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dhat is ceant by radial and axial flux tilts?

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each of these flux tilts.

(1)

"2 During rated power operation while in automatic control the T.g - RTD selected for centrol fails 10w.

Describe how the IuS will rescond to this failure.

Indicate how the primary and secch.dary systems will respond to the transient.

A fu ;i. ;; 5 +

7,, u,__,

(2)

".3 Two of the conditions which will cause trackinc of the luS o

are during cross limits and if both generator output breakers are trinned.~

(a Explain how and wh" the Iv5 will respond to each of J

these conditions (Assume feedwater is reactor limited), t))

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(1/

Exclain the trincirle of creration of the detectors in o -

r the Source Eange Channels.

Include how racma si_cnals e

are eliminated.

(1.5)

.lhen are the Source Range Channels taken cu* of 9

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(1.5)

List the reactor.trotection trie.s and typical setpoints.

(2)

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E<1 The terns-" coincidence" and " redundancy" are frequently

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used with reference to the prote:lon s[tstems.

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add to the safety of a trip circuit? d x pia ul.

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How does the e" sten or.erate durine normal plant a

operation?

(.5)

What signal and setpoint actuates the system under accident conditions?

(.5) actuates.

(1.5)

Dr7 Describe how the system responds once it What are the consequences of eccplete failure of this

-syste to operate under emergenc y conditions?

xp,ain.

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suring a station blackout ( E- - ' ^t-@) two cf the autocatic ac.4v.a..a.a.g

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-')i Sketch a one line diagram that indicates the necessarJ breakers are closed to feed the various buses.

Include all transformers for :ne condi. ion.

(1.5) dhat indications does the operating staff obcerve to decernine that the diesel c~enerator is cu.nni>"ing (1.5) s power?

How is the reactor decay heat recoved during this conditien?

Include the 1) necessary equipment in service and 11) pareceters observed to assure heat rencval.

(2.5)

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When will the operator p erforr. the switch?

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What potential hazard could cccur if the switch is made too early?

(.5)

What potential hazard could occur if the switch is cade too late?

(.5)

,k<1 What potential hazard could occur if order of valving in (b) is reversed?

(.5)

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'dhen cay you, as a licensed operator, deviate from the sesuence of steps in an operating procedure?

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(2)

List the istediate operator actions.

(1)

Give four rossible causes of decreasinc condenser F4

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(1) co- -,,,,...

't What indica:icns could the coerator exn.ect to cee as the condenser lost vacuum (u.o to the tric se: coin:)?

(1)

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Assume the turbine tripped as a result of the loss of condenser vacuum.

Cne of the i cediate operator actions

. List these,)

is to verify that automatic actions occur.

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Following a plant trip from IC0b pcwer (at po.ter for 2 wee'.e.s) the staff is conducting a reac cr startup, about 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br /> after

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Cne of the trecautions in the procedure states tha: the

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How do jou kncw if the frisker is operating properly?

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( 59 What kind of detector does it use?

Why is the

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What do you do if the fricker alarms on your check?

(1)

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You are leaving a controlled area and arrive at the u

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If the controlled area had high contacination levels how do vou determine whether the clothin~ can be stored a

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