ML19220B454

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Examination Rept on Operator License Issued for TMI-2. Written Examination Encl.Operating Test Administered 780607
ML19220B454
Person / Time
Site: Crane Constellation icon.png
Issue date: 06/10/1978
From: Collins P
Office of Nuclear Reactor Regulation
To: Withheld
METROPOLITAN EDISON CO.
References
NUDOCS 7904260166
Download: ML19220B454 (41)


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A.1 (a)

Sketch a trace ol Xencn worth versue time for a trip frc= full power.

Include ecuilib n-d peak values.

(1.51 (b )

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

=aintained at 10-a=ps 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 (c) if you were able to achieve 205 power instead of 10-8 a=ps?

Explain.

(1)

A.2 (a)

Explain how Ilutonium-239 is produced in your

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(b)

What effect does ?u-239 have on core life; i.e.,

extend, decrease, or no effect?

Explain.

(1)

(c)

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

(2)

A.3 Luring a routine startu,

ne reactor is subcritical, safety groups withdrawn, and a stable ccunt rate of 1C0 cps on the Source c.ance channels.

.he enerator cartiall'I

'chan he s+.o e.- a. d.

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_e cotion he reads a count rate of 150 cps.

(a)

If the operator performed no red motion for five (5) minutes, would the count rate increase, decrease, or remain the samer Explain.

(1.51 (b)

'dould the change (time and magnitude) in c o un t rate e u, ^ w o a c s c l. i e".. +.'.y c " 'n e. 4. 4 a l b e..i.". e.- a.. w

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a as cocrared with creatly cuberiticaly Assume the same ah.ount of roa wi tr.crawal.

xplain your answer. (1.5)

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(.5) 3.2 Identify the design feature (s) that will prevent:

(Include the normal ceans of control and any backup neans of protec tion. )

(a)

Eie-h le:down tenceratures to the rur,ification d e.. 4 n e,, i _, e -o..

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ii.

Describe any automatic acticn(s) that will occur.

(.3) 111.

Of the systems affected, what if any w;11 aff ect continued ?sctor Cperation.

Explain.

(.8)

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If the quench tank gets too hot, what can the orerator do to correct the situation?

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.2 C.1 (a)

Sketch how each of the felle<.inz tem eratuhes varies for 0 to ICCi. load.

.rcr each pira.:e^ter incluie setpoints or approximate calues where applicable.

P. a_' c *, - C "w s ' e * ~. =_.,. c.- o. *. "..- a.

heac:cr Inlet Temperature Reactor Average Ze:perature Steam Temperature (2)

(b)

Explain why steam temperature changes as it does as lead increases from C;2 to ICOS.

(1)

(c)

Exc. lain how both Dor.tler and ':cderator Temeerature Coefficient at:ect reactivity from 15L to 100S.

(2)

U.2 As a nuclear ecwer c. lant o t. e r a t o r. explain what each of

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" eat balance (b)

Quadrant pcwer tilt (c)

Fower level cutoff

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(d)

S?SH U.3 Many trips that have occurred a*

s!.=ilar 3&'d Flants have b een high precsure trips due to a secondary upset, usually loss of feedwater.

3riefly explain the processes that cause a high presrure trip when feedwr "er is lost.

(1.5)

C.4 The following chemicals are used in the Eakeup and purification systen to control reactor coolant chenistry.

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

(a)

Hydracine

(.5)

(b)

Eydrogen

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C.5 C-iven that reactor is at 1001 rated power, and all IUS c.

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(a)

Cn the attached cretared sheet, indicate.he relative respence of the 'ndicated parameters.

(2.5) i (b)

Discuss reasons b'ehind.the responses yc~u indicate, including any time delay, if ary, in the power reduction.

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+0 D.1 Flux tilts are charactericed as either radial or axial.

(a)

,ihat is meant by radial and axial flux tilts?

(1)

(b)

Describe how instrumentation is utilized to detect each of these flux tilts.

(1)

D.2 During rated power operation while in automatic control the T. - RTD selected for control fails low.

Describe u

how the IcS will restond to this failure.

Indicate how the primary and secchdary systems will respond to the transient.

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e w.

u a

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(a)

Exc. lain how and why the Iv5 will respond to each of a

these conditions (Assume feedwater is reactor limited). 33)

(b) what is the difference in response of the IuS between feedwater being reactor limited and reactor being feedwater limited:

(1)

D4 (a)

Exclain the principle of operation of the detectors in

~

the Source.;.ange Channels.

Include how ganza signals are eliminated.

(1.5)

(b )

'ihen are the Source Range channels taken out of service automatically during a reactor startup?

Include 1cgic and any backup.

(1.5)

D.5 List the reactor protection trips and typical se points.

(2)

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u.ow u a

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operation?

(.5) 1 (b )

What siznal and setr.oint actuates the s.vate= under accident ccnditions?

(.5)

(c)

Describe how the system responds once it actuates.

(1.5)

(d)

What are the consecuences of cc=plete failure of this system to operate under emergenc y conditions?

(.g)

x,f, u,.4 E.3 During a station blackout (EP 1202-2) two cf the autenatic

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m (b )

What indications does the operating staff observe to determine tha t the diesel generator is supplying (1.5) tower?

(c)

How is the reacter decay heat re=cved during this c o.d.4

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(i)

(b)

How is the ssitch perforced?

(1)

(c)

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

(.5)

(d)

What potential hacard could occur if the switch is made too late?

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F.2 When may you, as a licensed operator, deviate from the sequence of steps in an operating procedure?

(1)

F.3 An irradiated fuel assembly has been dropped in the

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(1)

F.4 (a)

Give four possible causes of decreasing condenser (1) vacuum.

(b)

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(1)

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

Cne of the immediate operator actions is to verify that autocatic actions occur.

Lict these (1 ).

autocatic actions.

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Lis; your other immediate actions for a turbine trip. (1)

F.5 Folicwin7 a c.lan: tric. from loch e.cwer (at power for 2 weeks )

a the staff is conducting a reactor 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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..s