Reactor Theory (II) Flashcards

topic 4

1
Q

Neutron multiplication

A

neutrons in current generation divided by neutrons in previous generation; critical k=1, supercritical k>1, subcritical k<1

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2
Q

infinite multiplication factor formule

A

fast fission * resonance escape probability* thermal utilization * reproduciton

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3
Q

fast fission

A

number of neutrons below fast fission threshold energy divided by number of initial fission neutrons

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4
Q

resonance escape probability

A

number of neutrons below resonance threshold energy divided by number of neutrons below fast fission threshold energy

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5
Q

thermal utilization

A

number of thermal neutrons absorbed in fuel divided by number of neutrons below resonance threshold energy

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6
Q

reproduction factor

A

average number of fission neutrons produced divided by number of thermal neutrons absorbed in fuel

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7
Q

effective multiplication factor formula

A

infinite fomula * thermal and fast neutron non-leakage

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8
Q

fast non-leakage

A

number of fast neutrons that don’t leak divided by number of fast neutrons produced by all fissions

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9
Q

thermal non-leakage

A

number of thermal neutrons that don’t leak from reactor divided by number of neutrons that reach thermal energies

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10
Q

Reactivity

A

departure from criticality; (Keff - 1) divided by Keff

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11
Q

Neutron poisons

A

absorbs neutrons that don’t contribute to any return; Xe-139 for 72 hours post shutdown and Sm-149 no decay after shutdown

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12
Q

Differential rod worth

A

reactivity change per movement of control rod

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13
Q

Integral rod worth

A

total reactivity worth of rod at withdraw positions

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