Fission Product Inventory and Decay Heat Associated with FTR Fuel

Fission Product Inventory and Decay Heat Associated with FTR Fuel PDF Author: W. L. Bunch
Publisher:
ISBN:
Category : Fast neutrons
Languages : en
Pages : 90

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Book Description
The fission product inventory and the decay heat associated with driver fuel irradiated to goal exposure (45,000 MWd per metric ton) in the Fast Test Reactor is presented, based on calculations using the computer code RIBD with a nuclear data library prepared for the FTR environment. Curie inventories as a function of decay time are given for each of about 350 isotopes or isomeric states generated by the fast-neutron induced fission of either 239Pu or 238U, by down-chain decay, or by subsequent neutron capture. Beta, gamma, and total decay power are given in percent of operating power for decay times from 1 sec to about 10 years. Uncertainty in the decay heat calculations, based on propagation of the uncertainties associated with input nuclear data, is estimated. The uncertainty is calculated to be less than +̲ 10% for the first 10 days, and less than +̲ 20% over a 10-yr decay period.

Fission Product Inventory and Decay Heat Associated with FTR Fuel

Fission Product Inventory and Decay Heat Associated with FTR Fuel PDF Author: W. L. Bunch
Publisher:
ISBN:
Category : Fast neutrons
Languages : en
Pages : 90

Get Book Here

Book Description
The fission product inventory and the decay heat associated with driver fuel irradiated to goal exposure (45,000 MWd per metric ton) in the Fast Test Reactor is presented, based on calculations using the computer code RIBD with a nuclear data library prepared for the FTR environment. Curie inventories as a function of decay time are given for each of about 350 isotopes or isomeric states generated by the fast-neutron induced fission of either 239Pu or 238U, by down-chain decay, or by subsequent neutron capture. Beta, gamma, and total decay power are given in percent of operating power for decay times from 1 sec to about 10 years. Uncertainty in the decay heat calculations, based on propagation of the uncertainties associated with input nuclear data, is estimated. The uncertainty is calculated to be less than +̲ 10% for the first 10 days, and less than +̲ 20% over a 10-yr decay period.

FTR FISSION PRODUCT DECAY HEAT.

FTR FISSION PRODUCT DECAY HEAT. PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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235U Fission Product Decay Heat from 1 to 105 Seconds

235U Fission Product Decay Heat from 1 to 105 Seconds PDF Author:
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ISBN:
Category : Uranium
Languages : en
Pages :

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Early Time Decay of Fission Product Mixtures

Early Time Decay of Fission Product Mixtures PDF Author: J. L. Mackin
Publisher:
ISBN:
Category : Fission products
Languages : en
Pages : 32

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Evaluation of Fission Product After-heat

Evaluation of Fission Product After-heat PDF Author: Bernard I. Spinrad
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ISBN:
Category : Fission products
Languages : en
Pages : 44

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235U Fission Product Decay Heat from 1 to 10 5 Seconds

235U Fission Product Decay Heat from 1 to 10 5 Seconds PDF Author: S. J. Friesenhahn
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Category : Uranium
Languages : en
Pages :

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Early Time Decay of Fission Product Mixtures

Early Time Decay of Fission Product Mixtures PDF Author: P. Zigman
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ISBN:
Category : Fission products
Languages : en
Pages : 30

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Fission Product Decay Heat

Fission Product Decay Heat PDF Author: D. W. Crancher
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ISBN:
Category :
Languages : en
Pages : 2

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An Investigation of Fission Product Behavior and Decay Heating in Nuclear Reactors

An Investigation of Fission Product Behavior and Decay Heating in Nuclear Reactors PDF Author: Talmadge Ray England
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ISBN:
Category : Fission products
Languages : en
Pages : 696

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A method of computing fission-product decay heat in a reactor with time-dependent flux

A method of computing fission-product decay heat in a reactor with time-dependent flux PDF Author: F. W. Barclay
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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