Published August 1970 | Version v1
Journal article

Statistical fuel swelling and fission gas release model

  • 1. Bettis Atomic Power Lab., West Mifflin, Pa. (USA)

Description

A computer simulation of a fuel region has been developed based on movement of fission gas bubbles in solids under a thermal gradient. Within this region, fission gas events are followed via a Monte Carlo technique. Individual bubbles are followed through their time history from nucleation to release from the fuel, with interactions at dislocations and grain boundaries. Saturation in gaseous swelling at elevated temperature is predicted. A maximum in swelling is predicted at intermediate temperatures for a given burnup. These swelling and gas release predictions at high temperatures are in good agreement with experimental results. A low temperature modification of dislocation density is required to allow for effects dominant at low temperature which are not included in the current version of the program. With this low temperature modification, swelling predictions are in good agreement with experimental observations over the entire operating temperature range.

Additional details

Identifiers

Publishing Information

Journal Title
Nuclear Applications and Technology
Journal Volume
9
Journal Issue
2
Series
Nucl. Appl. Technol.
Journal Page Range
148-166
ISSN
0550-3043

Conference

Title
Symposium on theoretical models for predicting in-reactor performance of fuel and cladding materials.
Dates
30 Nov 1969.
Place
San Francisco, Calif.

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
2004617
Subject category
S22: GENERAL STUDIES OF NUCLEAR REACTORS;
Resource subtype / Literary indicator
Progress Report
Descriptors DEI
BURNUP; EXPANSION; FISSION PRODUCTS; FUELS; GASES; MONTE CARLO METHOD; PROGRAMMING; STATISTICS; TEMPERATURE; SWELLING

Optional Information

Notes
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