This report describes the primary physical models that form the basis of the DART mechanistic computer model for calculating fission-product-induced swelling of aluminum dispersion fuels; the calculated results are compared with test data. In addition, DART calculates irradiation-induced changes in the thermal conductivity of the dispersion fuel, as well as fuel restructuring due to aluminum fuel reaction, amorphization, and recrystallization. Input instructions for execution on mainframe, workstation, and personal computers are provided, as is a description of DART output. The theory of fission gas behavior and its effect on fuel swelling is discussed. The behavior of these fission products in both crystalline and amorphous fuel and in the...
A physics-based model is developed for analysing the coupled phenomena of fission gas swelling and r...
Prediction of the behavior of LWR fuel rods and fission products under off-normal and accident condi...
International audienceSwelling of metals under irradiation is largely studied in the nuclear industr...
The Dispersion Analysis Research Tool (DART) contains models for fission-gas induced fuel swelling, ...
This paper describes the primary physical models that form the basis of the DART model for calculati...
The results of effective irradiation swelling in a wide range of burnup levels are numerically obtai...
The DART code is based upon a thermomechanical model that can predict swelling, recrystallization, f...
A thermally induced dispersion model was developed to analyze for dispersive potential and determine...
Access restricted to the OSU CommunityA computer model for the simulation of long-term, steady-state...
The dispersion fuel concept offers a method for minimizing irradiation- induced property changes in ...
Under irradiation, dispersion nuclear fuel meat consists of a three-phase composite of fuel particle...
A thermally induced fuel-plate dispersion model was developed to analyze for dispersive potential an...
In order to advance understanding of the breakaway swelling behavior of U-Mo/Al dispersion fuel unde...
Fission-induced swelling of U-Mo/Al dispersion fuel meat was measured using microscopy images obtain...
Nuclear fuel undergoes various changes in its properties and composition as it is irradiated in a nu...
A physics-based model is developed for analysing the coupled phenomena of fission gas swelling and r...
Prediction of the behavior of LWR fuel rods and fission products under off-normal and accident condi...
International audienceSwelling of metals under irradiation is largely studied in the nuclear industr...
The Dispersion Analysis Research Tool (DART) contains models for fission-gas induced fuel swelling, ...
This paper describes the primary physical models that form the basis of the DART model for calculati...
The results of effective irradiation swelling in a wide range of burnup levels are numerically obtai...
The DART code is based upon a thermomechanical model that can predict swelling, recrystallization, f...
A thermally induced dispersion model was developed to analyze for dispersive potential and determine...
Access restricted to the OSU CommunityA computer model for the simulation of long-term, steady-state...
The dispersion fuel concept offers a method for minimizing irradiation- induced property changes in ...
Under irradiation, dispersion nuclear fuel meat consists of a three-phase composite of fuel particle...
A thermally induced fuel-plate dispersion model was developed to analyze for dispersive potential an...
In order to advance understanding of the breakaway swelling behavior of U-Mo/Al dispersion fuel unde...
Fission-induced swelling of U-Mo/Al dispersion fuel meat was measured using microscopy images obtain...
Nuclear fuel undergoes various changes in its properties and composition as it is irradiated in a nu...
A physics-based model is developed for analysing the coupled phenomena of fission gas swelling and r...
Prediction of the behavior of LWR fuel rods and fission products under off-normal and accident condi...
International audienceSwelling of metals under irradiation is largely studied in the nuclear industr...