Published March 31, 2009 | Version v1
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Continuous Energy, Multi-Dimensional Transport Calculations for Problem Dependent Resonance Self-Shielding

Description

The overall objective of the work here has been to eliminate the approximations used in current resonance treatments by developing continuous energy multi-dimensional transport calculations for problem dependent self-shielding calculations. The work here builds on the existing resonance treatment capabilities in the ORNL SCALE code system. The overall objective of the work here has been to eliminate the approximations used in current resonance treatments by developing continuous energy multidimensional transport calculations for problem dependent self-shielding calculations. The work here builds on the existing resonance treatment capabilities in the ORNL SCALE code system. Specifically, the methods here utilize the existing continuous energy SCALE5 module, CENTRM, and the multi-dimensional discrete ordinates solver, NEWT to develop a new code, CENTRM()NEWT. The work here addresses specific theoretical limitations in existing CENTRM resonance treatment, as well as investigates advanced numerical and parallel computing algorithms for CENTRM and NEWT in order to reduce the computational burden. The result of the work here will be a new computer code capable of performing problem dependent self-shielding analysis for both existing and proposed GENIV fuel designs. The objective of the work was to have an immediate impact on the safety analysis of existing reactors through improvements in the calculation of fuel temperature effects, as well as on the analysis of more sophisticated GENIV/NGNP systems through improvements in the depletion/transmutation of actinides for Advanced Fuel Cycle Initiatives.

Availability note (English)

Also available from OSTI as DE00951326; PURL: https://www.osti.gov/servlets/purl/951326-YUcGhI/

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Additional details

Publishing Information

Imprint Pagination
35 p.
Report number
DOE/ID--14695

Optional Information

Contract/Grant/Project number
FG07-05ID14695
Notes
doi 10.2172/951326
Funding organization
US Department of Energy (United States)