Published August 1980 | Version v1
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Development, implementation, and verification of multicycle depletion perturbation theory for reactor burnup analysis

Description

A generalized depletion perturbation formulation based on the quasi-static method for solving realistic multicycle reactor depletion problems is developed and implemented within the VENTURE/BURNER modular code system. The present development extends the original formulation derived by M.L. Williams to include nuclide discontinuities such as fuel shuffling and discharge. This theory is first described in detail with particular emphasis given to the similarity of the forward and adjoint quasi-static burnup equations. The specific algorithm and computational methods utilized to solve the adjoint problem within the newly developed DEPTH (Depletion Perturbation Theory) module are then briefly discussed. Finally, the main features and computational accuracy of this new method are illustrated through its application to several representative reactor depletion problems

Availability note (English)

MF available from INIS under the Report Number; Available from NTIS., PC A09/MF A01.

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Publishing Information

Imprint Pagination
179 p.
Report number
ORNL/TM--7305