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Please use this identifier to cite or link to this item: http://hdl.handle.net/11375/23526
Title: Simulation of the Equilibrium Operation of a Candu Reactor and Studies of the Collapsing Procedure in the Fuel Management Design Program
Authors: Olive, Charles
Advisor: Trojan, O. A.
Department: Engineering Physics
Keywords: equilibrium operation;collapsing procedure;fuel management;design program;simulation;CANDU reactor
Publication Date: Apr-1977
Abstract: Estimates of fuel management data for the equilibrium operation of a specific CANDU reactor have been obtained by simulating a period of the reactor's history using the Fuel Management Design Program (FMDP). The collapsing procedure in FMDP has been tested and improved. This procedure prepares a coarse mesh model of the reactor core from a detailed fine mesh calculation. The program calculates a set of coarse mesh parameters which, when used in the flux calculation, will regenerate exactly the same eigenvalue and flux distribution as the fine mesh model. These parameters can then be used with the coarse mesh, to calculate flux distributions for a series of perturbations from the reference calculation used in collapsing. Several coarse mesh models were generated and studied. It was found that coarse mesh calculations with collapsed parameters result in large savings in computing costs compared to the same calculations with fine mesh, but with very little loss in accuracy.
URI: http://hdl.handle.net/11375/23526
Appears in Collections:Digitized Open Access Dissertations and Theses

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