Published November 1980 | Version v1
Report Open

Approximate solutions for the two-dimensional integral transport equation. Solution of complex two-dimensional transport problems

Description

This work is divided into two parts: the first part deals with the solution of complex two-dimensional transport problems, the second one (note CEA-N-2166) treats the critically mixed methods of resolution. A set of approximate solutions for the isotropic two-dimensional neutron transport problem has been developed using the interface current formalism. The method has been applied to regular lattices of rectangular cells containing a fuel pin, cladding, and water, or homogenized structural material. The cells are divided into zones that are homogeneous. A zone-wise flux expansion is used to formulate a direct collision probability problem within a cell. The coupling of the cells is effected by making extra assumptions on the currents entering and leaving the interfaces. Two codes have been written: CALLIOPE uses a cylindrical cell model and one or three terms for the flux expansion, and NAUSICAA uses a two-dimensional flux representation and does a truly two-dimensional calculation inside each cell. In both codes, one or three terms can be used to make a space-independent expansion of the angular fluxes entering and leaving each side of the cell. The accuracies and computing times achieved with the different approximations are illustrated by numerical studies on two benchmark problems and by calculations performed in the APOLLO multigroup code

Availability note (English)

MF available from INIS under the Report Number.

Abstract (French)

Ce travail est divise en deux parties: la premiere est dediee a la resolution des problemes de transport en geometries bidimensionnelles complexes, la seconde (note CEA-N-2166) etudie theoriquement les methodes mixtes de resolution. Un groupe de solutions approchees de l'equation integrale du transport a ete developpe pour les geometries bidimensionnelles en utilisant le formalisme du courant d'interface. La methode a ete appliquee aux assemblages heterogenes de reacteur. Les cellules sont divisees en zones homogenes; on utilise une formulation directe des probabilites de collision a l'interieur de la cellule tandis que le couplage entre les cellules met en oeuvre des hypotheses sur les courants entrants et sortants. Deux modules ont ete ecrits: CALLIOPE utilise un modele cylindrise et un developpement optimal du flux a un ou trois termes, NAUSICAA utilise un veritable calcul a deux dimensions a l'interieur de chaque cellule. Dans les deux modules les courants entrants et sortants peuvent etre representes par un ou trois termes. La precision et les temps de calculs necessaires avec les differentes approximations sont illustres par plusieurs calculs tests ainsi que par les calculs effectues dans le code multigroupe APOLLO

Files

12596406.pdf

Files (5.5 MB)

Name Size Download all
md5:8d6630a1c211bfb33d9c271775eaf064
5.5 MB Preview Download

Additional details

Additional titles

Original title (French)
Quelques schemas approximatifs dans la resolution par la methode des probabilite de collision de l'equation integrale du transport a deux dimensions

Publishing Information

Imprint Pagination
326 p.
Report number
CEA-N--2165

INIS

Country of Publication
France
Country of Input or Organization
France
INIS RN
12596406
Subject category
S22: GENERAL STUDIES OF NUCLEAR REACTORS;
Resource subtype / Literary indicator
Thesis
Descriptors DEI
BENCHMARKS; COMPUTER CODES; INTEGRAL EQUATIONS; MULTIGROUP THEORY; NEUTRON FLUX; NEUTRON TRANSPORT THEORY; REACTOR CELLS; REACTOR KINETICS EQUATIONS; TWO-DIMENSIONAL CALCULATIONS; WATER COOLED REACTORS
Descriptors DEC
EQUATIONS; RADIATION FLUX; REACTORS; TRANSPORT THEORY