Analytic function expansion nodal method for multigroup diffusion equations in cylindrical (r, theta, z) geometry

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A coarse-mesh nodal method in cylindrical (r, 0, z) geometry, e.g., of pebble bed reactors, based on the analytic function expansion nodal (AFEN) methodology, is described in this paper. Two unique features are (a) no use of transverse integration-allowing a nodal scheme in (r, 0, z) geometry-and (b) nodal solution expressed in terms of analytic basis functions-leading to high accuracy and readily available reconstruction of homogeneous flux distributions. Additional features of multigroup formulation, two methods of void region treatment, and coarse-group-rebalance acceleration are implemented in the TOPS code and tested on several benchmark problems, including the Organisation far Economic Co-operation and Development/Nuclear Energy Agency PBMR-400 Benchmark Problem. The TOPS results are in excellent agreement with those of the VENTURE code, using significantly less computer
Publisher
AMER NUCLEAR SOC
Issue Date
2008-07
Language
English
Article Type
Article
Keywords

NEUTRON DIFFUSION

Citation

NUCLEAR SCIENCE AND ENGINEERING, v.159, no.3, pp.229 - 241

ISSN
0029-5639
URI
http://hdl.handle.net/10203/92373
Appears in Collection
NE-Journal Papers(저널논문)
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