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DOE OSTI · 23178716

Neutron diffusion calculation in heterogeneous geometry based on local/global iteration using proper orthogonal decomposition

Abstract

This study newly proposes a heterogeneous core calculation method based on local/global iteration using proper orthogonal decomposition (POD). By using the singular value decomposition (SVD) and the low-rank approximation, appropriate POD bases for expanding the neutron flux can be obtained from snapshot data of the neutron flux obtained by fine mesh calculations. By projection using the POD bases, the dimension of the target equation (e.g., discretized neutron diffusion equation) can be dramatically reduced. In the proposed method, POD is effectively applied to each single assembly calculation (local calculation). Furthermore, using the local/global iteration, the effective neutron multiplication factor and the neutron flux distribution in the whole core geometry can be obtained by combining the numerical results of the local calculation for each fuel assembly and the global calculation for the whole core. As a feasibility study, the proposed method is applied to a one-dimensional heterogeneous core analysis, and the accuracy is investigated by changing the total number of POD bases. (authors)

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BibTeXRIS

Ito, Masako, Endo, Tomohiro, Yamamoto, Akio, Masaoka, Yoshitada, Kodama, Yasuhiro, Nagano, Hiroaki. 2022-07-01. Neutron diffusion calculation in heterogeneous geometry based on local/global iteration using proper orthogonal decomposition. https://www.osti.gov/biblio/23178716

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