Finite element analysis of stresses and deformations occurring in the spent nuclear fuel (SNF) disposal canister deposited in a deep geological repository

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초록

Numerical computer experimental methodologies are investigated for the weight reduction of a spent nuclear fuel (SNF) disposal canister designed to be deposited in a Korean deep geological repository from a pressurized water reactor (PWR). Finite element analyses of stresses and deformations occurring inside the cylindrical canister under the deposited conditions are performed to assess its structural strength at various rotation angles (phi) of the SNF basket. Specifically, the cross sections of four square tube shaped SNF baskets (assemblies) contained in the canister are rotated. Using a conventional structural analysis and a Kriging method, an optimal rotation angle is determined in relation to canister diameter and weight. Both sets of results are in agreement. It was also determined that the computed deformation changes slightly in relation to variances in rotation angle, while the stress incurred inside the cast iron insert of the canister noticeably changes reaching its highest value at phi = 45 degrees while still maintaining safe structural integrity. It is concluded that the diameter of the canister can be reduced from its original design value (102 cm) to 95.8463 cm resulting in a similar to 16.0% reduction in canister weight for an optimal rotation angle of 45 degrees. (C) 2013 Elsevier B.V. All rights reserved.

키워드

DECOVALEX-III PROJECTNEAR-FIELD SAFETYWASTE REPOSITORYBMT1PERFORMANCEHEAT
제목
Finite element analysis of stresses and deformations occurring in the spent nuclear fuel (SNF) disposal canister deposited in a deep geological repository
저자
Wang, BoGea, Hae ChangKwon, Young Joo
DOI
10.1016/j.nucengdes.2013.10.030
발행일
2014-01
유형
Article
저널명
Nuclear Engineering and Design
266
페이지
166 ~ 179