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Numerical analysis of magnetoelastic buckling of fusion reactor components

K Demachi, Y Yoshida, K Miya1995年Fusion Engineering and DesignIF 1.7出版社

AbstractThis paper describes a numerical analysis of the buckling of fusion reactor components, resulting from electromagnetic loads. An analysis method for the calculation of the dynamic electromagnetically coupled buckling is proposed, where the geometrical non-linearity, the magnetic damping and the magnetic stiffness effects are taken into consideration. In the cases of the analysis of a shallow arch, the numerical results agreed well with the experimental results. The comparison showed that the inclusion of the geometrical non-linearity and the magnetic stiffness in the analysis is evidently necessary for good agreement. The analysis of the ITER vacuum vessel showed that, in the case of plasma disruption, the possiblity of electromagnetic buckling of the ITER vessel is very small under the conceptual design activity condition.

日本語訳

本論文は、電磁荷重に起因する核融合炉構成要素の座屈に関する数値解析について述べている。幾何学的非線形性、磁気減衰および磁気剛性効果を考慮した、動的電磁連成座屈の解析手法を提案している。浅いアーチの解析事例において、数値解析結果は実験結果と良好に一致した。この比較により、良好な一致を得るためには、解析において幾何学的非線形性と磁気剛性を含めることが明らかに必要であることが示された。ITER真空容器の解析事例では、概念設計活動条件において、プラズマディスラプション時のITER容器の電磁座屈の可能性は非常に小さいことが示された。

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