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Magnetothermohydraulic behavior of the molten layer of a first wall due to plasma disruption

H. Hashizume, Y. Yoshida, K. Miya, K. Ioki1989年Fusion Engineering and DesignIF 1.7出版社

The splashing phenomenon of molten alloy caused by a major disruption in the plasma is one of the most important problems from the viewpoint of reduction of the first wall thickness. In order to evaluate the splash, we have to treat the coupled problem of melting, electromagnetic forces, and magnetohydrodynamics.It is, however, very difficult to solve the coupled problem exactly. Therefore each issue is independently solved by numerical analyses and the coupled phenomena are approximately evaluated based on a simple model using the results obtained by the uncoupled analyses.The result obtained by the analysis shows that about half of the molten layer could be splashed out by the electromagnetic force due to eddy currents when the decay times of the thermal and current quench are assumed to be the same, 10 ms.

日本語訳

核融合プラズマにおける大規模ディスラプションによって引き起こされる溶融合金の飛散現象は、第一壁の厚さ低減の観点から最も重要な問題の一つである。この飛散を評価するためには、溶融、電磁力、および電磁流体力学の連成問題を扱わなければならない。しかしながら、連成問題を厳密に解くことは非常に困難である。そこで、各課題を独立に数値解析によって解き、非連成解析によって得られた結果を用いて簡易モデルに基づき連成現象を近似的に評価する。解析によって得られた結果は、熱クエンチと電流クエンチの減衰時間が同じ10 msであると仮定した場合、溶融層の約半分が渦電流による電磁力によって飛散し得ることを示している。

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