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Vibration of fusion reactor components with magnetic damping

机译:带有磁阻尼的聚变反应堆组件振动

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The aim of this paper is to assess the importance of the magnetic damping in the dynamic response of the main plasma facing components of fusion machines, under the strong Lorentz forces due to Vertical Displacement Events. The additional eddy currents due to the vibration of the conducting structures give rise to volume loads acting as damping forces, a kind of viscous damping, being these additional loads proportional to the vibration speed. This effect could play an important role when assessing, for instance, the inertial loads associated to VV movements in case of VDEs. In this paper, we present the results of a novel numerical formulation, in which the field equations are solved by adopting a very effective fully 3D integral formulation, not limited to the analysis of thin shell structures, as already successfully done in several approaches previously published. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文的目的是评估在垂直位移事件引起的强大洛伦兹力作用下,磁阻尼在聚变机主要面向等离子体的组件动态响应中的重要性。由于导电结构的振动而产生的附加涡流会引起体积阻尼力,这是一种粘性阻尼,是与振动速度成正比的这些附加阻尼。例如,在评估VDE时,这种影响在评估与VV运动相关的惯性负载时可能起重要作用。在本文中,我们介绍了一种新型数值公式的结果,其中采用非常有效的全3D积分公式求解了场方程,而不仅限于薄壳结构的分析,正如先前已在多种方法中成功完成的那样。 (C)2016 Elsevier B.V.保留所有权利。

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