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Transient Currents and Forces of a Plunger Core Reactor by using 3D Field-Circuit Coupled Finite Element Analyses

机译:柱塞芯反应器的瞬态电流和力通过使用3D场电路耦合有限元分析分析

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摘要

The transient behaviour of a plunger core reactor with four parallel connected winding paths is calculated from voltage driven finite element analyses. Thereby, the 3D finite element model utilizes a direct circuit coupling to take into account for the applied voltage and the parallel windings paths. Consequently, the unknown coil currents are obtained with the full influence of the axial position of the plunger core. Moreover, the Lorentz forces acting on the coil windings and the Maxwell forces acting on the plunger core are calculated in dependence of the plunger core air-gap.
机译:从电压驱动的有限元分析计算具有四个平行连接绕组路径的柱塞芯反应器的瞬态行为。因此,3D有限元模型利用直接电路耦合来考虑施加的电压和平行绕组路径。因此,通过柱塞芯的轴向位置的充分影响获得未知的线圈电流。此外,作用在线圈绕组上的洛伦兹力和作用在柱塞芯上的麦克斯韦力的依赖性计算在柱塞芯气隙的依赖性计算。

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