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PARAMETERS OF A PLUNGER CORE REACTOR WITH PARALLEL WINDING PATHS OBTAINED FROM VOLTAGE DRIVEN FINITE ELEMENT ANALYSES

机译:柱塞芯反应器的参数与电压驱动有限元分析中的平行绕组路径分析

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The steady-state operational parameters of a plungercore reactor with four parallel connected winding paths are 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 sinusoidal voltage and the parallel windings paths. Consequently, the distribution of the coil currents is obtained with the full influence of the axial position of the plunger core. With regard to the mechanical design, the Lorentz forces acting on the windings and the Maxwell forces acting on the plunger core are additionally calculated in dependence of the plunger core air-gap.
机译:通过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PLUngercore反应器的稳态操作参数。因此,3D有限元模型利用直接电路耦合来考虑所施加的正弦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线圈电流的分布。关于机械设计,作用在绕组上的洛伦兹力以及作用在柱塞芯上的麦克风力的依赖性地根据柱塞芯气隙计算。

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