高频非线性磁性材料的磁-热联合模拟

Su Yan, J. Kotulski, Jianming Jin
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引用次数: 1

摘要

针对非线性磁性材料的建模与仿真,提出了一种磁-热耦合求解器。采用温度相关的动态磁滞模型,根据麦克斯韦方程组的解对磁损耗进行表征和计算,磁损耗是热问题中的热源。通过求解热问题,得到了温度的变化,并量化了其对磁性材料性质的影响,然后将其耦合回麦克斯韦方程组。所得到的磁-热耦合系统可以同时求解电磁场和温度,因此可以同时解释高频操作中的电磁和热响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic-thermal co-simulation of nonlinear magnetic materials at high frequencies
A coupled magnetic-thermal solver is developed for the modeling and simulation of nonlinear magnetic materials. By adopting a temperature-dependent dynamic hysteresis model, the magnetic loss is characterized and calculated from the solution of Maxwell's equations, which serves as the heat source in the thermal problem. By solving the thermal problem, the temperature shift is obtained and its effect on the magnetic material property can be quantified, which is then coupled back to Maxwell's equations. The resulting coupled magnetic-thermal system can be solved for both the electromagnetic fields and the temperature, and hence, account for both the electromagnetic and the thermal responses in a high-frequency operation.
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