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Novel Solution to Eddy-Current Heating of Ferromagnetic Bodies with Nonlinear B-H Characteristic Dependent on Temperature

机译:用非线性B-H特性依赖于温度的涡流加热铁磁体加热的新溶液

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An efficient solution is presented for coupled nonlinear eddy currents - thermal diffusion problems. Applying the fixed point polarization method to the nonlinear eddy-current field, with the magnetization dependent on the magnetic induction and on temperature, allows the field computation for each harmonic separately. Since the fictitious permeability can be chosen to be everywhere that of free space, the matrices of the linear systems to be solved at each iteration remain unchanged even when the nonlinear B-H characteristic changes with the temperature. A simple integral equation is used to compute the eddy currents, the inversion of the matrices corresponding to the harmonics being performed only once, before the beginning of the iterative process. The heat conduction - diffusion equation is solved at each time step by the finite element method. An illustrative example is also presented.
机译:提出了一种有效的解决方案,用于耦合非线性涡流 - 热扩散问题。将固定点极化方法应用于非线性涡流场,磁化取决于磁感应和温度,允许分别对每个谐波的现场计算。由于可以选择虚拟渗透率,因此在自由空间的各处,即使当非线性B-H特性随温度的变化时,在每个迭代时待解决的线性系统的矩阵也保持不变。使用简单的整体式方程来计算涡流,在迭代过程开始之前仅执行一次谐波的矩阵的反转。通过有限元方法在每次逐步解决导热漫射方程。还呈现了说明性示例。

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