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Nonlinear Eddy Current Analysis by Boundary Integral Equation of One Component Utilizing Impedance Boundary Condition

机译:利用阻抗边界条件通过一分量边界积分方程进行非线性涡流分析

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摘要

Since the magnetic permeability of steel is comparatively high, the skin depth may be a few millimeters even at a low frequency such as 50 Hz. And so, the impedance boundary condition (IBC) works effectively in most of the eddy current analyses. However the IBC is originally defined on the basis that the material property is linear, and so, in order to apply the IBC to nonlinear materials, we introduce a nonlinear IBC. With the help of the nonlinear IBC, we lessen the unknowns of the integral equations to give the boundary value to one and derive an integral equation with a loop current as the state variable. In order to check the adequacy and effectiveness of the proposed approach, we solve a typical eddy current problem while comparing computed results by the full equations and FEM.
机译:由于钢的磁导率比较高,因此即使在诸如50Hz的低频下,趋肤深度也可以是几毫米。因此,阻抗边界条件(IBC)在大多数涡流分析中均有效。但是,IBC最初是基于材料特性是线性的来定义的,因此,为了将IBC应用于非线性材料,我们引入了非线性IBC。借助于非线性IBC,我们减少了积分方程的未知数,将边界值赋予1,并导出了以回路电流作为状态变量的积分方程。为了检查所提方法的充分性和有效性,我们解决了典型的涡流问题,同时通过完整方程和有限元方法对计算结果进行了比较。

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