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首页> 外文期刊>Magnetics, IEEE Transactions on >An Improved XFEM With Multiple High-Order Enrichment Functions and Low-Order Meshing Elements for Field Analysis of Electromagnetic Devices With Multiple Nearby Geometrical Interfaces
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An Improved XFEM With Multiple High-Order Enrichment Functions and Low-Order Meshing Elements for Field Analysis of Electromagnetic Devices With Multiple Nearby Geometrical Interfaces

机译:具有多个高阶富集函数和低阶网格元素的改进XFEM,用于具有多个相邻几何界面的电磁设备的场分析

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摘要

This paper proposes an improved extended finite element method for modeling electromagnetic devices with multiple nearby geometrical interfaces. In regions near these interfaces, the magnetic vector potential approximation is enriched by incorporating multiple derivative discontinuous fields based on the partition of unity method such that the interfaces can be represented independent of the mesh. The support of a node or an element can be cut by several interfaces. This method results in the high accuracy in the approximation field and derivative field. Numerical examples applied to the iron core in 1-D eddy current field involving level set-based parts, error analysis, and electromagnetic field computations are provided to demonstrate the utility of the proposed approach.
机译:本文提出了一种改进的扩展有限元方法,用于建模具有多个附近几何界面的电磁设备。在这些界面附近的区域中,通过基于统一方法的划分并入多个导数不连续磁场,可以丰富磁矢量电势的近似值,从而可以独立于网格表示界面。节点或元素的支持可以通过多个接口来削减。该方法导致在近似场和导数场中的高精度。数值示例应用于一维涡流场中的铁芯,涉及基于水平集的零件,误差分析和电磁场计算,以证明该方法的实用性。

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