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首页> 外文期刊>International journal of computational methods >A Gradient Weighted Finite Element Method (GW-FEM) for Static and Quasi-Static Electromagnetic Field Computation
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A Gradient Weighted Finite Element Method (GW-FEM) for Static and Quasi-Static Electromagnetic Field Computation

机译:静态加权有限元方法(GW-FEM),用于静态和准静态电磁场计算

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摘要

This paper presented a Gradient Weighted Finite Element Method (GW-FEM) for solving electromagnetic problems. First, the analysis domain is discretized into a set of triangular or tetrahedral elements which are easy to automatically generate. Then, Gradient Weighted influence domains are further constructed by the center element with all the adjacent elements. The Galerkin Weak form is evaluated based on these influence domains. The GW-FEM is employed here for the solution of static and quasi-static electromagnetic problems by using linear triangular or tetrahedral elements. All the properties of GW-FEM are proved theoretically and analyzed in detail. Consistency between four benchmark results is obtained by GW-FEM and analytical results verify the accuracy, stability, and potential of this method. It turns out that GW-FEM possesses potentials in the applications of electromagnetic problems.
机译:本文介绍了一种用于解决电磁问题的梯度加权有限元方法(GW-FEM)。 首先,分析域被离散化成一组三角形或四面体元件,这易于自动生成。 然后,梯度加权影响域通过具有所有相邻元件的中心元件进一步构造。 基于这些影响域评估Galerkin弱形式。 这里使用GW-FEM用于通过使用线性三角形或四面体元件来解决静态和准静态电磁问题。 理论上证明了GW-FEM的所有特性并详细分析。 通过GW-FEM和分析结果获得四个基准结果之间的一致性验证了该方法的准确性,稳定性和潜力。 事实证明,GW-FEM具有电磁问题的应用中的潜力。

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