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Three-Dimensional Magnetostatic Analysis Using Structured Mesh and Nodal Elements

机译:基于结构化网格和节点单元的三维静磁分析

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A structured mesh consisting of uniform, undistorted or regular shaped elements is easy to generate because it does not conform to the geometry. In order to use such a mesh for analysis, the geometry has to be represented independently of the mesh. To apply essential boundary conditions when nodes are not present on the boundary, the implicit boundary method was developed which uses solution structures constructed using approximate step functions. In this paper, this method is extended to solve 3-D magnetostatics and magnetic force computation problems that typically involve an assembly of parts made of several different materials. Traditional nodal elements are used, with specially constructed solution structures, to represent test and trial functions such that both boundary and interface conditions are enforced. Several magnetostatic problems with known solutions are modeled to validate the method.
机译:由均匀,不变形或规则形状的元素组成的结构化网格很容易生成,因为它不符合几何形状。为了使用这种网格进行分析,必须独立于网格来表示几何形状。为了在边界上不存在节点时应用基本边界条件,开发了隐式边界方法,该方法使用了使用近似阶跃函数构造的解结构。在本文中,此方法已扩展为解决3-D静磁和磁力计算问题,这些问题通常涉及由几种不同材料制成的零件的组装。使用传统的节点元素以及特殊构造的解决方案结构来表示测试和试验功能,以便同时执行边界条件和界面条件。对已知解决方案的几个静磁问题进行建模以验证该方法。

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