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Finite-element analysis of high-frequency axisymmetric device problems

机译:高频轴对称器件问题的有限元分析

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A finite-element scheme for solving wave propagation problems in devices with complete azimuthal symmetry both in their material properties and in their geometry is presented. The phi -coordinate variation is restricted to sin(n phi + xi ), thus requiring only a two-dimensional space for the complete finite-element analysis. The open radiating boundaries inherent in many propagation problems are tackled through simulated absorption of the radiation by lossy materials. Also proposed for these kinds of boundaries is a hybrid FEM-BEM (finite-element-method-boundary-element-method) formulation, based on the vector Green's function for the Helmholtz equation. This method has been tested by application to an open-ended circular waveguide and by a comparison with the simulated-absorption results.
机译:提出了一种在材料特性和几何形状上具有完全方位对称性的装置中解决波传播问题的有限元方案。 phi坐标的变化仅限于sin(n phi + xi),因此只需要一个二维空间即可进行完整的有限元分析。通过有损耗材料对辐射的模拟吸收,解决了许多传播问题中固有的开放辐射边界。针对这些类型的边界,还提出了基于Helmholtz方程的矢量格林函数的混合FEM-BEM(有限元方法-边界元方法)公式。该方法已通过应用于开放式圆形波导并与模拟吸收结果进行了比较测试。

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