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Finite Element Method for the Electromagnetic Field Computation in Cylindrically Symmetric RF Structures

机译:圆柱对称射频结构中电磁场的有限元计算

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摘要

In this article a finite element method with special third-order elements for the computation of the TM_(0np) resonance modes and fields of cylindrically symmetric radio frequency (RF) structures is presented. The structure can be either an axially symmetric cavity resonator or a segment of a coaxial or a cylindrical waveguide, possibly can be reduced to an eigenvalue problem. In waveguides the computation domain is first closed by properly placed electric and magnetic walls. Then the field problem can be considered similarly as in the case of a cavity resonator, and any special boundary conditions at the ends of the waveguide are not needed. Thereafter, all possible wave forms, standing, traveling, and mixed waves, are obtained by appropriately combining these two resonant solutions. The locations of the walls are found by an iterative algorithm so that the given frequency of the electromagnetic field is the eigenvalue of the resulting cavity resonator. The developed methods are applied for the field computation in the TESLA accelerator structures.
机译:本文提出了一种具有特殊三阶元素的有限元方法,用于计算TM_(0np)共振模式和圆柱对称射频(RF)结构的场。该结构可以是轴对称腔谐振器,也可以是同轴或圆柱形波导的一部分,可能会简化为特征值问题。在波导中,首先通过适当放置的电壁和磁壁来关闭计算域。然后,可以类似于腔谐振器的情况来考虑场问题,并且不需要波导两端的任何特殊边界条件。此后,通过适当地组合这两种谐振解,可以获得所有可能的波形,包括驻波,行波和混合波。通过迭代算法找到壁的位置,以使电磁场的给定频率为所得腔谐振器的特征值。所开发的方法适用于TESLA加速器结构中的现场计算。

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