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Microwave gas breakdown in elliptical waveguides

机译:椭圆形波导中的微波气体击穿

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This paper analyzes the microwave gas discharge within elliptical waveguides excited by the fundamental mode. The Rayleigh-Ritz method has been applied to solve the continuity equation. The eigenvalue problem defined by the breakdown condition has been solved and the effective diffusion length of the elliptical waveguide has been calculated, what is used to find the corona threshold. This paper extends the microwave breakdown model developed for circular waveguides and shows the better corona withstanding capabilities of elliptical waveguides. The corona breakdown electric field threshold obtained with the variational method has been compared with the one calculated with the Finite Elements Method, showing excellent agreement.
机译:本文分析了基本模式激发的椭圆形波导内的微波气体放电。 Rayleigh-Ritz方法已应用于求解连续性方程。解决了由击穿条件定义的特征值问题,并计算了椭圆形波导的有效扩散长度,用它来找到电晕阈值。本文扩展了为圆形波导开发的微波击穿模型,并显示了椭圆形波导具有更好的耐电晕性能。用变分法获得的电晕击穿电场阈值与用有限元法计算得到的阈值进行了比较,显示出极好的一致性。

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