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首页> 外文期刊>IEEE Transactions on Plasma Science >Analysis of Multipactor Effects by a Particle-in-Cell Algorithm Integrated With Secondary Electron Emission Model on Irregular Grids
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Analysis of Multipactor Effects by a Particle-in-Cell Algorithm Integrated With Secondary Electron Emission Model on Irregular Grids

机译:结合二次电子发射模型的单元格粒子算法在不规则网格上的多极效应分析

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We combine a novel finite-element-based electromagnetic particle-in-cell (EM-PIC) algorithm for the solution of Maxwell-Vlasov equations on irregular (unstructured) grids together with the Furman-Pivi probabilistic model governing the secondary electron emission process. The algorithm can be used for the analysis of resonant electron discharging phenomena (multipactor effects) in high-power radio frequency devices. In contrast to previous algorithms, the present EM-PIC algorithm yields a self-consistent time update of fields and particles on irregular grids with energy and charge conservation obtained from first principles. The use of unstructured grids enables local mesh refinement and simulation of complex geometries with minimal geometric defeaturing. We apply the algorithm to model multipactor effects on waveguides with flat or corrugated walls. We contrast the evolution of the electron population in various cases and investigate the respective saturation processes arising from self-field counterbalancing effects.
机译:我们结合了一种新颖的基于有限元的电磁单元格内EM-PIC算法,用于求解不规则(非结构化)网格上的Maxwell-Vlasov方程,以及控制二次电子发射过程的Furman-Pivi概率模型。该算法可用于分析大功率射频设备中的共振电子放电现象(多极效应)。与以前的算法相比,本发明的EM-PIC算法通过从第一个原理获得的能量和电荷守恒来产生不规则网格上的场和粒子的自洽时间更新。使用非结构化网格可以在最小化几何变形的情况下进行局部网格优化和复杂几何图形的模拟。我们应用该算法对具有平坦或波纹壁的波导上的多导效应进行建模。我们对比了各种情况下电子种群的演化,并研究了由自电场平衡效应引起的各个饱和过程。

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