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Parallel implementation of a three-dimensional electrostatic PIC-MCC method using an unstructured tetrahedral mesh

机译:使用非结构化四面体网格并行实现三维静电PIC-MCC方法

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A parallel three-dimensional electrostatic particle-in-cell Monte Carlo Collision (PIC-MCC) code using an unstructured tetrahedral mesh is developed and validated in this paper. Poisson's equation is discretized by a nodal finite element method using a linear interpolation function. Charged-particle motion is traced cell by Cell using a leap-frog method and the Boris scheme. Code is validated using quasi-one-dimensional radiofrequency gas discharge by observing the bi-Maxwellian electron energy probability distribution function at low pressure. Parallel performance of the PIC code is tested using a three-dimensional radiofrequency gas discharge on a PC-cluster system. Results show that parallel efficiency of 83% can be achieved at 32 processors with dynamic domain decomposition.
机译:本文开发并验证了使用非结构化四面体网格的并行三维静电粒子内蒙特卡洛碰撞(PIC-MCC)代码。使用线性插值函数的节点有限元法离散泊松方程。使用跳蛙方法和Boris方案逐个单元跟踪带电粒子运动。通过在低压下观察双马克斯韦尔电子能量概率分布函数,使用准一维射频气体放电来验证代码。使用PC群集系统上的三维射频气体放电测试PIC代码的并行性能。结果表明,通过动态域分解,在32个处理器上可以达到83%的并行效率。

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