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New high quality adaptive mesh generator utilized in modelling plasma streamer propagation at atmospheric pressures

机译:新型高质量自适应网格发生器,用于模拟等离子流在大气压下的传播

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摘要

A new adaptive mesh generator has been developed and used in the analysis of high-pressure gas discharges, such as avalanches and streamers, reducing computational times and computer memory needs significantly. The new adaptive mesh generator developed, uses normalized error indicators, varying from 0 to 1, to guarantee optimal mesh resolution for all carriers involved in the analysis. Furthermore, it uses h- and r-refinement techniques such as mesh jiggling, edge swapping and node addition/removal to develop an element quality improvement algorithm that improves the mesh quality significantly and a fast and accurate algorithm for interpolation between meshes. Finally, the mesh generator is applied in the characterization of the transition from a single electron to the avalanche and streamer discharges in high-voltage, high-pressure gas discharges for dc 1 mm gaps, RF 1 cm point-plane gaps and parallel-plate 40 MHz configurations, in ambient atmospheric air.
机译:已开发出一种新型自适应网格生成器,并将其用于分析高压气体放电(例如雪崩和拖缆),从而大大减少了计算时间并大大减少了计算机内存需求。新开发的自适应网格生成器使用归一化误差指标(范围从0到1),以确保分析中涉及的所有载波的最优网格分辨率。此外,它使用诸如网格跳动,边缘交换和节点添加/删除之类的h和r精炼技术来开发可显着提高网格质量的元素质量改进算法以及用于网格之间插值的快速准确算法。最后,将网格发生器应用于表征从单电子到雪崩的转变,并在高压,高压气体放电中对流进行放电,直流间隙为1 mm,RF间隙为1 cm的点平面间隙和平行板在周围大气中为40 MHz配置。

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