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Simulation of the local electric field at the tips of a growing streamer at the breakdown in liquid dielectric

机译:在液体电介质击穿时生长的拖缆尖端处的局部电场模拟

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The simulations of the growth of branching streamer structures were performed for the electrode gap of the length up to 1 mm in a point - plane geometry. The stochastic model of growth developed earlier was used. The parallel algorithm for Graphic Processing Units (GPU) was specially designed for high-performance computations of the electric field, the charge transfer and the stochastic growth. This allowed us to perform the simulations on very large lattices with the sizes not less than 400×400×400 nodes for the time intervals of order of 1 microsecond. The simulations were performed at the realistic physical scales in space and in time for the first time. The estimations of the electric field strength at the tips of the growing streamer as well as the average conductivity of streamer channels were made for the streamers with velocities about 5 km/s. The electric field at the streamer tips of about 20 MV/cm was approximately constant during the growth.
机译:在点-平面几何结构中,对长度不超过1 mm的电极间隙,进行了分支拖缆结构生长的模拟。使用了较早发展的随机增长模型。图形处理单元(GPU)的并行算法是专为高性能计算电场,电荷转移和随机增长而设计的。这使我们能够在1微秒数量级的时间间隔内对尺寸不小于400×400×400节点的非常大的晶格执行仿真。首次以真实的物理尺度在空间和时间上进行了模拟。对于速度约为5 km / s的拖缆,估算了正在生长的拖缆末端的电场强度以及拖缆通道的平均电导率。在生长过程中,流光尖端处的电场约为20 MV / cm。

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