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Simulation of Trichel streamer pulse characteristics at various air pressures and humidity

机译:在不同气压和湿度下的Trichel拖缆脉冲特性仿真

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Trichel streamer pulses have been simulated at various air pressures and humidities. A flux-corrected transport algorithm based on a non-uniform mesh was applied to solve the continuity equations and Poisson's equation in a fluid model to calculate the negative streamer pulse waveforms. The values of the various coefficients for humid air, considered as a mixture of air and water vapor, were estimated by linear interpolation from the values for the separate 'gases'. The simulation results agreed with the trends in the experimental results of our previous study: the average amplitudes of the negative streamers decreased with a rise of pressure or humidity. The decrease of current amplitude with the rise of pressure was mainly due to the decrease in the electron density and hence the conductivity of the streamer channel as a result of the increase of attachment rate.
机译:已在各种气压和湿度下模拟了Trichel流光脉冲。应用基于非均匀网格的流量校正输运算法求解流体模型中的连续性方程和泊松方程,以计算负拖缆脉冲波形。湿空气的各种系数的值(被视为空气和水蒸气的混合物)通过线性插值法从单独的“气体”的值中估算出来。模拟结果与我们先前研究的实验结果趋势一致:负压拖缆的平均振幅随压力或湿度的升高而降低。电流幅度随压力的升高而降低,主要是由于电子密度的降低,因此,由于附着速率的提高,流光通道的电导率降低。

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