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首页> 外文期刊>Plasma Science, IEEE Transactions on >Computational Studies of Filamentary Pattern Formation in a High Power Microwave Breakdown Generated Air Plasma
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Computational Studies of Filamentary Pattern Formation in a High Power Microwave Breakdown Generated Air Plasma

机译:高功率微波击穿产生的空气等离子体中丝状图案形成的计算研究

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摘要

Simulations of the dynamics of high power microwave breakdown of air at atmospheric pressure and 110 GHz are presented. The model reproduces well the formation and motion of filamentary plasma arrays observed experimentally with fast camera imaging. The numerical model is based on finite-difference time domain solutions of Maxwell equations coupled with a simple fluid description of the plasma growth and diffusion. The computational procedure is discussed in details along with numerical experiments, to show the sensitivity of the results to different numerical parameters.
机译:提出了在大气压和110 GHz下空气对大功率微波击穿的动力学模拟。该模型很好地再现了通过快速相机成像实验观察到的丝状等离子体阵列的形成和运动。数值模型基于麦克斯韦方程组的有限差分时域解以及对等离子体生长和扩散的简单流体描述。详细讨论了计算过程,并进行了数值实验,以显示结果对不同数值参数的敏感性。

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