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Gas heating effects on the formation and propagation of a microwave streamer in air

机译:气体加热对微波流光在空气中的形成和传播的影响

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摘要

The development of microwave plasma streamers at 110 GHz in atmospheric pressure air is numerically investigated taking into account the intense gas heating and its effects on the plasma formation and dynamics. The simulations are based on an implicit finite difference time domain formulation of Maxwell's equations coupled with a simple plasma fluid model and a real gas Euler equation solver. The numerical results show how the formation of a shock wave due to the large microwave power absorbed by the plasma and converted into gas heating strongly modifies the streamer elongation and dynamics. A microwave streamer filament stretches along its axis because of ionization-diffusion mechanisms in the enhanced electric field at the streamer tips. The change in the gas density distribution associated with the formation of shock wave due to gas heating strongly modifies the ionization and diffusion mechanisms and tends to limit the on-axis microwave streamer elongation by enhancing resonance effects. The simulations suggest that gas heating effects also play an important role in the observed bending or branching of microwave streamers after they have reached a critical length.
机译:考虑到强烈的气体加热及其对等离子体形成和动力学的影响,对在大气压力空气中110 GHz微波等离子体流的发展进行了数值研究。模拟基于麦克斯韦方程组的隐式有限差分时域公式,以及简单的等离子流体模型和实际气体欧拉方程求解器。数值结果表明,由等离子体吸收并转化为气体加热的大微波功率引起的冲击波的形成如何强烈地改变了拖缆的伸长率和动力学。微波流光灯丝沿其轴拉伸,这是由于在流光笔尖端处增强电场中的电离扩散机制所致。与气体加热引起的冲击波形成相关的气体密度分布的变化极大地改变了电离和扩散机制,并倾向于通过增强共振效应来限制同轴微波拖缆的伸长。模拟表明,气体加热效应在达到临界长度后,在观察到的微波拖缆的弯曲或分支中也起着重要作用。

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  • 来源
    《Journal of Applied Physics 》 |2015年第10期| 103301.1-103301.9| 共9页
  • 作者单位

    ONERA-The French Aerospace Lab, 2 Avenue Edouard Belin, 31000 Toulouse, France,LAPLACE (Laboratoire Plasma et Conversion d' Energie), Universite de Toulouse, UPS, INPT, 118 route de Narbonne, F-31062 Toulouse Cedex 9, France,ISAE, 10 Avenue Edouard Belin, 31400 Toulouse, France;

    ONERA-The French Aerospace Lab, 2 Avenue Edouard Belin, 31000 Toulouse, France;

    LAPLACE (Laboratoire Plasma et Conversion d' Energie), Universite de Toulouse, UPS, INPT, 118 route de Narbonne, F-31062 Toulouse Cedex 9, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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