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A numerical study on bow shocks around the lightning return stroke channel

机译:雷击回旋通道周围弓激波的数值研究

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摘要

Bow shock structures are important to various hydrodynamics and magnetohydrodynamics (MHD) phenomena in geophysics and astrophysics. The formation and propagation of bow shocks around the lightning return stroke channel are investigated based on the self-similar motion theory and simulated with a two-dimensional Eulerian finite volume resistive radiation MHD code. In this framework, as verification of theoretical models, the evolving structures of many quantities, such as the plasma density, temperature, pressure, shock velocity, and magnetic field, can be obtained, which present all the characteristics of bow shocks in the lightning return stroke processes. The evolution characteristics and the configuration of the curved return stroke channels, e.g., the non-ideal effects and the scaling laws, are discussed in detail. The results may have applications for some observed features of the return stroke channels and other phenomena in the lightning discharge plasmas. (C) 2015 AIP Publishing LLC.
机译:弓形激波结构对于地球物理和天体物理学中的各种流体动力学和磁流体动力学(MHD)现象都很重要。基于自相似运动理论,研究了雷击返回通道周围弓形激波的形成和传播,并利用二维欧拉有限体积电阻辐射MHD代码进行了模拟。在此框架下,作为理论模型的验证,可以获得等离子密度,温度,压力,冲击速度和磁场等许多量的演化结构,这些结构都表现出雷电返回中弓形冲击的所有特征。中风过程。详细讨论了弯曲的回程通道的演变特征和配置,例如非理想效果和缩放定律。结果可能适用于回程通道的某些观察到的特征以及雷电放电等离子体中的其他现象。 (C)2015 AIP Publishing LLC。

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