Numerical Investigations of Electromagnetic Oscillations and Turbulences in Hall Thrusters Using Two Fluid Approach

Sukhmander Singh, Bhavna Vidhani, Ashish Tyagi
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Abstract

The first part of the contributed chapter discuss the overview of electric propulsion technology and its requirement in different space missions. The technical terms specific impulse and thrust are explained with their relation to exhaust velocity. The shortcoming of the Hall thrusters and its erosion problems of the channel walls are also conveyed. The second part of the chapter discuss the various waves and electromagnetic instabilities propagating in a Hall thruster magnetized plasma. The dispersion relation for the azimuthal growing waves is derived analytically with the help of magnetohydrodynamics theory. It is depicted that the growth rate of the instability increases with magnetic field, electron drift velocity and collisional frequency, whereas it is decreases with the initial drift of the ions.
基于双流体方法的霍尔推力器电磁振荡和湍流数值研究
本章的第一部分讨论了电力推进技术的概况及其在不同空间任务中的要求。解释了技术术语比冲和推力与排气速度的关系。文中还介绍了霍尔推进器的缺点及其对沟道壁的侵蚀问题。本章第二部分讨论了霍尔推力器磁化等离子体中传播的各种波和电磁不稳定性。利用磁流体力学理论,解析导出了方位生长波的色散关系。不稳定性随磁场、电子漂移速度和碰撞频率的增大而增大,随离子的初始漂移而减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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