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The Numerical Simulation of Plasma Flow in Cylindrical Resonant Cavity of Microwave Plasma Thruster

机译:微波等离子体推进器圆柱形谐振腔中等离子体流动的数值模拟

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Microwave Plasma Thruster (MPT) is an electro-thermal propulsive device. MPT consists of microwave generator, gas storing and supplying system, resonant cavity and accelerative nozzle. It generates free-floating plasma brought by the microwave discharge breakdown gas in the resonant cavity, and the plasma exhausted from nozzle produces thrust. MPT has prospective application in spacecraft because of its advantages of high thrust, moderate specific impulse and high efficiency. In this paper, the numerical simulation of the coupling flow field of microwave plasma in resonant cavity under different frequencies will be discussed. The results of numerical simulation are as follows: 1) When the resonant model TM_011 was used, the higher the microwave frequency was, the smaller the size of MPT. The distribution of the electromagnetic field in small cavity, however, remained unchanged. 2) When the resonant model was used, the distribution of the temperature, the pressure and the electronic density in the resonant cavity remained unchanged under different resonant frequencies. 3) When the resonant frequency was increased with a fixed pressure distribution in a small cavity, compare to the MPT with lower frequency, the gas flow rate, the microwave power and the nozzle throat diameter of MPT all decreased. And the thrust of MPT became small. 4) The electromagnetic field in the cylindrical resonant cavity for all MPT with different frequencies was disturbed by the plasma formation The strong disturbance happened in the region close to the plasma
机译:微波等离子体推进器(MPT)是电热推进装置。 MPT由微波发电机,燃气储存和供应系统,谐振腔和加速喷嘴组成。它产生通过谐振腔中的微波排放击穿气体带来的自由浮动等离子体,并且从喷嘴排出的等离子体产生推力。 MPT由于其高强度,适度的特异性脉冲和高效率优势,在航天器中具有潜在应用。本文将讨论在不同频率下谐振腔中微波等离子体耦合流场的数值模拟。数值模拟的结果如下:1)当使用谐振模型TM_011时,微波频率越高,MPT的尺寸越小。然而,小腔中的电磁场的分布保持不变。 2)当使用谐振模型时,在不同的共振频率下,谐振腔中的温度,压力和电子密度的分布保持不变。 3)当谐振频率随着小腔内的固定压力分布而增加时,与MPT的较低频率,气流速率,微波功率和喷嘴喉部的MPT进行比较。 MPT的推力变小了。 4)具有不同频率的所有MPT的圆柱形谐振腔中的电磁场被等离子体形成受到靠近等离子体的区域发生的强烈扰动

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