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Numerical Modeling of Rotating Spokes in Hall Thruster Discharge Plasma

机译:霍尔推进器排出等离子体旋转辐条的数值模拟

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Rotating spoke is a coherent structure observed in cross-field devices, such as Hall effect thrusters (HETs), magnetrons, and Penning discharges. In spite of being frequently observed in the experiments, it has been numerically challenging to perform stable calculations using electron fluid models to model rotating spokes. It is suggested that the electron fluid model using drift-diffusion approximation is mathematically ill-conditioned due to the differences (e.g. 100-1000 times) in the characteristic speeds of the electron velocity in the axial and azimuthal directions 1. We have developed a robust pseudo-time stepping method that solves the diffusion equation to model magnetized electron fluid 2, which uses the drift-diffusion model but can be calculated more robustly and stably by adding time derivative terms. The steady-state solution is the converged solution of the diffusion equation. This model has been used to model the discharge plasma in HETs in the radial-axial direction.
机译:旋转辐条是在跨场装置中观察到的相干结构,例如霍尔效应推进器(HETS),磁控管和捏合放电。尽管在实验中经常观察到,但是使用电子流体模型对模型旋转辐条进行稳定的计算,这一直挑战。建议使用漂移扩散近似的电子流体模型是由于轴向和方位角方向上电子速度的特征速度的差异(例如100-1000次)而产生的数学不足 1 。我们开发了一种坚固的伪时间步进方法,解决了模拟磁化电子流体的扩散方程 2 ,它使用漂移扩散模型,但是通过添加时间衍生术语可以更加强大地稳定地计算。稳态解决方案是扩散方程的收敛溶液。该模型已用于在径向轴向上模拟HET中的放电等离子体。

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