稀冷等离子体电位和电子温度的数值研究

Shiying Cai, Chunpei Cai, Zhen Zhang
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引用次数: 0

摘要

模拟结果展示了电子在稀等离子体和冷等离子体中的温度和电势发展。模拟方法是一种混合方法,由于电子的高流动性,采用了流体模型,而重离子和中子则采用直接模拟蒙特卡洛法和粒子内胞法。流体包括稳定、启动和关闭三种情况。目的是说明最近开发的几个公式所预测的指数行为。这些公式包括许多与局部特性相关的系数,而且很难确定。因此,这些趋势只能通过数值模拟来有效证明,而数值模拟比实验测量更方便。结果证实了几个事实。对于稳定的等离子体流,电子温度和电势曲线是平滑的,很可能可以用指数函数来近似。对于非稳态流,关闭或启动过程中的特性发展趋势是单调变化的。此外,在梯度较大的位置,属性变化趋势不如上述公式理想。这与这些公式的假设是一致的。
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Numerical Investigations on Dilute Cold Plasma Potential and Electron Temperature
Simulation results are presented to demonstrate electron temperature and electrical potential development in dilute and cold plasma development. The simulation method is a hybrid method which adopted fluid model for electrons due to their high mobility, while heavy ions and neutrals are modelled with the direct simulation Monte Carlo and Particle-In-Cell methods. The flows include steady, starting-up and shutting-down scenarios. The goal is to illustrate the exponential behaviors which were predicted in several recently developed formulas. Those formulas include many coefficients related with local properties, and they are difficult to determine. Hence, those trends can only efficiently demonstrate by numerical simulations which are more convenient than experimental measurements. The results confirm several facts. For steady plasma flows, the electron temperature and potential profiles are smooth, very likely, they can be approximated with exponential functions. For unsteady flows, the property developing trends in the shutting down or starting-up processes change monotonically. Further, at locations with large gradients, the property change trends are less ideal than those formulas. This is consistent with the assumptions with which those formulas were developed.
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