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Kinetic particle simulation of discharge and wall erosion of a Hall thruster

机译:霍尔推进器排放和壁腐蚀的动力学粒子模拟

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摘要

The primary lifetime limiting factor of Hall thrusters is the wall erosion caused by the ion induced sputtering, which is predominated by dielectric wall sheath and pre-sheath. However, so far only fluid or hybrid simulation models were applied to wall erosion and lifetime studies in which this non-quasi-neutral and non-equilibrium area cannot be treated directly. Thus, in this study, a 2D fully kinetic particle-in-cell model was presented for Hall thruster discharge and lifetime simulation. Because the fully kinetic lifetime simulation was yet to be achieved so far due to the high computational cost, the semi-implicit field solver and the technique of mass ratio manipulation was employed to accelerate the computation. However, other artificial manipulations like permittivity or geometry scaling were not used in order to avoid unrecoverable change of physics. Additionally, a new physics recovering model for the mass ratio was presented for better preservation of electron mobility at the weakly magnetically confined plasma region. The validity of the presented model was examined by various parametric studies, and the thrust performance and wall erosion rate of a laboratory model magnetic layer type Hall thruster was modeled for different operation conditions. The simulation results successfully reproduced the measurement results with typically less than 10% discrepancy without tuning any numerical parameters. It is also shown that the computational cost was reduced to the level that the Hall thruster fully kinetic lifetime simulation is feasible.
机译:霍尔推力器的主要寿命限制因素是由离子感应溅射引起的壁腐蚀,该腐蚀主要由介电壁护套和预护套引起。但是,到目前为止,只有流体或混合模拟模型用于壁腐蚀和寿命研究,在该研究中,不能直接处理此非准中性和非平衡区域。因此,在这项研究中,提出了用于霍尔推进器排放和寿命模拟的二维全动力学单元格内颗粒模型。由于高计算成本到目前为止尚未达到全动力学寿命仿真,因此采用半隐式场求解器和质量比操纵技术来加快计算速度。但是,未使用其他人工操作,如介电常数或几何比例缩放,以避免物理上不可恢复的变化。此外,提出了一种新的质量比物理恢复模型,可以更好地保持弱磁约束等离子体区域的电子迁移率。通过各种参数研究验证了所提出模型的有效性,并针对不同工况对实验室模型磁性层型霍尔推力器的推力性能和壁腐蚀速率进行了建模。仿真结果成功地重现了测量结果,差异通常小于10%,而无需调整任何数值参数。还表明,将计算成本降低到霍尔推进器全动力学寿命仿真可行的水平。

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