首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Three-dimensional IFE-PIC numerical simulation of background pressure's effect on accelerator grid impingement current for ion optics
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Three-dimensional IFE-PIC numerical simulation of background pressure's effect on accelerator grid impingement current for ion optics

机译:背景压力对离子光学加速器栅极撞击电流影响的三维IFE-PIC数值模拟

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摘要

A three-dimensional numerical simulation modeling is developed to investigate the background pressure's effect on the characteristics of ion impingement on the accelerator grid for the ion optical system. The immersed-finite-element particle-in-cell (IFE-PIC) method is combined with Monte Carlo method to compute the electric field, track the ions, and describe the charge-exchange collision process while direct simulation Monte Carlo (DSMC) method is adopted to simulate the motion of neutral atoms. Results show that the residual neutral atoms in the vacuum chamber play an important role in the neutral atoms distribution when the background pressure is higher than a specific magnitude, and the accelerator grid impingement current increases with the increase of the background pressure. To improve the reliability of ion thruster service lifetime prediction in the ground life tests, the background pressure in the vacuum chamber should be below 10(-3) Pa. (C) 2015 Elsevier Ltd. All rights reserved.
机译:建立了三维数值模拟模型,以研究背景压力对离子在光学系统的加速器栅格上的离子撞击特性的影响。浸入有限元胞内粒子(IFE-PIC)方法与蒙特卡洛方法相结合以计算电场,跟踪离子并描述电荷交换碰撞过程,而直接模拟蒙特卡洛(DSMC)方法被用来模拟中性原子的运动。结果表明,当背景压力高于特定大小时,真空室中残留的中性原子在中性原子分布中起重要作用,加速器栅极撞击电流随背景压力的增加而增加。为了提高地面寿命测试中离子推进器使用寿命预测的可靠性,真空室内的背景压力应低于10(-3)Pa。(C)2015 Elsevier Ltd.保留所有权利。

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