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The effect of alternative propellants on the electron drift instability in Hall-effect thrusters: Insight from 2D particle-in-cell simulations

机译:替代推进剂对霍尔效应推进器中电子漂移不稳定性的影响:2D粒子内仿真的洞察力

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摘要

Hall-effect thrusters (HETs) operated with xenon are one of the most commonly used electric propulsion technologies for a wide range of space missions, including drag compensation in low Earth orbit, station-keeping, and orbital insertion, as access to space becomes more affordable. Although anomalous electron transport, the electron drift instability (EDI), and secondary electron emission (SEE) have been studied experimentally and numerically in xenon-based HETs, the impact of alternative propellants is still poorly characterized. In this work, a two-dimensional particle-in-cell/Monte Carlo collision code is used to model the (r - theta) plane of a HET operated separately with four different noble gases: xenon, krypton, argon, and helium. Models for electron induced secondary electron emission (SEE) and dielectric walls are implemented in order to investigate the coupling between the propellant choice and the radial thruster walls. For all conditions and propellants studied, an EDI and enhanced electron cross-field transport are observed. The frequency of the instability, as well as the electron mobility, is compared with analytical expressions from a recently developed kinetic theory. Confirming this theory, it is shown that while the frequency of the EDI depends on the propellant mass, the electron mobility appears to be almost independent of the propellant choice. Published by AIP Publishing.
机译:与氙操作的霍尔效应推进器(HETS)是各种空间任务中最常用的电动推进技术之一,包括低地球轨道,站保存和轨道插入的阻力补偿,因为空间的访问变得更多实惠。虽然在基于氙气的HET上实验和数值研究了异常电子传输,电子漂移不稳定性(EDI)和二次电子发射(参见),但替代推进剂的影响表征差。在这项工作中,二维粒子内 - 电池单元/蒙特卡罗碰撞凝固码用于模拟分开操作的HET的(R-THETA)平面与四种不同的贵宾气体:氙,氪,氩和氦气分别操作。用于电子感应的二次电子发射(参见)和介电壁的模型,以研究推进剂选择与径向推进器壁之间的耦合。对于所研究的所有条件和推进剂,观察到EDI和增强的电子跨场传输。将不稳定性以及电子迁移率的频率与来自最近开发的动力学理论的分析表达进行比较。确认该理论,表明,虽然EDI的频率取决于推进剂质量,但电子迁移率似乎几乎独立于推进剂选择。通过AIP发布发布。

著录项

  • 来源
    《Physics of plasmas》 |2018年第2期|共8页
  • 作者单位

    Univ Paris Sud Sorbonne Univ CNRS Lab Phys Plasmas Ecole Polytech F-91120 Palaiseau France;

    Univ Paris Sud Sorbonne Univ CNRS Lab Phys Plasmas Ecole Polytech F-91120 Palaiseau France;

    Univ Paris Sud Sorbonne Univ CNRS Lab Phys Plasmas Ecole Polytech F-91120 Palaiseau France;

    Univ Paris Sud Sorbonne Univ CNRS Lab Phys Plasmas Ecole Polytech F-91120 Palaiseau France;

    PlasmaPotential Phys Consulting &

    Res Canberra ACT 2601 Australia;

    Univ Paris Sud Sorbonne Univ CNRS Lab Phys Plasmas Ecole Polytech F-91120 Palaiseau France;

    Univ Paris Sud Sorbonne Univ CNRS Lab Phys Plasmas Ecole Polytech F-91120 Palaiseau France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 等离子体物理学;
  • 关键词

  • 入库时间 2022-08-19 18:27:39

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