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首页> 外文期刊>Physics of plasmas >ID-HALL a new double stage Hall thruster design. I. Principle and hybrid model of ID-HALL
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ID-HALL a new double stage Hall thruster design. I. Principle and hybrid model of ID-HALL

机译:ID-Hall一个新的双级大厅推进器设计。 I. ID-Hall的原则和混合模型

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摘要

In Hall thrusters, ions are extracted from a quasineutral plasma by the electric field induced by the local drop of electron conductivity associated with the presence of a magnetic barrier. Since the electric field is used both to extract and accelerate ions and to generate the plasma, thrust and specific impulse are not independent in a Hall thruster. There is a need for versatile thrusters that can be used for a variety of maneuvers, i.e., that can operate either at high thrust or at high specific impulse for a given power. The double stage Hall thruster (DSHT) design could allow a separate control of ionization and acceleration, and hence separate control of thrust and specific impulse. In the DSHT configuration, a supplementary plasma source (ionization stage), independent of the applied voltage, is added and placed upstream of the magnetic barrier (acceleration stage). The DSHT concept is also well adapted to the use of alternative propellants, lighter and with a less efficient ionization than xenon. Several designs of double stage Hall thrusters have been proposed in the past, but these attempts were not really successful. In this paper, we present a brief review of the main DSHT designs described in the literature, we discuss the relevance of the DSHT concept, and, on the basis of simple physics arguments and simulation results, we propose a new design, called ID-HALL (Inductive Double stage HALL thruster). In this design, the ionization stage is a magnetized inductively coupled RF plasma. The inductive coil is inside the central cylinder of the thruster and located nearby the acceleration stage. Preliminary modeling results of this DSHT are described. Published by AIP Publishing.
机译:在霍尔推进器中,通过通过与磁屏障的存在相关的局部电子电导率局部诱导的电场从拟突血浆中提取离子。由于电场既用于提取和加速离子并产生等离子体,则推力和特定脉冲在霍尔推进器中没有独立。需要一种可用于各种机动的通用推进器,即,可以在高推力或高特定脉冲处运行的各种机动止动器。双级霍尔推进器(DSHT)设计可以允许单独控制电离和加速,因此单独控制推力和特定脉冲。在DSHT配置中,添加并放置在磁屏障(加速阶段)的上游的补充等离子体源(电离阶段)。 DSHT概念也很好地适应使用替代推进剂,更轻,并且具有比氙气更低的电离。过去已经提出了几个双级霍尔推进员设计,但这些尝试并没有真正成功。在本文中,我们介绍了文献中描述的主要DSHT设计的简要审查,我们讨论了DSHT概念的相关性,并在简单的物理论证和仿真结果的基础上,我们提出了一种新的设计,称为ID-大厅(归纳双级霍尔推进器)。在这种设计中,电离阶段是磁化电感耦合的RF等离子体。电感线圈位于推进器的中央缸内,位于加速级附近。描述了该DSHT的初步建模结果。通过AIP发布发布。

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  • 来源
    《Physics of plasmas》 |2018年第9期|共14页
  • 作者单位

    Univ Toulouse LAPLACE CNRS INPT UPS 118 Route Narbonne F-31062 Toulouse France;

    Univ Toulouse LAPLACE CNRS INPT UPS 118 Route Narbonne F-31062 Toulouse France;

    Univ Toulouse LAPLACE CNRS INPT UPS 118 Route Narbonne F-31062 Toulouse France;

    Univ Toulouse LAPLACE CNRS INPT UPS 118 Route Narbonne F-31062 Toulouse France;

    Univ Toulouse LAPLACE CNRS INPT UPS 118 Route Narbonne F-31062 Toulouse France;

    Univ Toulouse LAPLACE CNRS INPT UPS 118 Route Narbonne F-31062 Toulouse France;

    Univ Toulouse LAPLACE CNRS INPT UPS 118 Route Narbonne F-31062 Toulouse France;

    Univ Orleans CNRS ICARE 1C Ave Rech Sci F-45071 Orleans France;

    CNES 18 Ave Edouard Belin F-31401 Toulouse France;

    Univ Toulouse LAPLACE CNRS INPT UPS 118 Route Narbonne F-31062 Toulouse 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

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