首页> 外文期刊>Journal of Spacecraft and Rockets >Arcjet Plasma Neutralization of Hall Thrusters, Part 1: Hybrid Thruster Mission Analysis
【24h】

Arcjet Plasma Neutralization of Hall Thrusters, Part 1: Hybrid Thruster Mission Analysis

机译:霍尔推力器的Arcjet等离子体中和,第1部分:混合推力器任务分析

获取原文
获取原文并翻译 | 示例
       

摘要

Clustering multiple thrusters has emerged as a favored option for extending Hal) effect thruster propulsion to very high powers (100-150 kW). However, there are inherent difficulties in the simultaneous neutralization of several Hall effect thrusters. Chief among these is the issue of unequal current sharing among multiple cathodes. For this reason, it might prove advantageous to use a single, high current neutralizes Conventional Hall effect thruster neutralizes, hollow cathodes, typically consume 10% of the propellant flow and produce little or no thrust. An arcjet is an electrothermal electric thruster with moderate efficiency and specific impulse ranges. It is also a high plasma density device that is capable of supporting and amplifying electron current through volume ionization and is capable of neutralizing single or clusters of Hall effect thrusters. By using an arcjet as a neutralizer, Hall effect thrusters will also produce useful thrust from their neutralizers. Because of the arcjet's lower specific impulse, the hybrid arcjet-Hall system will have a lower specific impulse than that of a pure Hall effect system. However by choosing suitable propellants, the hybrid Hall cluster will retain the high thrust efficiencies typical of pure Hall effect systems with the added benefit of lower total wet mass for select missions caused by a higher system thrust density. This work examines the application of an arcjet-neutralized cluster of Hall effect thrusters for a low Earth orbit to geosynchronous orbit transfer. The analysis shows that hybrid Hall effect clusters neutralized by a single medium power arcjet are advantageous for some orbit raising missions. Helium arcjet neutralizers coupled with conventional xenon Hall effect anodes appear to be the superior configuration because of their relatively high efficiencies and low tankage fractions when compared to alternative propellant mixes.
机译:将多个推进器成簇已经成为将Hal效应推进器推进力扩展到非常高的功率(100-150 kW)的首选方法。但是,同时中和多个霍尔效应推进器存在固有的困难。其中最主要的是多个阴极之间电流分配不均的问题。由于这个原因,使用单个大电流中和可能是有利的。传统的霍尔效应推进器中和了空心阴极,通常消耗掉推进剂流量的10%,几乎不产生推力。 arcjet是一种电热电动推进器,具有中等效率和特定的脉冲范围。它也是一种高等离子体密度设备,能够通过体积电离来支持和放大电子电流,并且能够中和单个或成组的霍尔效应推进器。通过使用arcjet作为中和器,霍尔效应推进器还将从其中和器产生有用的推力。由于arcjet的比冲较低,因此混合arcjet-Hall系统的比冲比纯霍尔效应系统要低。但是,通过选择合适的推进剂,混合式霍尔集群将保持纯霍尔效应系统的典型高推力效率,并具有较高的系统推力密度,从而降低了某些任务的总湿重,从而带来了更多好处。这项工作研究了将电弧效应中和的霍尔效应推进器群在低地球轨道到地球同步轨道转移中的应用。分析表明,由单个中功率电弧喷射器中和的混合霍尔效应星团对于某些轨道飞行任务是有利的。氦弧喷射中和器与传统的氙气霍尔效应阳极相结合,由于与其他推进剂混合物相比具有较高的效率和较低的储油比,因此似乎是上乘的配置。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号