研究喷气式射频离子推进器的功率传输效率

IF 1.5 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
Gao-Huang Huang, Hong Li, Fei Gao, You-Nian Wang
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引用次数: 0

摘要

由于卫星的低轨道维护等一系列挑战,喷气式电力推进受到广泛关注。通常情况下,射频离子推进器因其高比冲和高效率而受到低轨任务的青睐。本文通过测量放电运行和不放电运行时天线线圈的射频功率和电流,实验研究了不同气体成分射频离子推进器的功率传输效率。结果表明,增加天线线圈的匝数可以有效提高射频功率传输效率,这是由于 Q 因子的提高。在纯 N2 放电中,随着射频功率的增加,射频功率传输效率先是快速上升,然后呈不太陡峭的上升趋势。在相对较高的功率下,射频功率传输效率随气体压力的增加而增加,而在相对较低的功率下则迅速下降。在 N2/O2 放电中,高功率时增加 N2 含量可提高射频功率传输效率,但低功率时则相反。为了更好地理解这些趋势,利用了极限情况下的解析解,并采用朗缪尔探针测量电子密度。研究发现,等离子体电阻的变化可以很好地解释射频功率传输效率的演变,而等离子体电阻的变化与电子密度和有效电子碰撞频率有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of the power transfer efficiency in an air-breathing radio frequency ion thruster
Due to a series of challenges such as low-orbit maintenance of satellites, the air-breathing electric propulsion has got widespread attention. Commonly, the radio frequency ion thruster is favored by low-orbit missions due to its high specific impulse and efficiency. In this paper, the power transfer efficiency of the radio frequency ion thruster with different gas composition is studied experimentally, which is obtained by measuring the radio frequency power and current of the antenna coil with and without discharge operation. The results show that increasing the turns of antenna coils can effectively improve the radio frequency power transfer efficiency, which is due to the improvement of Q factor. In pure N2 discharge, with the increase of radio frequency power, the radio frequency power transfer efficiency first rises rapidly and then exhibits a less steep increasing trend. The radio frequency power transfer efficiency increases with the increase of gas pressure at relatively high power, while declines rapidly at relatively low power. In N2/O2 discharge, increasing the N2 content at high power can improve the radio frequency power transfer efficiency, but the opposite was observed at low power. In order to give a better understanding of these trends, an analytic solution in limit cases is utilized, and a Langmuir probe was employed to measure the electron density. It is found that the evolution of radio frequency power transfer efficiency can be well explained by the variation of plasma resistance, which is related to the electron density and the effective electron collision frequency.
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来源期刊
Chinese Physics B
Chinese Physics B 物理-物理:综合
CiteScore
2.80
自引率
23.50%
发文量
15667
审稿时长
2.4 months
期刊介绍: Chinese Physics B is an international journal covering the latest developments and achievements in all branches of physics worldwide (with the exception of nuclear physics and physics of elementary particles and fields, which is covered by Chinese Physics C). It publishes original research papers and rapid communications reflecting creative and innovative achievements across the field of physics, as well as review articles covering important accomplishments in the frontiers of physics. Subject coverage includes: Condensed matter physics and the physics of materials Atomic, molecular and optical physics Statistical, nonlinear and soft matter physics Plasma physics Interdisciplinary physics.
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