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首页> 外文期刊>Plasma Science & Technology >Production of a High-Mach-Number Plasma Flow for an Advanced Plasma Space Thruster
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Production of a High-Mach-Number Plasma Flow for an Advanced Plasma Space Thruster

机译:用于高级等离子体空间推进器的高马赫数等离子体流的生产

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摘要

A higher specific impulse and a larger thrust are required for a manned interplanetary space thruster. Prior to a realization of a fusion-plasma thruster, a magneto-plasma-dynamic arcjet (MPDA) powered by a fission reactor is one of the promising candidates for a manned Mars space thruster. The MPDA plasma is accelerated axially by a self-induced j x B force. Thrust performance of the MPDA is expected to increase by applying a magnetic nozzle instead of a solid nozzle. In order to get a much higher thruster performance, two methods have been investigated in the HITOP device, Tohoku University. One is to use a magnetic Laval nozzle in the vicinity of the MPDA muzzle for converting the high ion thermal energy to the axial flow energy. The other is to heat ions by use of an ICRF antenna in the divergent magnetic nozzle. It is found that by use of a small-sized Laval-type magnetic nozzle, the subsonic flow near the muzzle is converted to be supersonic through the magnetic Laval nozzle. A fast-flowing plasma is successfully heated by use of an ICRF antenna in the magnetic beach configuration.
机译:有人用行星际空间推进器需要更高的比冲和更大的推力。在实现核聚变等离子体推进器之前,由裂变反应堆提供动力的磁等离子体动力电弧喷射器(MPDA)是载人火星空间推进器的有希望的候选者之一。 MPDA等离子体通过自感应j x B力轴向加速。通过应用磁性喷嘴代替实心喷嘴,可以提高MPDA的推力性能。为了获得更高的推进器性能,东北大学在HITOP设备中研究了两种方法。一种是在MPDA枪口附近使用磁性拉瓦尔喷嘴,以将高离子热能转换为轴向流能。另一种是通过使用发散磁喷嘴中的ICRF天线来加热离子。已经发现,通过使用小型拉瓦尔型磁性喷嘴,枪口附近的亚音速流通过磁性拉瓦尔喷嘴被转换为超音速。通过在磁滩配置中使用ICRF天线,成功加热了快速流动的等离子体。

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