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Drifting plasma collection by a positive biased tether wire in LEO-like plasma conditions: current measurement and plasma diagnostic

机译:在类似LEO的血浆条件下通过正向偏置的束线转移血浆收集:电流测量和血浆诊断

摘要

BETs is a three-year project financed by the Space Program of the European Commission, aimed at developing an efficient deorbit system that could be carried on board any future satellite launched into Low Earth Orbit (LEO). The operational system involves a conductive tape-tether left bare to establish anodic contact with the ambient plasma as a giant Langmuir probe. As a part of this project, we are carrying out both numerical and experimental approaches to estimate the collected current by the positive part of the tether. This paper deals with experimental measurements performed in the IONospheric Atmosphere Simulator (JONAS) plasma chamber of the Onera-Space Environment Department. The JONAS facility is a 9- m3 vacuum chamber equipped with a plasma source providing drifting plasma simulating LEO conditions in terms of density and temperature. A thin metallic cylinder, simulating the tether, is set inside the chamber and polarized up to 1000 V. The Earth's magnetic field is neutralized inside the chamber. In a first time, tether collected current versus tether polarization is measured for different plasma source energies and densities. In complement, several types of Langmuir probes are used at the same location to allow the extraction of both ion densities and electron parameters by computer modeling (classical Langmuir probe characteristics are not accurate enough in the present situation). These two measurements permit estimation of the discrepancies between the theoretical collection laws, orbital motion limited law in particular, and the experimental data in LEO-like conditions without magnetic fields. In a second time, the spatial variations and the time evolutions of the plasma properties around the tether are investigated. Spherical and emissive Langmuir probes are also used for a more extensive characterization of the plasma in space and time dependent analysis. Results show the ion depletion because of the wake effect and the accumulation of- ions upstream of the tether. In some regimes (at large positive potential), oscillations are observed on the tether collected current and on Langmuir probe collected current in specific sites.
机译:BETs是一项由欧盟委员会太空计划资助的为期三年的项目,旨在开发一种高效的脱轨系统,该系统可搭载在未来发射入低地球轨道(LEO)的任何卫星上。该操作系统涉及一个导电的带状束带,该束带裸露以建立与周围等离子体的阳极接触,作为巨型朗缪尔探针。作为该项目的一部分,我们将同时进行数值和实验方法,以通过系链的正向部分估算收集到的电流。本文涉及在Onera-Space环境部的电离层大气模拟器(JONAS)等离子体室中进行的实验测量。 JONAS设施是一个9立方米的真空室,配有等离子源,可在密度和温度方面模拟LEO条件,提供漂移的等离子。一个模拟系绳的薄金属圆柱体放置在室内,极化到1000V。地球磁场在室内被中和。首次,针对不同的等离子体源能量和密度,测量了系绳收集电流与系绳极化之间的关系。作为补充,在同一位置使用几种类型的Langmuir探针,以允许通过计算机建模来提取离子密度和电子参数(在当前情况下,经典的Langmuir探针特性不够准确)。这两个测量值可以估算理论收集定律,特别是轨道运动受限定律与类似LEO的条件下没有磁场的实验数据之间的差异。第二次,研究了系绳周围等离子体特性的空间变化和时间演变。球形和发射型Langmuir探针还用于在时空相关分析中更广泛地表征血浆。结果表明,由于唤醒效应和系链上游离子的积累,离子耗竭。在某些情况下(在较大的正电势下),在特定位置的系绳收集电流和Langmuir探针收集电流上观察到振荡。

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