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Measured Force on Elongated Bodies in a Simulated Low-Earth Orbit Environment

机译:模拟低地轨道环境中的细长体上的测量力

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An overview of the development of a magnetically filtered atomic oxygen plasma source and the application of the source to study low-Earth orbit drag on elongated bodies is presented. Plasma diagnostics show that the magnetic filter plasma source produces atomic oxygen ions (O~+) with streaming energies equivalent to the relative orbital environment of approximately 5eV and can supply the appropriate density for LEO simulation. Previous research has demonstrated that momentum transfer between ions and metal surfaces is equivalent to the momentum transfer expected for neutral molecules with similar energy, due to charge exchange occurring prior to momentum transfer. Total drag measurements of aluminum cuboid geometries of varying length to diameter ratios immersed in the extracted plasma plume are presented as a function of streaming ion energy.
机译:概述了磁过滤原子氧等离子体源的概述及源的应用研究在细长体上研究低地轨道拖曳。等离子体诊断表明,磁性滤光片等离子体源产生原子氧离子(O +),其流动能量相当于约5EV的相对轨道环境,并且可以为Leo模拟提供适当的密度。以前的研究表明,由于在动量转移之前发生的电荷交换,离子和金属表面之间的动量转移等于预期的中性分子的动量转移。作为流离子能量的函数呈现不同长度与直径比的铝长方形几何形状的铝长方形几何形状的总拖动测量。

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