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Electrostatic Sampler for Large Regolith Particles on Asteroids

机译:小行星上大块碎石的静电采样器

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The authors have developed an electrostatic sampler for the reliable and autonomous collection of regolith particles on asteroids. The sampler, which employs Coulomb and dielectrophoresis forces to capture regolith particles and transport them to a collection capsule, can collect a lunar regolith simulant containing particles of various sizes less than approximately 1.0 mm in diameter in a low-gravity environment. However, there might be large particles with diameters of 1.0 mm or larger on asteroid surfaces. The authors conducted a numerical calculation and a model experiment to confirm whether the sampler can collect particles larger than 1.0 mm in diameter in a low-gravity environment. The numerical calculation, performed using the distinct element method, predicted the effect of the particle diameter on the sampler performance, indicating that particles 1.0 mm in diameter or larger could be successfully sampled in a low-gravity environment. Glass particles 2 mm in diameter were experimentally sampled in a 0.01 g environment reproduced by a parabolic aircraft flight, and rocks 4 mm in diameter were agitated under 0.01 g and successfully sampled under microgravity. (C) 2016 American Society of Civil Engineers.
机译:作者已经开发出一种静电采样器,用于可靠,自主地收集小行星上的碎屑颗粒。采样器利用库仑力和介电电泳力捕获重碎石颗粒并将其运输到收集胶囊,可以在低重力环境中收集包含直径小于1.0毫米的各种大小颗粒的月重碎石模拟物。但是,小行星表面可能存在直径为1.0毫米或更大的大颗粒。作者进行了数值计算和模型实验,以确认采样器是否可以在低重力环境中收集直径大于1.0毫米的颗粒。使用独特元素法进行的数值计算预测了粒径对采样器性能的影响,表明直径为1.0毫米或更大的粒子可以在低重力环境中成功采样。在通过抛物线飞行复制的0.01 g环境中,对直径为2 mm的玻璃颗粒进行了实验采样,在0.01 g下搅拌了直径为4 mm的岩石,并在微重力下成功进行了采样。 (C)2016年美国土木工程师学会。

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