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Discrete Element Method Simulation of a Boulder Extraction from an Asteroid

机译:从小行星提取巨石的离散元方法模拟

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摘要

The force required to pull 7 t and 401 polyhedral boulders from the surface of an asteroid is simulated using the discrete element method considering the effects of microgravity, regolith cohesion and boulder acceleration. The connection between particle surface energy and regolith cohesion is estimated by simulating a cohesion sample tearing test. An optimal constant acceleration is found where the peak net force from inertia and cohesion is a minimum. Peak pulling forces can be further reduced by using linear and quadratic acceleration functions with up to a 40% reduction in force for quadratic acceleration.
机译:考虑到微重力,重碎石凝聚力和巨石加速度的影响,使用离散元法模拟了从小行星表面拉出7 t和401多面巨石所需的力。通过模拟内聚力样品的撕裂试验,可以估算出颗粒表面能与硬脂石内聚力之间的关系。找到了最佳的恒定加速度,其中来自惯性和内聚力的峰值净力最小。通过使用线性和二次加速功能,可以进一步降低峰值拉力,对于二次加速,力最多可以降低40%。

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  • 会议地点 St. Louis MO(US)
  • 作者单位

    University of Alaska Fairbanks, Institute of Northern Engineering, P.O.Box 755910, Fairbanks, AK 99775-5910;

    University of Alaska Fairbanks, Institute of Northern Engineering, P.O.Box 755910, Fairbanks, AK 99775-5910;

    NASA Langley Research Center, Space Mission Analysis Branch, 1 N. Dryden St. Mail Stop 462, Hampton, VA 23681;

    Chaff LLC, 1286 Yellowstone Rd., Cleveland Heights, OH 44121;

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  • 正文语种 eng
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  • 入库时间 2022-08-26 14:10:57

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