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ASTEX MICROGRAVITY EXPERIMENT: SIMULATING ASTEROID REGOLITHS

机译:ASTEX微重力实验:模拟类星体回弹

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AstEx is a microgravity experiment selected to fly on ESA's 51st Microgravity Research Campaign in November 2009. The experiment will investigate the dynamics of regolith on asteroid surfaces. Despite their very low surface gravities, asteroids exhibit a number of different geological processes involving granular matter. Understanding the mechanical response of this granular material subject to external forces in microgravity conditions is vital to the design of a successful asteroid sub-surface sampling mechanism, and in the interpretation of the fascinating geology on an asteroid. The AstEx experiment uses a microgravity modified Taylor-Couette shear cell to investigate granular flow caused by shear forces under the conditions of parabolic flight microgravity. It is intended to determine how a steady state granular flow is achieved in microgravity conditions, and what effect prior shear history has on the timescales involved in initiating a steady state flow in a granular material. Presented are the technical details of the AstEx experimental design with particular emphasis on how the team have designed the equipment specifically for the parabolic flight microgravity environment.
机译:AstEx是一项微重力实验,被选中在2009年11月的ESA第51届微重力研究运动中飞行。该实验将研究小行星表面上的凝灰岩动力学。尽管其表面重力非常低,但小行星仍显示出许多涉及颗粒物的不同地质过程。了解这种颗粒状材料在微重力条件下承受外力的机械响应,对于成功设计小行星地下采样机制以及解释小行星的迷人地质至关重要。 AstEx实验使用微重力改进的泰勒-库埃特剪切池研究抛物线飞行微重力条件下由剪切力引起的颗粒流动。旨在确定在微重力条件下如何实现稳态颗粒流动,以及先验剪切历史对引发颗粒材料中稳态流动所涉及的时间尺度有什么影响。呈现的是AstEx实验设计的技术细节,特别着重于该团队如何专门设计用于抛物线飞行微重力环境的设备。

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