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REVIEW OF MARTIAN DUST COMPOSITION, TRANSPORT, DEPOSITION, ADHESION, AND REMOVAL

机译:审查Martin尘埃的成分,运输,沉积,附着和清除

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Adverse effects of dust accumulation on spacecraft and rover surfaces hinder the functioning of equipment on Mars and consequently limit mission duration. Hence, dust is an important parameter in the design, development, and testing of equipment for Mars surface missions. A review of Martian dust composition, transport, deposition, adhesion, and removal is presented. Martian dust has consistent average chemical and mineralogical composition over the entire planet. Sources of dust transport and deposition on the surface of Mars include ordinary atmospheric settling, dust storms, dust devils, near surface saltation, and artificial human/robotic disturbance of the regolith. Mechanisms of dust adhesion include chemical bonding, cementation, ice bridges, capillary forces, van der Waals forces, and electrostatic forces. There are a number of different methods to cause particle removal including vibration, centrifuge, impact, electrostatic repulsion, liquid or air flow, thermophoresis, and direct manipulation using a mechanical device. This paper presents a summary of what is known about Martian dust and its removal to date.
机译:尘埃积聚在航天器和流动站表面上的不利影响阻碍了设备在火星上的运行,从而限制了飞行时间。因此,粉尘是火星地面任务设备设计,开发和测试中的重要参数。本文介绍了火星尘埃的组成,运输,沉积,附着力和去除情况。火星尘埃在整个星球上具有一致的平均化学和矿物组成。火星表面尘埃的运输和沉积来源包括普通的大气沉降,沙尘暴,沙尘暴,近地表盐分以及人为/机器人对重粉石的干扰。灰尘附着的机制包括化学结合,胶结,冰桥,毛细作用力,范德华力和静电作用力。有许多不同的方法可以去除颗粒,包括振动,离心,撞击,静电排斥,液体或空气流动,热泳以及使用机械设备进行直接操作。本文概述了迄今为止有关火星尘埃及其清除的知识。

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