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Applications of electrified dust and dust devil electrodynamics to Martian atmospheric electricity

机译:带电除尘和魔鬼电动力学在火星大气电中的应用

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摘要

Atmospheric transport and suspension of dust frequently brings electrification, which may be substantial. Electric fields of 10 kV m−1 to 100 kV m−1 have been observed at the surface beneath suspended dust in the terrestrial atmosphere, and some electrification has been observed to persist in dust at levels to 5 km, as well as in volcanic plumes. The interaction between individual particles which causes the electrification is incompletely understood, and multiple processes are thought to be acting. A variation in particle charge with particle size, and the effect of gravitational separation explains to, some extent, the charge structures observed in terrestrial dust storms. More extensive flow-based modelling demonstrates that bulk electric fields in excess of 10 kV m−1 can be obtained rapidly (in less than 10 s) from rotating dust systems (dust devils) and that terrestrial breakdown fields can be obtained. Modelled profiles of electrical conductivity in the Martian atmosphere suggest the possibility of dust electrification, and dust devils have been suggested as a mechanism of charge separation able to maintain current flow between one region of the atmosphere and another, through a global circuit. Fundamental new understanding of Martian atmospheric electricity will result from the ExoMars mission, which carries the DREAMS (Dust characterization, Risk Assessment, and Environment Analyser on the Martian Surface)—MicroARES (Atmospheric Radiation and Electricity Sensor) instrumentation to Mars in 2016 for the first in situ electrical measurements.
机译:大气中的运输和粉尘的悬浮经常会带来电气化,这可能是很大的。在地面大气中悬浮尘埃下面的表面观察到10 kV m-1至100 kV m-1的电场,并且观察到一些带电现象在尘埃中一直持续到5 km的水平,以及在火山羽中。导致带电的单个粒子之间的相互作用尚不完全清楚,并且认为有多个过程在起作用。颗粒电荷随颗粒大小的变化以及重力分离的影响在一定程度上解释了在地面沙尘暴中观察到的电荷结构。基于流动的更广泛的建模表明,可以从旋转的粉尘系统(粉尘魔鬼)迅速(不到10 s)获得超过10 kV m-1的整体电场,并且可以获得地面击穿场。火星大气中电导率的模型化模型表明了尘埃带电的可能性,并且已经提出尘土魔鬼是一种电荷分离机制,能够通过全局电路保持大气层和另一区域之间的电流流动。 ExoMars任务将对火星大气层产生新的根本性认识,该任务将在2016年将DREAMS(火星表面的灰尘特征,风险评估和环境分析仪)— MicroARES(大气辐射和电传感器)仪器搭载到火星原位电测量。

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