首页> 外文会议>Second European Workshop on Exo-Astrobiology Sep 16-19, 2002 Graz, Austria >SIMULATION OF MARTIAN SURFACE CONDITIONS AND DUST TRANSPORT
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SIMULATION OF MARTIAN SURFACE CONDITIONS AND DUST TRANSPORT

机译:火星表面状况和尘埃运输的模拟

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The suspended atmospheric dust which is also found deposited over most of the Martian globe plays an important (possibly vital) role in shaping the surface environment. It affects the weather (solar flux), water transport and possibly also the electrical properties at the surface. The simulation facilities at Aarhus provide excellent tools for studying the properties of this Martian environment. Much can be learned from such simulations, supporting and often inspiring new investigations of the planet. Electrical charging of a Mars analogue dust is being studied within a wind tunnel simulation aerosol. Here electric fields are used to extract dust from suspension. Although preliminary the results indicate that a large fraction of the dust is charged to a high degree, sufficient to dominate adhesion/cohesion processes. A Mars analogue dust layer has been shown to be an excellent trap for moisture, causing increased humidity in the soil below. This allows the possibility for liquid water to be stable close to the surface (less than 10cm). This is being investigated in an environment simulator where heat and moisture transport can be studied through layers of Mars analogue dust.
机译:在整个火星地球上也发现的悬浮大气尘埃在塑造表面环境中起着重要的作用(可能至关重要)。它会影响天气(太阳通量),水的运输,还可能会影响表面的电性能。奥尔胡斯的模拟设施为研究这种火星环境的特性提供了出色的工具。从这样的模拟中可以学到很多东西,这些模拟支持和启发了人们对地球的新研究。正在风洞模拟气溶胶中研究火星模拟尘埃的充电。这里,电场用于从悬浮液中提取灰尘。尽管初步结果表明,大部分粉尘带入的程度很高,足以支配附着力/附着力过程。事实证明,火星的模拟尘埃层是极好的水分陷阱,可导致下方土壤的湿度增加。这样可以使液态水靠近表面(小于10厘米)稳定。正在环境模拟器中对此进行研究,在该模拟器中可以通过火星模拟尘埃层研究热量和水分的传输。

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