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Carbon Dioxide Snow Storms During the Polar Night on Mars

机译:火星极夜期间的二氧化碳雪暴

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摘要

The Mars Orbiter Laser Altimeter (MOLA) detected clouds associated with topographic features during the polar night on Mars. While uplift generated from flow over mountains initiates clouds on both Earth and Mars, we suggest that the Martian clouds differ greatly from terrestrial mountain wave clouds. Terrestrial wave clouds are generally compact features with sharp edges due to the relatively small particles in them. However, we find that the large mass of condensible carbon dioxide on Mars leads to clouds with snow tails that may extend many kilometers down wind from the mountain and even reach the surface. Both the observations and the simulations suggest substantial carbon dioxide snow precipitation in association with the underlying topography. This precipitation deposits CO2, dust and water ice to the polar caps, and may lead to propagating geologic features in the Martian polar regions.
机译:火星轨道激光高度计(MOLA)在火星极夜期间检测到与地形特征相关的云。虽然山上水流产生的隆升会在地球和火星上启动云层,但我们认为火星云层与陆地山波云层有很大差异。陆地波云通常是紧凑的特征,由于它们中的粒子相对较小,因此具有锋利的边缘。然而,我们发现火星上大量可凝结的二氧化碳导致云层积雪尾巴,可能从山上沿风向后延伸数公里,甚至到达地表。观测和模拟均表明,与基础地形相关的二氧化碳雪大量沉淀。这种降水会将二氧化碳,灰尘和水冰沉积到极地盖上,并可能导致火星极地地区的地质特征传播。

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