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Fog phenomena on Mars

机译:火星上的雾现象

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摘要

Mars Express High Resolution Stereo Camera (HRSC) images show impressive morning fog features in Valles Marineris and other regions of the surface of Mars. Temperatures have been determined, simultaneously to the imaging, by Mars Express Planetary Fourier Spectrometer (PFS). This identifies water ice rather than frozen CO_2 as the cause of the fog observations in Valles Marineris. Numerical estimates of the water vapor pressure, and the related atmospheric water content, at the frost-point (temperature of freezing or "re-sublimation" of water vapor) by a 1-dimensional planetary boundary layer model indicate that conditions in the planetary boundary layer can indeed temporarily favor the formation of ice particles. A systematic registration of sites of fog observations shows preferred regions and seasons on Mars for fog phenomena. In the first instance, the fog phenomena seem to be induced or supported by orographic effects but not directly by the distribution pattern of the atmospheric vapor or by the regional subsurface water content. This paper documents and thermodynamically verifies the existence of fog of water ice particles in the near-surface atmosphere of Mars.
机译:火星快速高分辨率立体相机(HRSC)图像显示了Valles Marineris和火星表面其他区域令人印象深刻的晨雾特征。与成像同时,由Mars Express行星傅里叶光谱仪(PFS)确定了温度。这将水冰而不是冻结的CO_2识别为在Valles Marineris中观察到雾的原因。一维行星边界层模型在霜点(水蒸气的冻结温度或“再升华”温度)处的水蒸气压力和相关的大气含水量的数值估计表明,行星边界条件层确实可以暂时有利于冰粒的形成。对雾观测地点的系统记录显示了火星上出现雾现象的首选区域和季节。在第一种情况下,雾现象似乎是由地形效应引起或引起的,而不是直接由大气蒸气的分布方式或区域地下水含量引起的。本文记录并热力学验证了火星近地表大气中水冰颗粒雾的存在。

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