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首页> 外文期刊>Journal of geophysical research. Planets >Simulations of atmospheric phenomena at the Phoenix landing site with the Ames General Circulation Model
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Simulations of atmospheric phenomena at the Phoenix landing site with the Ames General Circulation Model

机译:模拟的大气现象凤凰城着陆地点的艾姆斯将军循环模型

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摘要

Phoenix, the first NASA Mars Scout class mission, was designed to "follow the water" and study the polar region. Landing in late northern spring, Phoenix measured soil chemistry, near-surface water ice, and studied numerous atmospheric properties and weather phenomena. Here, we use atmospheric measurements made by Phoenix to test and calibrate the Ames General Circulation Model (GCM) and start the process of analyzing and interpreting the vast data set provided by this groundbreaking mission. The GCM reproduces surface pressures and temperatures within the measured diurnal and seasonal ranges. It also reproduces measured water ice cloud profiles with ground fogs forming after L_s = 120° and a separate cloud deck between 3 km and 6 km above the surface. Near-surface water vapor pressures have daytime maxima above 1 Pa in both the data and model. We find that frosts and fogs observed by Phoenix are correlated with the formation of high-pressure weather systems over the landing site.
机译:凤凰城,第一个美国宇航局火星侦察类任务,旨在“遵循水”和研究极地地区。凤凰测量土壤化学、近地表水冰,和研究大量的大气属性和天气现象。大气测量由凤凰来测试和校准艾姆斯环流模型(GCM)并开始分析和过程解释所提供的大量数据集开创性的使命。表面内的压力和温度周日和季节性范围来衡量。繁殖测量水冰云配置文件地面雾形成后L_s = 120°不同云之间的甲板3公里,6公里以上表面。白天最大值高于1 Pa的数据和模型。由凤凰与的形成有关高压天气系统着陆网站。

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