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The puzzling Venusian polar atmospheric structure reproduced by a general circulation model

机译:由一般环流模型再现的令人困惑的维纳斯极地大气结构

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摘要

Unlike the polar vortices observed in the Earth, Mars and Titan atmospheres, the observed Venus polar vortex is warmer than the midlatitudes at cloud-top levels (∼65 km). This warm polar vortex is zonally surrounded by a cold latitude band located at ∼60° latitude, which is a unique feature called ‘cold collar' in the Venus atmosphere. Although these structures have been observed in numerous previous observations, the formation mechanism is still unknown. Here we perform numerical simulations of the Venus atmospheric circulation using a general circulation model, and succeed in reproducing these puzzling features in close agreement with the observations. The cold collar and warm polar region are attributed to the residual mean meridional circulation enhanced by the thermal tide. The present results strongly suggest that the thermal tide is crucial for the structure of the Venus upper polar atmosphere at and above cloud levels.
机译:与在地球,火星和土卫六大气中观测到的极地涡流不同,观测到的金星极地涡流比云顶水平(〜65 km)处的中纬度要温暖。这个温暖的极地涡流被纬度约60°的冷纬带围绕着,这是金星大气中的一个独特特征,称为“冷领”。尽管这些结构已经在许多先前的观察中被观察到,但其形成机理仍是未知的。在这里,我们使用一般的环流模型对金星的大气环流进行数值模拟,并成功地再现了这些令人费解的特征,与观测结果非常吻合。冷领和温暖的极区归因于由热潮增强的剩余平均子午环流。目前的结果强烈表明,热潮对于云层及以上的金星上极大气的结构至关重要。

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