Ando Hiroki, Imamura Takeshi, Tellmann Silvia, Pätzold Martin, Häusler Bernd, Sugimoto Norihiko, Takagi Masahiro, Sagawa Hideo, Limaye Sanjay, Matsuda Yoshihisa, Choudhary Raj Kumar, Antonita Maria
Faculty of Science, Kyoto Sangyo University, Kyoto, Japan.
Department of Complexity Science and Engineering, The University of Tokyo, Chiba, Japan.
Sci Rep. 2020 Feb 26;10(1):3448. doi: 10.1038/s41598-020-59278-8.
We present distributions of the zonal-mean temperature and static stability in the Venusian atmosphere obtained from Venus Express and Akatsuki radio occultation profiles penetrating down to an altitude of 40 km. At latitudes equatorward of 75°, static stability derived from the observed temperature profiles is consistent with previous in-situ measurements in that there is a low-stability layer at altitudes of 50-58 km and highly and moderately stratified layers above 58 km and below 50 km, respectively. Meanwhile, at latitudes poleward of 75°, a low-stability layer extends down to 42 km, which has been unreported in analyses of previous measurements. The deep low-stability layer in the polar region cannot be explained by vertical convection in the middle/lower cloud layer, and the present result thus introduces new constraints on the dynamics of the sub-cloud atmosphere. The Venusian atmosphere is in striking contrast to the Earth's troposphere, which generally has a deeper low-stability layer at low latitudes than at mid- and high latitudes.
我们展示了金星大气纬向平均温度和静力稳定度的分布情况,这些数据来自金星快车和破晓号的无线电掩星剖面,探测高度可达40千米。在纬度75°以南,根据观测温度剖面得出的静力稳定度与之前的实地测量结果一致,即在50 - 58千米高度处存在一个低稳定度层,在58千米以上和50千米以下分别存在高度分层和中度分层的层。同时,在纬度75°以北,一个低稳定度层向下延伸至42千米,这在之前测量的分析中尚未报道。极地地区深层的低稳定度层无法用中/低云层中的垂直对流来解释,因此目前的结果对云层以下大气的动力学提出了新的限制。金星大气与地球对流层形成鲜明对比,地球对流层通常在低纬度地区比中高纬度地区有更深的低稳定度层。