Center for Planetary Science, Kobe University, 7-1-48, Minatojima-Minamimachi, Chuo-ku, Kobe, Hyogo, 650-0047, Japan.
Department of Planetology, Kobe University, 1-1, Rokkodai, Nada-ku, Kobe, Hyogo, 657-8501, Japan.
Nat Commun. 2019 Jan 9;10(1):23. doi: 10.1038/s41467-018-07919-y.
Cloud patterns are important clues for revealing the atmospheric circulation of Venus. Recently, a planetary-scale streak structure has been discovered in middle- and lower-cloud images of Venus' night-side taken by IR2, the 2-μm camera, on board the Akatsuki orbiter. However, its formation mechanism has not been investigated. Here we succeed, for the first time, in reproducing the patterns of the observed streak structure, as regions of strong downward flows that develop in high-resolution global simulations of the Venus atmosphere. The streaks are formed in both hemispheres with equatorial symmetry, which is caused by equatorial Rossby-like and Kelvin-like waves with zonal wavenumber one. The low-stability layer that has been suggested by past observations is essential for reproducing the streak structure. The streaks of downward flow result from the interaction of the meridionally tilted phase lines of the Rossby-like waves and the characteristics of baroclinic instability produced around the low-stability layer.
云型是揭示金星大气环流的重要线索。最近,在“拂晓”号轨道飞行器上的 2μm 相机 IR2 拍摄的金星夜侧中、低云图像中发现了行星尺度的条纹结构。然而,其形成机制尚未得到研究。在这里,我们首次成功地在金星大气的高分辨率全球模拟中再现了观测到的条纹结构的模式,即强烈的向下流区域。条纹结构在具有赤道对称性的两个半球形成,这是由具有纬向波数 1 的赤道似罗斯贝波和开尔文波引起的。过去的观测结果表明,低稳定性层对于再现条纹结构是必不可少的。向下流动的条纹是由似罗斯贝波的经向倾斜位相线与低稳定性层周围产生的斜压不稳定性特征之间的相互作用产生的。