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Venus cloud top winds from tracking UV features in Venus Monitoring Camera images

机译:金星云顶风来自跟踪金星监控相机图像中的紫外线特征

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To date dynamical observations of the Venus clouds have delivered mainly either only short-term or long-term averaged results. With the Venus Monitoring Camera (VMC) it finally became possible to investigate the global dynamics with a relatively high resolution in space and time on a long-term basis. Our findings from manual cloud feature wind tracking in VMC UV image sequences so far show that the details of the mesospheric dynamics of Venus appear to be highly variable. Although the general rotation of the atmosphere remained relatively stable since Mariner 10, more than 30 years ago, by now, there arc indications of short-term variations in the general circulation pattern of the Venus atmosphere at cloud top level. In some cases, significant variations in the zonal wind properties occur on a timescale of days. In other cases, we see rather stable conditions over one atmospheric revolution, or longer, at cloud top level. It remains an interesting question whether the irregularly observed midlatitude jets are indeed variable or simply become shielded from view by higher H7SO4 haze layers for varying time intervals. Winds at latitudes higher than 60°S are still difficult to obtain track because of low contrast and scarcity of features but increasing data is being collected. Over all, it was possible to extend latitudinal coverage of the cloud top winds with VMC observations. Thermal tides seem to be present in the data, but final confirmation still depends on synthesis of Visible and Infrared Thermal Imaging Spectrometer and VMC observations on night and dayside. Although poorly resolved, meridional wind speed measurements agree mainly with previous observations and with the presence of a Hadley cell spanning between equatorial region and about 45°S latitude.
机译:迄今为止,对金星云的动态观测主要仅提供了短期或长期平均结果。借助金星监控摄像机(VMC),最终可以长期以相对较高的时空分辨率研究全球动态。到目前为止,我们从VMC UV图像序列中的手动云特征风跟踪得出的结果表明,金星的中层动力学细节似乎变化很大。尽管自30年前的Mariner 10以来,大气的总体旋转一直保持相对稳定,但到现在,仍然有迹象表明金星云层高层的总体环流模式有短期变化。在某些情况下,纬向风特性的显着变化会发生在几天的时间范围内。在其他情况下,我们可以看到,在一次大气旋转或更长的时间里,云顶水平的情况相当稳定。仍然存在一个有趣的问题,即在不同的时间间隔内,不规则观察到的中纬度射流的确是可变的还是只是被较高的H7SO4雾度层遮挡而看不见。由于低对比度和特征稀缺,高于60°S的纬度的风仍然很难获得轨迹,但是正在收集越来越多的数据。总体而言,通过VMC观测可以扩展云顶风的纬度覆盖范围。数据中似乎存在热潮,但最终的确认仍取决于可见光和红外热成像光谱仪的合成以及夜间和白天的VMC观测值。尽管子午线风速的解析度很差,但它主要与以前的观测结果一致,并且与Hadley单元跨越赤道区域和纬度约45°S一致。

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