首页> 外文期刊>Journal of geophysical research. Planets >Solar-Related Variations of the Cloud Top Circulation Above Aphrodite Terra From VMC/Venus Express Wind Fields
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Solar-Related Variations of the Cloud Top Circulation Above Aphrodite Terra From VMC/Venus Express Wind Fields

机译:从VMC / Venus Express风域上的云层循环的太阳能相关变化

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Winds derived by a digital tracking technique from ultraviolet (365 nm) images captured by the Venus Monitoring Camera (VMC) onboard the Venus Express spacecraft from 2006 to 2013 were used to study the atmospheric circulation at cloud top level (70 ± 2 km). This data set allows variations of the wind speed with both latitude and longitude to be studied and establishes their correlation with surface topography as well as local time dependence. Both zonal and meridional wind components show some correlation with topography. The minimum zonal wind speed was found at noon above Ovda Regio (10°S, 93°E), the highest region of Aphrodite Terra, one of the largest highlands in the equatorial region. The area of slow zonal wind extends to at least 30°S and shifts in the direction of superrotation in the afternoon and with increasing latitude (poleward). The observed deceleration of cloud top wind was recently attributed to the interaction of the gravity (mountain) waves generated by Aphrodite Terra with the atmospheric circulation. The present study was performed for different local time over the mountainous longitudes. The deceleration pattern in the zonal wind field is mainly conserved within a few hours around noon. Systematic longitude shift is observed in the afternoon in the direction of the evening terminator. Another area of perturbation of both zonal and meridional wind components is observed in the equatorial region around LT = 13-14 hr and may be explained by the solar tide.
机译:由由金星监测相机(VMC)捕获的紫外线(365nm)图像从2006年到2013年捕获的紫外线(365nm)图像来自Venus Express Spacecraft的紫外线(VMC)的图像来研究云顶级(70±2 km)的大气循环。该数据集允许研究风速和经度的风速变化,并建立与表面形貌以及局部时间依赖性的相关性。 Zonal和子午线的风能组件都显示出一些与地形相关的相关性。在OVDA Regio中午(10°S,93°e)的中午,最高区域,是赤道地区最大的高地之一的最高区域。慢纬线的区域延伸到至少30°S并在下午的叠加方向上偏移并且纬度增加(极向)。观察到的云顶风的减速最近归因于具有大气循环的阿芙罗狄蒂地区产生的重力(山)波的相互作用。对山地长度的不同当地时间进行本研究。 Zonal风场中的减速模式主要在中午几个小时内保守。在傍晚的终结者的方向上观察到系统经度移位。在LT = 13-14小时周围的赤道区域中观察到Zonal和子化风分量的另一个扰动区域,并且可以由太阳潮汐解释。

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