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Polar mesospheric clouds at the South Pole

机译:极地态度云在南极

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We made the first lidar observations of polar mesospheric clouds (PMC) at the South Pole and in the southern hemisphere with an Fe Boltzmann temperature lidar in the 1999-2000 and 2000-2001 austral summer seasons. Strong PMC activities were observed at the South Pole and extensive data were collected. Here we summarize the lidar observation results including the interannual, seasonal and diurnal variations of PMC altitude, brightness and occurrence probability. In particular, our data show that PMC at the South Pole are a few kilometers higher than in the northern hemisphere and PMC at the South Pole exhibit seasonal trends in both altitude and brightness. We explore the possible causes through the study of atmospheric thermal structure and upwelling wind by using NCAR TIME-GCM model and then presenting a PMC altitude model. Our initial conclusion is that these hemispheric differences and seasonal trends in PMC altitudes are the combination results of the hemispheric differences in thermal structure and upwelling wind, which are caused by the Earth orbital eccentricity and inter-hemisphere difference in gravity wave forcing.
机译:在1999 - 2000年和2000 - 2001年南部南部南部的Fe Boltzmann温度激光器中,我们在南极和南半球南半球进行了第一个激光乐队观察。在南极观察强大的PMC活动,收集了广泛的数据。在这里,我们总结了激光雷达观察结果,包括PMC高度,亮度和发生概率的际季节和昼夜变化。特别是,我们的数据显示,南极的PMC比北半球北半球和南极的PMC在南极展览海拔高度和亮度的季节性趋势等几公里。我们通过使用NCAR时间-GCM模型然后呈现PMC高度模型来探索大气热结构和上升风的可能原因。我们的初始结论是,这些半球差异和PMC海拔的季节趋势是热结构和升高风中的半球差异的组合结果,这是由地球轨道偏心和重力波强迫的半球间差异引起的。

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