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Climatology of semidiurnal lunar and solar tides at middle and high latitudes: Interhemispheric comparison

机译:中高纬度的半球农历和太阳潮流的气候学:互脱金会比较

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The semidiurnal lunar and solar tides obtained from meteor radar measurements spanning from 2009 to 2013 observed at Davis (69°S) and Rio Grande (54°S) are presented and compared to the Northern Hemisphere ones at Andenes (69°N) and Juliusruh (54°N). Mean tidal differences for both intrahemispheric and interhemispheric scenarios are analyzed. Tidal behavior is also compared against numerical simulations during 2009 and 2013 sudden stratospheric warming (SSW) time periods. Possible influences in the Southern Hemisphere from the local stratosphere are also investigated using Modern Era Retrospective analysis for Research and Applications, version 2 (MERRA 2) data sets. The main features of the mean zonal wind are similar in both hemispheres, i.e., stronger amplitudes over midlatitude locations, eastward winds during winter and westward below 90 km with eastward higher up during corresponding summer times. On the other hand, the semidiurnal solar tides observed in the Southern Hemisphere show clear differences when compared to the Northern Hemisphere and between middle- and high-latitude locations at the same hemisphere. These differences are even larger for the semidiurnal lunar tide, which shows stronger amplitudes from October to March and March to October, over Davis and Rio Grande, respectively. Our results indicate that the lunar tides over the Southern Hemisphere midlatitudes are more prone to react to the Northern Hemisphere stratospheric polar vortex influences, in agreement with numerical simulations, particularly for the time of the 2013 SSW.
机译:从2009年到2013年从戴维斯(69°S)和Rio Grande(54°S)观察到的流星雷达测量的半峰和太阳潮汐,并与Andenes(69°N)和Juliusruh的北半球(54°N)。分析了内心主管和互脱体情景的平均潮汐差异。在2009年和2013年突然的平流层变暖(SSW)时间段期间也与数值模拟进行了比较了潮汐行为。使用现代时代回顾性分析研究和应用,2(Merra 2)数据集,还研究了来自当地平流层南半球的可能影响。平均危险的主要特征在半球上类似,即在中间地区的较强的巨大幅度,在冬季和向西的东风下方90公里,在相应的夏季时钟后向东增加。另一方面,与北半球相比,南半球观察到的半峰太阳潮汐显示出明显的差异,以及同一半球的中高纬度位置。这些差异对于半年农历潮流甚至更大,这对于从10月到3月和3月至10月,分别展示了更强的巨大幅度,分别在戴维斯和里奥格兰德。我们的结果表明,与数值模拟的协议,南半球中间人的月球潮在南半球中间南半球中间人的影响更容易发生对北半球平流层极性涡流影响的影响,特别是对于2013年SSW的时间。

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