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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >DW1 Tidal Enhancements in the Equatorial MLT During 2015 El Ni?o: The Relative Role of Tidal Heating and Propagation
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DW1 Tidal Enhancements in the Equatorial MLT During 2015 El Ni?o: The Relative Role of Tidal Heating and Propagation

机译:在赤道MLT DW1潮汐增强在2015年厄尔倪?加热和传播

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摘要

Ground-based and satellite observations have shown that the tidal component DW1 in the equatorial mesosphere and lower thermosphere (MLT) was enhanced in July-October 2015, which was an intense El Ni?o year. This enhancement is reproduced in the 21 years reanalysis-driven model simulation by the Ground-to-topside model of Atmosphere and Ionosphere for Aeronomy (GAIA). Our analysis shows the (1,1) Hough mode dominates this tidal enhancement, and its peak amplitude was 7.4 K (74%) higher than that under neutral (non-ENSO) conditions at 90 km. The corresponding tidal heating was found to increase by 0.4 mWkg~(-1) (5%), which can explain 0.5 K (7%) of the (1,1) enhancement. To explain the remaining 6.9 K (93%) of the enhancement, we quantitively examined the upward propagation condition by calculating the vertical wavenumber and the latitudinal shear of the zonal wind. The analysis reveals that the vertical wavenumber between 18 and 60 km was one standard deviation smaller than that under neutral conditions. The latitudinal zonal wind shear also decreased at 18 N/S° in 18-30 km. These results suggest smaller dissipation and damping of the (1,1) mode during its upward propagation, which dominantly contributed to the tidal enhancement at 90 km altitude. This decrease in the vertical wavenumber and the wind shear can be reasonably explained by the eastward phase of the quasi-biennial oscillation (QBO) in the lower stratosphere. This study suggests that the overlapping of the 2015 El Ni?o with the eastward phase of the QBO induced the large enhancement of the DW1.
机译:地面和卫星观测显示潮汐组件DW1在赤道中间层和较低的热电离层(MLT)2015年July-October增强,这是一个强烈的El倪?在21年reanalysis-driven复制模型由Ground-to-topside仿真模型大气和电离层的高层大气物理学(盖亚)。我们的分析显示了(1,1)踝关节模式占主导地位这潮汐增强,峰值振幅7.4 K下(74%)高于中性在90公里(non-ENSO)条件。潮汐加热被发现增加0.4mWkg ~(1)(5%),这可以解释0.5 K (7%)(1)提高。6.9 K(93%)的增强,我们形特征检查了向上传播条件计算垂直波数和纬度的纬向风的剪切。显示,18岁之间的垂直波数一个标准差小于60公里在中性条件下。纬向风切变在18 N / S°也减少了18 - 30公里。耗散和阻尼的(1,1)模式其向上传播,居多导致了潮汐增强在90公里高度。波数,可以合理的风切变东相的解释quasi-biennial振荡(QBO)低平流层。重叠的2015 El倪?阶段的QBO诱导大提高DW1。

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