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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Large-scale dynamics of the mesosphere and lower thermosphere: An analysis using the extended Canadian Middle Atmosphere Model
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Large-scale dynamics of the mesosphere and lower thermosphere: An analysis using the extended Canadian Middle Atmosphere Model

机译:大规模的中间层和更低的动力学热大气层:使用扩展分析加拿大中部大气模型

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The extended Canadian Middle Atmosphere Model is used to investigate the large-scale dynamics of the mesosphere and lower thermosphere (MLT). It is shown that the 4-day wave is substantially amplified in southern polar winter in the presence of instabilities arising from strong vertical shears in the MLT zonal mean zonal winds brought about by parameterized nonorographic gravity wave drag. A weaker 4-day wave in northern polar winter is attributed to the weaker wind shears that result from weaker parameterized wave drag. The 2-day wave also exhibits a strong dependence on zonal wind shears, in agreement with previous modeling studies. In the equatorial upper mesosphere, the migrating diurnal tide provides most of the resolved westward wave forcing, which varies semiannually in conjunction with the tide itself; resolved forcing by eastward traveling disturbances is dominated by smaller scales. Nonmigrating tides and other planetary-scale waves play only a minor role in the zonal mean zonal momentum budget in the tropics at these heights. Resolved waves are shown to play a significant role in the zonal mean meridional momentum budget in the MLT, impacting significantly on gradient wind balance. Balance fails at low latitudes as a result of a strong Reynolds stress associated with the migrating diurnal tide, an effect which is most pronounced at equinox when the tide is strongest. Resolved and parameterized waves account for most of the imbalance at higher latitudes in summer. This results in the gradient wind underestimating the actual eastward wind reversal by up to 40%.
机译:扩展的加拿大中层大气模型用于调查的大规模动态中间层和较低的热电离层(MLT)。结果表明,为期4天的波是大大放大南部极地冬季存在不稳定引起的强垂直剪MLT的纬向平均纬向风所带来的参数化nonorographic重力波阻。北极冬天是归因于较弱风剪,结果从较弱的参数化波阻。纬向风剪的依赖,在协议与先前的建模研究。上中间层,迁移全日潮西波提供了大部分的解决强迫,每半年变化相结合潮流本身;向东干扰主要是旅行更小的尺度。行星尺度波只扮演次要的角色预算的纬向平均纬向动量在这个高度热带地区。显示区域中发挥重要作用平均经向动量MLT预算,影响显著的梯度风的平衡。在低纬度地区平衡失败的结果强大的雷诺应力相关迁移全日潮,影响最大明显在equinox当潮水是最强的。解决和参数化波占大多数在夏天,高纬度地区的不平衡。这导致梯度风低估实际的东方风逆转40%。

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