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首页> 外文期刊>Geophysical Research Letters >Vertical propagation of information in a middle atmosphere data assimilation system by gravity-wave drag feedbacks
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Vertical propagation of information in a middle atmosphere data assimilation system by gravity-wave drag feedbacks

机译:重力波阻力反馈在中层大气数据同化系统中垂直传播信息

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摘要

The mesospheric response to the 2002 Antarctic Stratospheric Sudden Warming (SSW) is analysed using the Canadian Middle Atmosphere Model Data Assimilation System (CMAM-DAS), where it represents a vertical propagation of information from the observations into the data-free mesosphere. The CMAM-DAS simulates a cooling in the lowest part of the mesosphere which is accomplished by resolved motions, but which is extended to the mid- to upper mesosphere by the response of the model's non-orographic gravity-wave drag parameterization to the change in zonal winds. The basic mechanism is that elucidated by Holton consisting of a net eastward wave-drag anomaly in the mesosphere during the SSW, although in this case there is a net upwelling in the polar mesosphere. Since the zonal-mean mesospheric response is shown to be predictable, this demonstrates that variations in the mesospheric state can be slaved to the lower atmosphere through gravity-wave drag.
机译:使用加拿大中层大气模型数据同化系统(CMAM-DAS)分析了对2002年南极平流层突然变暖(SSW)的中层响应,它表示信息从观测值到无数据中层的垂直传播。 CMAM-DAS通过解析运动来模拟中层最低层的冷却,但是通过模型的非地形重力波阻力参数化对模型变化的响应,将其扩展到中上层到中上层。纬向风。基本的机制是由Holton阐明的,包括南半球期间中层中空的净东风波拖曳异常,尽管在这种情况下,极地中层中有净上升流。由于纬向平均中层响应显示为可预测的,因此这表明中层状态的变化可以通过重力波拖曳作用降到较低的大气层。

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