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Influence of the Antarctic ozone hole on the polar mesopause region as simulated by the Canadian Middle Atmosphere Model

机译:加拿大中部大气模型模拟的南极臭氧空洞对极地中更年期区域的影响

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摘要

It is well established that variations in polar stratospheric winds can affect mesospheric temperaturesudthrough changes in the filtering of gravity wave fluxes, which drive a residual circulation in the mesosphere. The Canadian Middle Atmosphere Model(CMAM) is used to examine this vertical coupling mechanism in the context of the mesospheric response to the Antarctic ozone hole. It is found that the response differs significantly between late spring and early summer, because of a changing balance between the competing effects of parametrised gravity wavedrag (GWD)and changes in resolved wave drag local to the mesosphere. In late spring, the strengthened stratospheric westerlies arising from the ozone hole lead to reduced eastward GWD in the mesosphere and a warming of the polar mesosphere, just as in the well known mesospheric response to sudden stratospheric warmings, but with anudopposite sign.In early summer, with easterly flow revailing over most of the polar stratosphere,the strengthened easterly wind shear within the mesosphere arising from the west ward GWD anomaly induces a positive resolved wave drag anomaly through baroclinic instability. The polar cooling induced by this process completely dominates the upper mesospheric response to the ozone hole in early summer. Consequences for the past and future evolution of noctilucent clouds are discussed
机译:公认的是,平流层极地风的变化会通过引力波通量滤波的变化影响中层温度,从而驱动中层残余循环。在对南极臭氧空洞的中层响应的背景下,使用加拿大中层大气模型(CMAM)来检验这种垂直耦合机制。研究发现,由于参数化重力波拖曳(GWD)的竞争效应与中层球体局部解析波阻力的变化之间的平衡发生了变化,因此在春末和夏初之间,响应存在显着差异。在春季末期,由臭氧空洞引起的平流层西风增强导致中层中层向东GWD减小,极地中层层变暖,就像众所周知的平流层对平流层突然变暖的反应一样,但符号为正。初夏,随着极地平流层大部分地区向东流动的逆流,由西向GWD异常引起的中层东风风切变增强,通过斜压不稳定引起正向解析波阻力异常。在夏季初,由该过程引起的极地冷却完全支配了上层中层对臭氧空洞的响应。讨论了夜光云过去和未来演变的后果

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