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The role of the winter residual circulation in the summer mesopause regions in WACCM

机译:冬季剩余循环在夏季中的角度在WACCM中的角度

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High winter planetary wave activity warms the summer polar mesopause via a link between the two hemispheres. Complex wave–mean-flow interactions take place on a global scale, involving sharpening and weakening of the summer zonal flow. Changes in the wind shear occasionally generate flow instabilities. Additionally, an altering zonal wind modifies the breaking of vertically propagating gravity waves. A crucial component for changes in the summer zonal flow is the equatorial temperature, as it modifies latitudinal gradients. Since several mechanisms drive variability in the summer zonal flow, it can be hard to distinguish which one is dominant. In the mechanism coined interhemispheric coupling, the mesospheric zonal flow is suggested to be a key player for how the summer polar mesosphere responds to planetary wave activity in the winter hemisphere. We here use the Whole Atmosphere Community Climate Model?(WACCM) to investigate the role of the summer stratosphere in shaping the conditions of the summer polar mesosphere. Using composite analyses, we show that in the absence of an anomalous summer mesospheric temperature gradient between the equator and the polar region, weak planetary wave forcing in the winter would lead to a warming of the summer mesosphere region instead of a cooling, and vice versa. This is opposing the temperature signal of the interhemispheric coupling that takes place in the mesosphere, in which a cold and calm winter stratosphere goes together with a cold summer mesopause. We hereby strengthen the evidence that the variability in the summer mesopause region is mainly driven by changes in the summer mesosphere rather than in the summer stratosphere.
机译:高冬季行星波活动通过两个半球之间的链接温暖夏季极性偏离。复杂的波动流动互动在全球范围内进行,涉及夏季区流量的锐化和削弱。风剪的变化偶尔会产生流动不稳定性。另外,改变的区域风改变破裂的垂直传播重力波。夏季区流动变化的关键部件是赤道温度,因为它改变了纬度梯度。由于几种机制在夏季区域流动中驱动变化,因此很难区分哪一个是主导的。在嵌入互脱球耦合的机制中,建议夏季极性介质圈层如何应对冬季半球的行星波动活动的关键球员。我们在这里使用整个氛围社区气候模型?(WACCM)调查夏季平流层在塑造夏季极性介质圈状况方面的作用。使用复合分析,我们表明,在赤道与极地区域之间的异常夏季伴随温度梯度的情况下,冬季弱的行星波强迫将导致夏季介质地区的变暖而不是冷却,反之亦然。这与在介质层中发生的卵闭偶联的温度信号相反,其中寒冷和平静的冬季平流层与寒冷的夏季中间人一起进行。我们在此处加强了夏季中塞地区的变异性的证据,主要由夏季腰圈的变化而不是夏季平流层。

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