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The effect of tropospheric jet latitude on coupling between the stratospheric polar vortex and the troposphere.

机译:对流层射流纬度对平流层极涡与对流层之间耦合的影响。

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A dry general circulation model is used to investigate how coupling between the stratospheric polar vortex and the extratropical tropospheric circulation depends on the latitude of the tropospheric jet. The tropospheric response to an identical stratospheric vortex configuration is shown to be strongest for a jet centered near 40 degrees and weaker for jets near either 30 degrees or 50 degrees by more than a factor of 3. Stratosphere-focused mechanisms based on stratospheric potential vorticity inversion, eddy phase speed, and planetary wave reflection, as well as arguments based on tropospheric eddy heat flux and zonal length scale, appear to be incapable of explaining the differences in the magnitude of the jet shift. In contrast, arguments based purely on tropospheric variability involving the strength of eddy-zonal mean flow feedbacks and jet persistence, and related changes in the synoptic eddy momentum flux, appear to explain this effect. The dependence of coupling between the stratospheric polar vortex and the troposphere on tropospheric jet latitude found here is consistent with (1) the observed variability in the North Atlantic and the North Pacific and (2) the trend in the Southern Hemisphere as projected by comprehensive models.
机译:使用干式一般环流模型研究平流层极涡与温带对流层环流之间的耦合如何取决于对流层射流的纬度。对平流层涡旋构型的对流层响应显示,以40度为中心的射流响应最强,以30度或50度为中心的射流响应力减弱3倍以上。 ,涡流相速度和行星波反射,以及基于对流层涡流热通量和纬向长度尺度的论据,似乎无法解释射流位移大小的差异。相比之下,纯粹基于对流层变化性的论点似乎可以解释这种效应,这涉及对流层平均流反馈强度和射流持续性以及天气涡动量通量的相关变化。平流层极涡和对流层之间的耦合对对流层射流纬度的依赖性与(1)在北大西洋和北太平洋观测到的变化以及(2)综合模型预测的南半球的趋势一致。

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