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Walker circulation response to extratropical radiative forcing

机译:Walker循环对卓越辐射强制进行响应

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Walker circulation variability and associated zonal shifts in the heating of the tropical atmosphere have far-reaching global impacts well into high latitudes. Yet the reversed high latitude–to–Walker circulation teleconnection is not fully understood. Here, we reveal the dynamical pathways of this teleconnection across different components of the climate system using a hierarchy of climate model simulations. In the fully coupled system with ocean circulation adjustments, the Walker circulation strengthens in response to extratropical radiative cooling of either hemisphere, associated with the upwelling of colder subsurface water in the eastern equatorial Pacific. By contrast, in the absence of ocean circulation adjustments, the Walker circulation response is sensitive to the forcing hemisphere, due to the blocking effect of the northward-displaced climatological intertropical convergence zone and shortwave cloud radiative effects. Our study implies that energy biases in the extratropics can cause pronounced changes of tropical climate patterns.
机译:热带大气层加热中的助行循环变异和相关的区内变化深入了解高纬度。然而,逆转的高纬度到步行者循环遥控器尚未完全理解。在这里,我们使用气候模型模拟的层次揭示了跨气候系统的不同部件的这种电信连接的动态途径。在具有海洋循环调整的完全耦合系统中,助行循环响应于多个半球的型材辐射冷却,与东部赤道太平洋较冷的地下水的升值相关联。相比之下,在没有海洋循环调整的情况下,由于向北流离失所的气候闭合症收敛区和短波云辐射效应的阻挡效果,助行器循环响应对迫使半球敏感。我们的研究意味着卓越的能量偏差可能导致热带气候模式的明显变化。

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