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The transient response of atmospheric and oceanic heat transports to anthropogenic warming

机译:大气和海洋的瞬态响应人为气候变暖热传输

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摘要

Model projections of the near-future response to anthropogenic warming show compensation between meridional heat transports by the atmosphere (AHT) and ocean (OHT) that are largely symmetric about the equator , the causes of which remain unclear. Here, using both the Coupled Model Intercomparison Project Phase 5 archive and Community Climate System Model version 4 simulations forced with Representative Concentration Pathway 8.5 to 2600, we show that this transient compensation—specifically during the initial stage of warming—is caused by combined changes in both atmospheric and oceanic circulations. In particular, it is caused by a southward OHT associated with a weakened Atlantic Meridional Overturning Circulation, a northward apparent OHT associated with an ocean heat storage maximum around the Southern Ocean, and a symmetric coupled response of the Hadley and Subtropical cells in the Indo-Pacific basin. It is further shown that the true advective OHT differs from the flux-inferred OHT in the initial warming due to the inhomogeneous responses of ocean heat storage. These results provide new insights to further our understanding of future heat transport responses, and thereby global climatic processes such as the redistribution of ocean heat.
机译:模型的预测不远的将来,将响应人为气候变暖之间的补偿经大气传输的热量(出去)和海洋(OHT)基本上是对称的关于赤道,原因依然存在不清楚。5档案和工程阶段社区气候系统模型版本4模拟被迫与代表浓度通路8.5到2600年,我们显示这种瞬态compensation-specifically期间初始阶段造成的变暖结合大气和海洋的变化发行量。向南OHT削弱了大西洋经向翻转环流,向北明显OHT与海洋热有关存储最大在南太平洋,和一个哈德利和对称耦合反应在印度-太平洋地区盆地亚热带细胞。进一步表明,真正的平流OHT不同于flux-inferred OHT在最初变暖由于不均匀的反应海洋热储存。见解,进一步我们对未来的了解热传输响应,从而全球气候的再分配等过程海洋热能。

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