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Investigating the Impact of Reemerging Sea Surface Temperature Anomalies on the Winter Atmospheric Circulation over the North Atlantic

机译:调查重新出现的海面温度异常对北大西洋冬季大气环流的影响

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Extratropical SSTs can be influenced by the 'reemergence mechanism,' whereby thermal anomalies in the deep winter mixed layer persist at depth through summer and are then reentrained into the mixed layer in the following winter. The impact of reemergence in the North Atlantic Ocean (NAO) upon the climate system is investigated using an atmospheric general circulation model coupled to a mixed layer ocean/thermodynamic sea ice model. The dominant pattern of thermal anomalies below the mixed layer in summer in a 150-yr control integration is associated with the North Atlantic SST tripole forced by the NAO in the previous winter as indicated by singular value decomposition (SVD). To isolate the reemerging signal, two additional 60-member ensemble experiments were conducted in which temperature anomalies below 40 m obtained from the SVD analysis are added to or subtracted from the control integration. The reemerging signal, given by the mean difference between the two 60-member ensembles, causes the SST anomaly tripole to recur, beginning in fall, amplifying through January, and persisting through the following spring. The atmospheric response to these SST anomalies resembles the circulation that created them the previous winter but with reduced amplitude (10-20 m at 500 mb per degree C), modestly enhancing the winter-to-winter persistence of the NAO. Changes in the transient eddies and their interactions with the mean flow contribute to the large-scale equivalent barotropic response throughout the troposphere. The latter can also be attributed to the change in occurrence of intrinsic weather regimes.
机译:温带海表温度受“再发机制”的影响,深部冬季混合层中的热异常在整个夏季一直持续到深处,然后在下一个冬季被重新夹带到混合层中。使用耦合到混合层海洋/热力学海冰模型的大气总环流模型研究了北大西洋(NAO)的再次出现对气候系统的影响。如奇异值分解(SVD)所示,夏季在150年的控制整合中,夏季混合层以下的热异常的主要模式与NAO强迫的北大西洋SST三极管有关。为了隔离重新出现的信号,还进行了两个附加的60个成员的集成实验,其中将根据SVD分析获得的40 m以下的温度异常添加到控制积分中或从中扣除。由两个60人合奏之间的平均差给出的重新出现的信号使SST异常三重音再次出现,从秋季开始,一直放大到一月份,并一直持续到第二个春天。对这些SST异常的大气响应类似于在上一个冬天造成它们的循环,但是振幅减小了(在500 mb /℃下为10-20 m),适度增强了NAO的从冬到冬的持久性。瞬态涡流的变化及其与平均流量的相互作用导致整个对流层的大规模等效正压响应。后者也可以归因于固有天气状况的发生变化。

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