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Impact of tropical Atlantic sea-surface temperature biases on the simulated atmospheric circulation and precipitation over the Atlantic region: An ECHAM6 model study

机译:热带大西洋海面温度偏差对大西洋地区模拟大气环流和降水的影响:ECHam6模型研究

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摘要

As many coupled atmosphere-ocean general circulation models, the coupled Earth System Model developed at the Max Planck Institute for Meteorology suffers from severe sea-surface temperature (SST) biases in the tropical Atlantic. We performed a set of SST sensitivity experiments with its atmospheric model component ECHAM6 to understand the impact of tropical Atlantic SST biases on atmospheric circulation and precipitation. The model was forced by a climatology of observed global SSTs to focus on simulated seasonal and annual mean state climate. Through the superposition of varying tropical Atlantic bias patterns extracted from the MPI-ESM on top of the control field, this study investigates the relevance of the seasonal variation and spatial structure of tropical Atlantic biases for the simulated response. Results show that the position and structure of the Intertropical Convergence Zone (ITCZ) across the Atlantic is significantly affected, exhibiting a dynamically forced shift of annual mean precipitation maximum to the east of the Atlantic basin as well as a southward shift of the oceanic rain belt. The SST-induced changes in the ITCZ in turn affect seasonal rainfall over adjacent continents. However not only the ITCZ position but also other effects arising from biases in tropical Atlantic SSTs, e.g. variations in the wind field, change the simulation of precipitation over land. The seasonal variation and spatial pattern of tropical Atlantic SST biases turns out to be crucial for the simulated atmospheric response and is essential for analyzing the contribution of SST biases to coupled model mean state biases. Our experiments show that MPI-ESM mean-state biases in the Atlantic sector are mainly driven by SST biases in the tropical Atlantic while teleconnections from other basins seem to play a minor role.
机译:与许多大气海洋耦合的整体循环模型一样,马克斯·普朗克气象研究所开发的地球耦合系统模型也遭受热带大西洋地区严重的海面温度(SST)偏差的困扰。我们对其大气模型成分ECHAM6进行了一套SST敏感性实验,以了解热带大西洋SST偏差对大气环流和降水的影响。该模型是由观测到的全球SST的气候学推动的,重点是模拟的季节性和年度平均状态气候。通过在控制场的顶部叠加从MPI-ESM提取的各种热带大西洋偏斜模式的叠加,本研究调查了热带大西洋偏斜的季节性变化和空间结构与模拟响应的相关性。结果表明,横跨大西洋的热带辐合带(ITCZ)的位置和结构受到显着影响,表现出年平均降水量最大值向大西洋盆地东部的动态强迫移动以及海洋雨带向南移动。 SST引起的ITCZ变化反过来又影响了邻近大陆的季节性降雨。但是,不仅是ITCZ的位置,还有热带大西洋SST的偏差所引起的其他影响,例如风场的变化,改变了陆地降水的模拟。事实证明,热带大西洋SST偏差的季节变化和空间格局对于模拟大气响应至关重要,对于分析SST偏差对耦合模型平均状态偏差的影响至关重要。我们的实验表明,大西洋板块中的MPI-ESM平均状态偏差主要由热带大西洋中的SST偏差驱动,而其他盆地的遥相关似乎起着较小的作用。

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    Eichhorn, A.; Bader, J.;

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  • 年度 2017
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