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Effect of air-sea coupling on the frequency distribution of intense tropical cyclones over the northwestern Pacific

机译:海海耦合对西北太平洋强热带气旋频率分布的影响

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摘要

Effect of air-sea coupling on the frequency distribution of intense tropical cyclones (TCs) over the northwestern Pacific (NWP) region is investigated using an atmosphere and ocean coupled general circulation model (AOGCM). Monthly varying flux adjustment enables AOGCM to simulate both subseasonal air-sea interaction and realistic seasonal to interannual sea surface temperature (SST) variability. The maximum of intense TC distribution around 20-30 degrees N in the AGCM shifts equatorward in the AOGCM due to the air-sea coupling. Hence, AOGCM reduces northward intense TC distribution bias seen in AGCM. Over the NWP, AOGCM-simulated SST variability is large around 20-30 degrees N where the warm mixed layer becomes shallower rapidly. Active entrainment from subsurface water over this region causes stronger SST cooling, and hence, TC intensity decreases. These results suggest that air-sea coupling characterized by subsurface oceanic condition causes more realistic distribution of intense TCs over the NWP.
机译:使用大气和海洋耦合的一般环流模型(AOGCM),研究了海海耦合对西北太平洋(NWP)区域强热带气旋(TC)频率分布的影响。每月变化的通量调整使AOGCM能够模拟季节下海气相互作用以及现实的季节到年际海表温度(SST)的变化。由于海海耦合,AGCM中20到30度N附近最大的强TC分布在AOGCM中向赤道移动。因此,AOGCM减少了AGCM中向北的强烈TC分布偏差。在NWP上方,AOGCM模拟的SST变异性在N的20-30度附近很大,在这里温暖的混合层迅速变浅。来自该区域的地下水的主动夹带引起更强的SST冷却,因此TC强度降低。这些结果表明,以地下海洋条件为特征的海海耦合导致了NWP上更强的TC的更现实的分布。

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