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Intense precipitation events associated with landfalling tropical cyclones in response to a warmer climate and increased CO2

机译:由于气候变暖和二氧化碳增加,与登陆热带气旋有关的强烈降水事件

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摘要

In this work the authors investigate possible changes in the intensity of rainfall events associated 28with tropical cyclones (TCs) under idealized forcing scenarios, including a uniformly warmer climate, with a special focus on landfalling storms. A new set of experiments designed within the U.S. CLIVAR Hurricane Working Group allows disentangling the relative role of changes in atmospheric carbon dioxide from that played by sea surface temperature (SST) in changing theamount of precipitation associated with TCs in a warmer world. Compared to the present day simulation, we found an increase in TC precipitation under the scenarios involving SST increases. On the other hand, in a CO2 doubling-only scenario, the changes in TC rainfall are small and we found that, on average, TC rainfall tends to decrease compared to the present day climate. The results of this study highlight the contribution of landfalling TCs to the projected increase in theprecipitation changes affecting the tropical coastal regions.
机译:在这项工作中,作者调查了在理想的强迫情况下(包括均匀变暖的气候),与热带气旋(TC)相关的28个降雨事件强度的可能变化,特别关注着陆风暴。美国CLIVAR飓风工作组设计了一组新的实验,可以使大气中二氧化碳变化与海表温度(SST)所起的相对作用脱开关系,从而改变了一个变暖世界中与TC相关的降水量。与当前的模拟相比,我们发现在涉及SST增加的情况下TC降水增加。另一方面,在仅CO2倍增的情况下,TC降雨的变化很小,我们发现,与目前的气候相比,TC降雨平均倾向于减少。这项研究的结果突出了登陆热带气旋对影响热带沿海地区的降水变化预计增加的贡献。

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