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Tropical Cyclone Climatology in a High-resolution AGCM −Impacts of SST Warming and CO2 Increase−

机译:高分辨率AGCM中的热带气旋气候-SST变暖和CO2增加的影响-

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References(9) Cited-By(21) Supplementary materials(1) Using a high-horizontal-resolution atmospheric general circulation model (AGCM), impacts of SST warming and CO2 increase on the tropical cyclone (TC) climatology are investigated. The SST effect is examined from numerical experiments in which SST is uniformly higher/lower by 2 K, without changing the atmospheric CO2 concentration. The CO2 effect is shown from doubled and quadrupled CO2 experiments with a fixed SST condition. The results demonstrate that the increases in CO2 have large impacts to reduce TC frequency globally, while the SST changes have relatively small influences on the TC frequency. The SST warming causes significant increase in climatological precipitation, and this indicates intensification of convective heating and should have some influences to activate the atmospheric circulation in terms of vertical mass flux in the tropics. In the high-SST experiment, however, larger warming in the upper troposphere causes higher dry static stability, which should have some impacts to weaken the atmospheric circulation. It seems that these two conflicting factors, in terms of TC frequency, may cancel out to a large extent. As the effect of CO2 enhancement, precipitation decreases significantly in the tropics, which may lead to the reduction in TC frequency.
机译:参考文献(9)被引用的文献(21)补充材料(1)使用高水平分辨率的大气普通环流模型(AGCM),研究了SST变暖和CO2增加对热带气旋(TC)气候的影响。从数值实验中检查了SST效果,在该实验中,SST在不改变大气CO2浓度的情况下均匀地升高/降低2K。在固定的SST条件下,通过两倍和四倍的CO2实验显示了CO2效果。结果表明,CO2的增加对降低全球TC频率有很大的影响,而SST变化对TC频率的影响相对较小。 SST变暖引起气候降水的显着增加,这表明对流加热的加剧,就热带地区的垂直质量通量而言,应该对激活大气环流有一些影响。但是,在高SST实验中,对流层高层变暖会导致较高的干燥静态稳定性,这对减弱大气环流有一定影响。看来,从TC频率来看,这两个矛盾的因素可能在很大程度上抵消了。由于CO2增强的作用,热带地区的降水显着减少,这可能导致TC频率降低。

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