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首页> 外文期刊>Journal of Climate >Tropical Cyclones Downscaled from Simulations of the Last Glacial Maximum
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Tropical Cyclones Downscaled from Simulations of the Last Glacial Maximum

机译:热带旋风从最后冰川最大的模拟落下

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摘要

The tracks, intensities, and other properties of tropical cyclones downscaled from three models' simulations of the Last Glacial Maximum (LGM) are analyzed and compared to those of storms downscaled from simulations of the present climate. Globally, the mean maximum intensity of storms generated from each model is lower at LGM, as is the fraction of all storms that reach intensities of category 4 or higher on the Saffir-Simpson hurricane wind scale. The median day of the storm season shifts earlier by an average of one week in all three models in both hemispheres. Two of the three models' LGM simulations feature a reduction in storm count and global power dissipation index compared to the current climate, but a third shows no significant difference between the two climates. Although each model is forced by the same global changes, differences in the way sea surface temperatures and other large-scale environmental conditions respond in the North Atlantic impart significant differences in the climatology at LGM between models. Our results from the cold LGM provide a novel opportunity to assess how tropical cyclones respond to climate changes.
机译:分析了三个模型对末次冰期最大值(LGM)的模拟结果中缩小尺度的热带气旋的路径、强度和其他特性,并与当前气候模拟结果中缩小尺度的风暴的路径、强度和其他特性进行了比较。在全球范围内,在LGM时,每个模型产生的风暴的平均最大强度较低,在Saffir-Simpson飓风风力等级中,达到4级或更高强度的所有风暴的比例也较低。在这两个半球的所有三个模型中,风暴季节的中位天数平均提前一周。与当前气候相比,三个模型的LGM模拟中有两个具有风暴计数和全球功耗指数减少的特点,但第三个模型显示两种气候之间没有显著差异。虽然每个模型都受到相同的全球变化的影响,但北大西洋海面温度和其他大规模环境条件的响应方式的差异,导致了模型之间LGM的气候学存在显著差异。我们的冷LGM结果为评估热带气旋如何应对气候变化提供了一个新的机会。

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