An increase in global daily precipitation records in response to global warming based on reanalysis and observations

J. Ciarlo, Filippo Giorgi
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Abstract

Understanding trends in extreme precipitation events in the context of global warming is critical for assessing climate change impacts. This study employs a novel methodology developed by Giorgi and Ciarlo (2022) to analyze record-breaking daily precipitation events from 1980 to 2020, utilizing three reanalysis products (ERA5, MERRA-2, and JRA-55) and one global observation dataset (MSWEP). Our results indicate a consistent and statistically significant increase in record-breaking precipitation events globally, with variations across different latitude bands and between land and ocean areas. This trend is evident in all datasets, with the most substantial increases observed over oceans in ERA5 and over land in JRA and MERRA. Notably, the Southern Hemisphere shows mixed results, with some regions displaying negative trends. This study highlights the increasing frequency of extreme precipitation events, supporting the hypothesis of intensified hydrological cycles under a warming climate. Our findings enhance understanding of precipitation extremes and underscore the importance of regional analyses in climate impact studies. Future work could extend these findings to formal attribution studies linking observed trends directly to anthropogenic climate change.
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基于再分析和观测的全球日降水量记录随全球变暖而增加
了解全球变暖背景下极端降水事件的趋势对于评估气候变化的影响至关重要。本研究采用了 Giorgi 和 Ciarlo(2022 年)开发的一种新方法,利用三个再分析产品(ERA5、MERRA-2 和 JRA-55)和一个全球观测数据集(MSWEP),分析了 1980 年至 2020 年破纪录的日降水事件。我们的研究结果表明,全球破纪录的降水事件在统计意义上呈持续增长趋势,不同纬度带以及陆地和海洋地区之间存在差异。这一趋势在所有数据集中都很明显,ERA5 中海洋降水量增加最多,JRA 和 MERRA 中陆地降水量增加最多。值得注意的是,南半球的结果好坏参半,一些地区呈现负趋势。这项研究强调了极端降水事件发生频率的增加,支持气候变暖下水文循环加剧的假设。我们的研究结果加深了人们对极端降水的理解,并强调了气候影响研究中区域分析的重要性。未来的工作可以将这些发现扩展到正式的归因研究,将观测到的趋势与人为气候变化直接联系起来。
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