Climate change exacerbates compound flooding from recent tropical cyclones

被引:0
|
作者
Lauren E. Grimley [1 ]
Katherine E. Hollinger Beatty [2 ]
Antonia Sebastian [1 ]
Shintaro Bunya [3 ]
Gary M. Lackmann [2 ]
机构
[1] University of North Carolina at Chapel Hill,Department of Earth, Marine and Environmental Sciences
[2] North Carolina State University,Department of Marine, Earth and Atmospheric Sciences
[3] University of North Carolina at Chapel Hill,Coastal Resilience Center
来源
npj Natural Hazards | / 1卷 / 1期
关键词
D O I
10.1038/s44304-024-00046-3
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学科分类号
摘要
Tropical cyclones (TCs) generate substantial damage raising concerns about how climate change may amplify their impacts. However, linking changes in TC characteristics (wind, precipitation) to shifts in flood hazards and exposure, particularly due to the interaction of multiple drivers, is challenging. In this study, we use highly resolved physics-based models to investigate how flooding from three recent TCs in North and South Carolina would change under 4 degrees Celsius of warming. Runoff processes are the largest contributor to the total flood extent in both the present and future. However, the relative contribution of compound processes increases in the future, expanding upriver and beyond the floodplain where runoff processes previously occurred in isolation. The total area exposed to compound flooding increases by 65% and flood depths in these areas increase by 0.8 m highlighting the importance of simulating compound processes in TC flood exposure assessment.
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