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DOI10.3390/w11020313
A Temperature-Scaling Approach for Projecting Changes in Short Duration Rainfall Extremes from GCM Data
Dahm, Ruben1; Bhardwaj, Aashish2; Weiland, Frederiek Sperna2; Corzo, Gerald3; Bouwer, Laurens M.4
发表日期2019
EISSN2073-4441
卷号11期号:2
英文摘要

Current and future urban flooding is influenced by changes in short-duration rainfall intensities. Conventional approaches to projecting rainfall extremes are based on precipitation projections taken from General Circulation Models (GCM) or Regional Climate Models (RCM). However, these and more complex and reliable climate simulations are not yet available for many locations around the world. In this work, we test an approach that projects future rainfall extremes by scaling the empirical relation between dew-point temperature and hourly rainfall and projected changes in dew-point temperature from the EC-Earth GCM. These projections are developed for the RCP 8.5 scenario and are applied to a case study in the Netherlands. The shift in intensity-duration-frequency (IDF) curves shows that a 100-year (hourly) rainfall event today could become a 73-year event (GCM), but could become as frequent as a 30-year (temperature-scaling) in the period 2071-2100. While more advanced methods can help to further constrain future changes in rainfall extremes, the temperature-scaling approach can be of use in practical applications in urban flood risk and design studies for locations where no high-resolution precipitation projections are available.


WOS研究方向Water Resources
来源期刊WATER
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/92722
作者单位1.Deltares USA Inc, 8601 Georgia Ave Suite 508, Silver Spring, MD 20910 USA;
2.Deltares, POB 177, NL-2600 MH Delft, Netherlands;
3.IHE Delft Inst Water Educ, Dept Integrated Water Syst & Governance, POB 3015, NL-2601 DA Delft, Netherlands;
4.Helmholtz Zentrum Geesthacht, Climate Serv Ctr Germany, D-20095 Hamburg, Germany
推荐引用方式
GB/T 7714
Dahm, Ruben,Bhardwaj, Aashish,Weiland, Frederiek Sperna,et al. A Temperature-Scaling Approach for Projecting Changes in Short Duration Rainfall Extremes from GCM Data[J],2019,11(2).
APA Dahm, Ruben,Bhardwaj, Aashish,Weiland, Frederiek Sperna,Corzo, Gerald,&Bouwer, Laurens M..(2019).A Temperature-Scaling Approach for Projecting Changes in Short Duration Rainfall Extremes from GCM Data.WATER,11(2).
MLA Dahm, Ruben,et al."A Temperature-Scaling Approach for Projecting Changes in Short Duration Rainfall Extremes from GCM Data".WATER 11.2(2019).
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