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Quantification of impacts between 1.5 and 4 °C of global warming on flooding risks in six countries
by
Manful Desmond
, He, Yi
, Warren, Rachel
, Wallace, Craig
, Jenkins Rhosanna
, Price, Jeff
, Yamazaki Dai
, stenhäusler Nicole
, Osborn, Timothy J
in
100 year floods
/ Climate change
/ Climate models
/ Environmental risk
/ Evapotranspiration
/ Flood risk
/ Flooding
/ Floods
/ Global warming
/ Hydrodynamic models
/ Hydrologic models
/ Hydrology
/ Potential evapotranspiration
/ River basins
/ River discharge
/ River flow
/ Rivers
2022
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Quantification of impacts between 1.5 and 4 °C of global warming on flooding risks in six countries
by
Manful Desmond
, He, Yi
, Warren, Rachel
, Wallace, Craig
, Jenkins Rhosanna
, Price, Jeff
, Yamazaki Dai
, stenhäusler Nicole
, Osborn, Timothy J
in
100 year floods
/ Climate change
/ Climate models
/ Environmental risk
/ Evapotranspiration
/ Flood risk
/ Flooding
/ Floods
/ Global warming
/ Hydrodynamic models
/ Hydrologic models
/ Hydrology
/ Potential evapotranspiration
/ River basins
/ River discharge
/ River flow
/ Rivers
2022
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Quantification of impacts between 1.5 and 4 °C of global warming on flooding risks in six countries
by
Manful Desmond
, He, Yi
, Warren, Rachel
, Wallace, Craig
, Jenkins Rhosanna
, Price, Jeff
, Yamazaki Dai
, stenhäusler Nicole
, Osborn, Timothy J
in
100 year floods
/ Climate change
/ Climate models
/ Environmental risk
/ Evapotranspiration
/ Flood risk
/ Flooding
/ Floods
/ Global warming
/ Hydrodynamic models
/ Hydrologic models
/ Hydrology
/ Potential evapotranspiration
/ River basins
/ River discharge
/ River flow
/ Rivers
2022
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Quantification of impacts between 1.5 and 4 °C of global warming on flooding risks in six countries
Journal Article
Quantification of impacts between 1.5 and 4 °C of global warming on flooding risks in six countries
2022
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Overview
We project climate change induced changes in fluvial flood risks for six global warming levels between 1.5 and 4 °C by 2100, focusing on the major river basins of six countries. Daily time series of precipitation, temperature and monthly potential evapotranspiration were generated by combining monthly observations, daily reanalysis data and projected changes in the five CMIP5 GCMs also selected in the ISI-MIP fast track project. These series were then used to drive the HBV hydrological model and the CaMa-Flood hydrodynamic model to simulate river discharge and flood inundation. Our results indicate that return periods of 1 in 100-year floods in the late twentieth century (Q100-20C) are likely to decrease with warming. At 1.5 °C warming, 47%, 66%, 27%, 65%, 62% and 92% of the major basin areas in Brazil, China, Egypt, Ethiopia, Ghana and India respectively experience a decrease in the return period of Q100-20C, increasing to 54%, 81%, 28%, 82%, 86% and 96% with 4 °C warming. The decrease in return periods leads to increased number of people exposed to flood risks, particularly with 4 °C warming, where exposure in the major river basin areas in the six countries increases significantly, ranging from a doubling (China) to more than 50-fold (Egypt). Limiting warming to 1.5 °C would avoid much of these increased risks, resulting in increases ranging from 12 to 1266% for the 6 countries.
Publisher
Springer Nature B.V
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