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  4. Riverbed migrations in Western Taiwan under climate change
 
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Riverbed migrations in Western Taiwan under climate change

Journal
Water (Switzerland)
Journal Volume
10
Journal Issue
11
Date Issued
2018
Author(s)
Chao Y.-C
CHI-WEN CHEN  
Li H.-C
Chen Y.-M.
DOI
10.3390/w10111631
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85056396168&doi=10.3390%2fw10111631&partnerID=40&md5=fe3ecac906069e3ad416d1aed0f84630
https://scholars.lib.ntu.edu.tw/handle/123456789/571604
Abstract
In recent years, extreme weather phenomena have occurred worldwide, resulting in many catastrophic disasters. Under the impact of climate change, the frequency of extreme rainfall events in Taiwan will increase, according to a report on climate change in Taiwan. This study analyzed riverbed migrations, such as degradation and aggradation, caused by extreme rainfall events under climate change for the Choshui River, Taiwan. We used the CCHE1D model to simulate changes in flow discharge and riverbed caused by typhoon events for the base period (1979-2003) and the end of the 21st century (2075-2099) according to the climate change scenario of representative concentration pathways 8.5 (RCP8.5) and dynamical downscaling of rainfall data in Taiwan. According to the results on flow discharge, at the end of the 21st century, the average peak flow during extreme rainfall events will increase by 20% relative to the base period, but the time required to reach the peak will be 8 h shorter than that in the base period. In terms of the results of degradation and aggradation of the riverbed, at the end of the 21st century, the amount of aggradation will increase by 33% over that of the base period. In the future, upstream sediment will be blocked by the Chichi weir, increasing the severity of scouring downstream. In addition, due to the increased peak flow discharge in the future, the scouring of the pier may be more serious than it is currently. More detailed 2D or 3D hydrological models are necessary in future works, which could adequately address the erosive phenomena created by bridge piers. Our results indicate that not only will flood disasters occur within a shorter time duration, but the catchment will also face more severe degradation and aggradation in the future. ? 2018 by the authors.
Subjects
Catchments; Climate models; Degradation; Disasters; Flood control; Flowmeters; Rain; Rivers; Sediments; Aggradation; CCHE1D; Dynamical downscaling; Flow discharges; Migration; Riverbed; Climate change; bridge; catastrophic event; catchment; climate change; disaster; downscaling; flood; peak flow; pier; rainfall; river bed; river discharge; sediment analysis; typhoon; weir; Chichi; Choshui River; Taiwan
SDGs

[SDGs]SDG13

Type
journal article

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