Model simulations of potential contribution of the proposed Huangpu Gate to flood control in the Lake Taihu basin of China

10.5194/hess-21-5339-2017

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Main Authors: Zhang, H, Liu, S, Ye, J, Yeh, P.J.-F
Other Authors: CIVIL AND ENVIRONMENTAL ENGINEERING
Format: Article
Published: Copernicus Publications 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/183495
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spelling sg-nus-scholar.10635-1834952024-04-03T09:13:03Z Model simulations of potential contribution of the proposed Huangpu Gate to flood control in the Lake Taihu basin of China Zhang, H Liu, S Ye, J Yeh, P.J.-F CIVIL AND ENVIRONMENTAL ENGINEERING Estuaries Flood control Floods Hydraulic structures Lakes Water levels Water resources Control infrastructures Developed regions Effective solution Flood mitigation Numerical model simulations Tidal conditions Yangtze river delta Yangtze River estuary Rivers control system drainage network flood control flood frequency hazard management infrastructure modeling potential flow return period risk assessment river basin river flow simulation China Taihu Basin Taipu River Yangtze Delta 10.5194/hess-21-5339-2017 Hydrology and Earth System Sciences 21 10 5339-5355 2020-11-17T04:37:26Z 2020-11-17T04:37:26Z 2017 Article Zhang, H, Liu, S, Ye, J, Yeh, P.J.-F (2017). Model simulations of potential contribution of the proposed Huangpu Gate to flood control in the Lake Taihu basin of China. Hydrology and Earth System Sciences 21 (10) : 5339-5355. ScholarBank@NUS Repository. https://doi.org/10.5194/hess-21-5339-2017 1027-5606 https://scholarbank.nus.edu.sg/handle/10635/183495 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Copernicus Publications Unpaywall 20201031
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic Estuaries
Flood control
Floods
Hydraulic structures
Lakes
Water levels
Water resources
Control infrastructures
Developed regions
Effective solution
Flood mitigation
Numerical model simulations
Tidal conditions
Yangtze river delta
Yangtze River estuary
Rivers
control system
drainage network
flood control
flood frequency
hazard management
infrastructure
modeling
potential flow
return period
risk assessment
river basin
river flow
simulation
China
Taihu Basin
Taipu River
Yangtze Delta
spellingShingle Estuaries
Flood control
Floods
Hydraulic structures
Lakes
Water levels
Water resources
Control infrastructures
Developed regions
Effective solution
Flood mitigation
Numerical model simulations
Tidal conditions
Yangtze river delta
Yangtze River estuary
Rivers
control system
drainage network
flood control
flood frequency
hazard management
infrastructure
modeling
potential flow
return period
risk assessment
river basin
river flow
simulation
China
Taihu Basin
Taipu River
Yangtze Delta
Zhang, H
Liu, S
Ye, J
Yeh, P.J.-F
Model simulations of potential contribution of the proposed Huangpu Gate to flood control in the Lake Taihu basin of China
description 10.5194/hess-21-5339-2017
author2 CIVIL AND ENVIRONMENTAL ENGINEERING
author_facet CIVIL AND ENVIRONMENTAL ENGINEERING
Zhang, H
Liu, S
Ye, J
Yeh, P.J.-F
format Article
author Zhang, H
Liu, S
Ye, J
Yeh, P.J.-F
author_sort Zhang, H
title Model simulations of potential contribution of the proposed Huangpu Gate to flood control in the Lake Taihu basin of China
title_short Model simulations of potential contribution of the proposed Huangpu Gate to flood control in the Lake Taihu basin of China
title_full Model simulations of potential contribution of the proposed Huangpu Gate to flood control in the Lake Taihu basin of China
title_fullStr Model simulations of potential contribution of the proposed Huangpu Gate to flood control in the Lake Taihu basin of China
title_full_unstemmed Model simulations of potential contribution of the proposed Huangpu Gate to flood control in the Lake Taihu basin of China
title_sort model simulations of potential contribution of the proposed huangpu gate to flood control in the lake taihu basin of china
publisher Copernicus Publications
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/183495
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