Adaptive Catchment Management and Reservoir Operation

River catchments and reservoirs play a central role in water security, food supply, flood risk management, hydropower generation, and ecosystem services; however, they are now under increasing pressure from population growth, economic activities, and changing climate means and extremes in many parts...

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Bibliographic Details
Main Author: Ni, Guangheng (auth)
Other Authors: Zhang, Chi (auth), Fu, Guangtao (auth)
Format: Electronic Book Chapter
Language:English
Published: MDPI - Multidisciplinary Digital Publishing Institute 2019
Subjects:
CO2
dam
NPP
Online Access:DOAB: download the publication
DOAB: description of the publication
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100 1 |a Ni, Guangheng  |4 auth 
700 1 |a Zhang, Chi  |4 auth 
700 1 |a Fu, Guangtao  |4 auth 
245 1 0 |a Adaptive Catchment Management and Reservoir Operation 
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520 |a River catchments and reservoirs play a central role in water security, food supply, flood risk management, hydropower generation, and ecosystem services; however, they are now under increasing pressure from population growth, economic activities, and changing climate means and extremes in many parts of the world. Adaptive management of river catchments and reservoirs requires an in-depth understanding of the impacts of future uncertainties and thus the development of robust, sustainable solutions to meet the needs of various stakeholders and the environment. To tackle the huge challenges in moving towards adaptive catchment management, this book presents the latest developments in cutting-edge knowledge, novel methodologies, innovative management strategies, and case studies, focusing on the following themes: reservoir dynamics and impact analysis of dam construction, optimal reservoir operation, climate change impacts on hydrological processes and water management, and integrated catchment management. 
540 |a Creative Commons  |f https://creativecommons.org/licenses/by-nc-nd/4.0/  |2 cc  |4 https://creativecommons.org/licenses/by-nc-nd/4.0/ 
546 |a English 
650 7 |a History of engineering & technology  |2 bicssc 
653 |a downscaling 
653 |a suspended sediment concentration 
653 |a modeling 
653 |a South-to-North Water Transfer Project 
653 |a sensitivity analysis 
653 |a simulation 
653 |a protection zone 
653 |a reservoirs 
653 |a mussel 
653 |a sediment regime 
653 |a resilience and robustness 
653 |a optimal flood control operation 
653 |a multi-objective model 
653 |a optimization 
653 |a scenario analysis 
653 |a floodplain vertical shape index 
653 |a aftereffect 
653 |a lentic habitats 
653 |a energy 
653 |a stochastic linear programming 
653 |a ?-constrained method 
653 |a Tekeze basin 
653 |a runoff 
653 |a cascade reservoirs 
653 |a costs and benefits 
653 |a sediment flushing efficiency 
653 |a vulnerability 
653 |a Heihe River Basin 
653 |a TB-MPC 
653 |a heating impact 
653 |a flushing efficiency 
653 |a system dynamics 
653 |a Indian Monsoon 
653 |a shaft spillway pipe 
653 |a integrated supply system modeling 
653 |a seasonal rainfall 
653 |a sediment management 
653 |a design and operation of the multipurpose reservoir 
653 |a Kappa distribution 
653 |a CO2 
653 |a reliability 
653 |a uncertainty 
653 |a Yangtze River 
653 |a Markov chain 
653 |a the Yangtze River 
653 |a Environmental Fluid Dynamics Code (EFDC) model 
653 |a land and water resources 
653 |a integrated surface water-groundwater model 
653 |a Heilongjiang 
653 |a Kurobe River 
653 |a flow regime 
653 |a numerical simulation 
653 |a long distance water diversion 
653 |a tropical reservoir 
653 |a multi-stage stochastic optimization 
653 |a direct policy search 
653 |a inverted siphon 
653 |a environmental flow 
653 |a parameterization 
653 |a accompanying progressive optimality algorithm 
653 |a integrated management 
653 |a hydropower stations 
653 |a differential evolution algorithm 
653 |a sediment flushing of empty storage 
653 |a back propagation neural network 
653 |a NSGA-II 
653 |a two-dimensional bed evolution model 
653 |a real-time control 
653 |a upper Chao Phraya River Basin 
653 |a CMIP5 
653 |a genetic algorithm 
653 |a dam 
653 |a irrigation 
653 |a CMIP3 
653 |a water energy 
653 |a discharge 
653 |a the Jingjiang River Reach 
653 |a water environmental capacity (WEC) 
653 |a climate change 
653 |a shortage ratio: Vulnerability 
653 |a optimal scheduling 
653 |a hydrology 
653 |a Siemianówka 
653 |a ungauged basin 
653 |a game theory 
653 |a power function 
653 |a SWAT 
653 |a Dokan Dam 
653 |a natural flow regime 
653 |a bitterling 
653 |a reservoir flushing 
653 |a vertical profiles of concentration 
653 |a ratio curve 
653 |a partial gauged basin 
653 |a sediment load 
653 |a adaptive management 
653 |a water deficit 
653 |a the upper Yangtze River Basin 
653 |a Miyun Reservoir 
653 |a parameter relation 
653 |a stochastic dynamic programming 
653 |a NPP 
653 |a runoff response 
653 |a Narew River 
653 |a coupling model 
653 |a Langcang-Mekong River 
653 |a drinking water resources 
653 |a the Huangshi Reservoir 
653 |a reverse regulation 
653 |a nutrient uptake 
653 |a water resources allocation 
653 |a multi-agent of river basin 
653 |a HEC-ResPRM 
653 |a dynamic programming with progressive optimality algorithm (DP-POA) 
653 |a reservoir operation 
653 |a sea surface temperatures 
653 |a reservoir simulation model 
653 |a SWAT model 
653 |a El Niño/Southern Oscillation 
653 |a CORDEX-Africa 
653 |a hedging policy 
653 |a multi-objective optimization NSGA II 
653 |a reservoir 
653 |a general regression neural network 
653 |a flood control 
653 |a Jingjiang River Reach 
653 |a catchment modelling 
856 4 0 |a www.oapen.org  |u https://mdpi.com/books/pdfview/book/1218  |7 0  |z DOAB: download the publication 
856 4 0 |a www.oapen.org  |u https://directory.doabooks.org/handle/20.500.12854/40111  |7 0  |z DOAB: description of the publication