This paper analyzes the complex relationship among flood control, power generation and ecological maintenance for the four cascade reservoirs located on the lower reaches of the Jinsha River, China. A weighted flood control index is incorporated and a constraining method consisting of the combination of a constrained corridor and a penalty function is proposed. A comprehensive utilization model is established in this paper based on the objectives of flood prevention, power generation, and ecological maintenance of the downstream cascade reservoir group of the Jinsha River during flood season. In addition, based on the coalescent selection of reference points and vector angles, an optimized non-dominated sorting genetic algorithm (VA-NSGA-II...
With the reservoir construction gradually completed, joint operation of reservoir groups is an impor...
The construction of multifunction reservoirs is important for flood control, agriculture irrigation,...
AbstractAccording to the contradiction of power generation, flood control and river ecosystem during...
To satisfy the increasing multi-objective scheduling requirements in flood season of the Xiluodu-Xia...
The purpose of a flood control reservoir operation is to prevent flood damage downstream of the rese...
This paper took the Foziling Reservoir in the Pi River Basin as an example, used an improved genetic...
AbstractThis paper, based on the analysis of the nature and characteristics of ecological operation,...
Balancing the multiple purposes of reservoir operation, including the social, economic, and ecologic...
Affected by global climate change, the frequency of extreme weather events increases in China, and t...
The conventional reservoir operation strategy considering hydropower production ignores the ecology ...
[[abstract]]Real-time flood control of a multi-purpose reservoir should consider decreasing the floo...
At flood season, reservoir can guarantee the power generation and other benefit only under the premi...
In order to solve the problem that the existing optimal operation model of reservoirs cannot coordin...
In this research, a flood control operating strategy is developed based on a simulation-optimization...
In this paper we propose a preference-based multi-objective optimization model for reservoir flood c...
With the reservoir construction gradually completed, joint operation of reservoir groups is an impor...
The construction of multifunction reservoirs is important for flood control, agriculture irrigation,...
AbstractAccording to the contradiction of power generation, flood control and river ecosystem during...
To satisfy the increasing multi-objective scheduling requirements in flood season of the Xiluodu-Xia...
The purpose of a flood control reservoir operation is to prevent flood damage downstream of the rese...
This paper took the Foziling Reservoir in the Pi River Basin as an example, used an improved genetic...
AbstractThis paper, based on the analysis of the nature and characteristics of ecological operation,...
Balancing the multiple purposes of reservoir operation, including the social, economic, and ecologic...
Affected by global climate change, the frequency of extreme weather events increases in China, and t...
The conventional reservoir operation strategy considering hydropower production ignores the ecology ...
[[abstract]]Real-time flood control of a multi-purpose reservoir should consider decreasing the floo...
At flood season, reservoir can guarantee the power generation and other benefit only under the premi...
In order to solve the problem that the existing optimal operation model of reservoirs cannot coordin...
In this research, a flood control operating strategy is developed based on a simulation-optimization...
In this paper we propose a preference-based multi-objective optimization model for reservoir flood c...
With the reservoir construction gradually completed, joint operation of reservoir groups is an impor...
The construction of multifunction reservoirs is important for flood control, agriculture irrigation,...
AbstractAccording to the contradiction of power generation, flood control and river ecosystem during...