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An eco-environmental water demand based model for optimising water resources using hybrid genetic simulated annealing algorithms. Part II. Model application and results
Authors:Xiaoling Wang  Yuefeng Sun  Lingguang Song  Chuanshu Mei
Institution:1. School of Environment Science and Engineering, Tianjin University, Tianjin 300072, China;2. School of Civil Engineering, Tianjin University, Tianjin 300072, China;3. Dept. of Engineering Technology, University of Houston, Texas 77204, USA;4. HaiHe River Water Conservancy Commission, Ministry of Water Resources, Tianjin 300170, China
Abstract:The present optimisation model described in Part I of this work is applied to optimise water resources in the Haihe river basin, an important basin in north China that covers 31.82 million km2. Results show that this optimisation model with the HGSAA solution is feasible and effective in the long-term optimisation of water resource use. It is shown that the combined forecasting method can improve the forecast precision. The results obtained indicate that the mean relative errors of BP and polynomial models are 2.3% and 4.9%, respectively, while that of the combined forecasting method is 1.93% in a case study on the Tumahe River for 2010. The combined forecasting method performs better because it incorporates various forecasting methods. The optimisation results show that both domestic and eco-environmental water demands can satisfy the requirements of the forecasting procedure, and the harmonious indices all exceeded 0.7. The Luanhe River is the most water-scarce sub-basin in the Haihe river basin.
Keywords:Water resource  Optimisation  Hybrid method  Water demand forecasting  Haihe river basin  China
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