Optimal Allocation of Water Resources Based on GWAS Model in Handan,China
In recent years,the inflow of upstream rivers in Handan City has decreased,and the total amount of groundwater exploitation has become more limited,which fails to meet the rising water demand of different industries.In addition,due to the replacement of water supply sources for some industries after...
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Editorial Office of Pearl River
2024-01-01
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Online Access: | http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2024.01.006 |
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author | LIU Guanghui SUN Jianwei LUO Yun ZHAO Xian REN Shuai LIU Ruiting WANG Jixuan |
author_facet | LIU Guanghui SUN Jianwei LUO Yun ZHAO Xian REN Shuai LIU Ruiting WANG Jixuan |
author_sort | LIU Guanghui |
collection | DOAJ |
description | In recent years,the inflow of upstream rivers in Handan City has decreased,and the total amount of groundwater exploitation has become more limited,which fails to meet the rising water demand of different industries.In addition,due to the replacement of water supply sources for some industries after the construction of the South-to-North Water Diversion Project,the Yellow River Diversion Project,and the Yinwei River Water Diversion Project,the shortage and the contradiction between supply and demand of water resources in Handan City are becoming acute and complex.By analyzing the characteristics of water resources and the distribution characteristics of water conservancy projects in Handan City,the water supply and demand of each district and county in Handan City are predicted,and a multi-source,multi-user,and multi-objective optimal allocation model of water resources in Handan City is constructed based on GWAS.The results show that the total water demand in Handan City with a guarantee rate of P=50% in 2025 is 3 013.01×10<sup>6</sup> m<sup>3</sup>;the total water allocation is 2 473.97×10<sup>6</sup> m<sup>3</sup>,and the water shortage rate is 17.89%.The total water demand with a guarantee rate of P=75% is 3 434.90×10<sup>6</sup> m<sup>3</sup>;the total water distribution is 2 498.22×10<sup>6</sup> m<sup>3</sup>,and the water shortage rate is 27.27%.The water shortage is mainly concentrated in the primary industry.The allocation results are in line with the actual water consumption situation in Handan City,and the research results can provide a technical reference for water resources management in Handan City. |
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institution | Kabale University |
issn | 1001-9235 |
language | zho |
publishDate | 2024-01-01 |
publisher | Editorial Office of Pearl River |
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spelling | doaj-art-4d3cff09734d41abbf687aa3bb40360d2025-01-15T03:00:32ZzhoEditorial Office of Pearl RiverRenmin Zhujiang1001-92352024-01-014548614472Optimal Allocation of Water Resources Based on GWAS Model in Handan,ChinaLIU GuanghuiSUN JianweiLUO YunZHAO XianREN ShuaiLIU RuitingWANG JixuanIn recent years,the inflow of upstream rivers in Handan City has decreased,and the total amount of groundwater exploitation has become more limited,which fails to meet the rising water demand of different industries.In addition,due to the replacement of water supply sources for some industries after the construction of the South-to-North Water Diversion Project,the Yellow River Diversion Project,and the Yinwei River Water Diversion Project,the shortage and the contradiction between supply and demand of water resources in Handan City are becoming acute and complex.By analyzing the characteristics of water resources and the distribution characteristics of water conservancy projects in Handan City,the water supply and demand of each district and county in Handan City are predicted,and a multi-source,multi-user,and multi-objective optimal allocation model of water resources in Handan City is constructed based on GWAS.The results show that the total water demand in Handan City with a guarantee rate of P=50% in 2025 is 3 013.01×10<sup>6</sup> m<sup>3</sup>;the total water allocation is 2 473.97×10<sup>6</sup> m<sup>3</sup>,and the water shortage rate is 17.89%.The total water demand with a guarantee rate of P=75% is 3 434.90×10<sup>6</sup> m<sup>3</sup>;the total water distribution is 2 498.22×10<sup>6</sup> m<sup>3</sup>,and the water shortage rate is 27.27%.The water shortage is mainly concentrated in the primary industry.The allocation results are in line with the actual water consumption situation in Handan City,and the research results can provide a technical reference for water resources management in Handan City.http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2024.01.006water resourcesmulti-objectiveoptimal allocationGWAS modelHandan City |
spellingShingle | LIU Guanghui SUN Jianwei LUO Yun ZHAO Xian REN Shuai LIU Ruiting WANG Jixuan Optimal Allocation of Water Resources Based on GWAS Model in Handan,China Renmin Zhujiang water resources multi-objective optimal allocation GWAS model Handan City |
title | Optimal Allocation of Water Resources Based on GWAS Model in Handan,China |
title_full | Optimal Allocation of Water Resources Based on GWAS Model in Handan,China |
title_fullStr | Optimal Allocation of Water Resources Based on GWAS Model in Handan,China |
title_full_unstemmed | Optimal Allocation of Water Resources Based on GWAS Model in Handan,China |
title_short | Optimal Allocation of Water Resources Based on GWAS Model in Handan,China |
title_sort | optimal allocation of water resources based on gwas model in handan china |
topic | water resources multi-objective optimal allocation GWAS model Handan City |
url | http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2024.01.006 |
work_keys_str_mv | AT liuguanghui optimalallocationofwaterresourcesbasedongwasmodelinhandanchina AT sunjianwei optimalallocationofwaterresourcesbasedongwasmodelinhandanchina AT luoyun optimalallocationofwaterresourcesbasedongwasmodelinhandanchina AT zhaoxian optimalallocationofwaterresourcesbasedongwasmodelinhandanchina AT renshuai optimalallocationofwaterresourcesbasedongwasmodelinhandanchina AT liuruiting optimalallocationofwaterresourcesbasedongwasmodelinhandanchina AT wangjixuan optimalallocationofwaterresourcesbasedongwasmodelinhandanchina |