Multi-objective optimal allocation of water resources in Yangchangwan mining area based on ecological priority

With the development of mining area economy and the adjustment of industrial structure from traditional heavy industry to hightech industry, the supply and demand structure of water resources has changed significantly, and the ecological damage in mining area make the ecological water consumption in...

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Main Authors: Zhang Zhen, Zhang Panyue, Zhang Guangming
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/36/e3sconf_aepee2021_01004.pdf
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spelling doaj-e13fa4931007496399954fbd12e8a9152021-05-28T14:41:16ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012600100410.1051/e3sconf/202126001004e3sconf_aepee2021_01004Multi-objective optimal allocation of water resources in Yangchangwan mining area based on ecological priorityZhang Zhen0Zhang Panyue1Zhang Guangming2Renmin University of ChinaBeijing Forestry UniversityRenmin University of ChinaWith the development of mining area economy and the adjustment of industrial structure from traditional heavy industry to hightech industry, the supply and demand structure of water resources has changed significantly, and the ecological damage in mining area make the ecological water consumption increase significantly. This paper summarizes the water supply of surface water, groundwater, mine drainage and reclaimed water, as well as all kinds of water demand. Based on the principle of ecological priority, a multi-objective optimal allocation model for the coordinated development of ecological environment, social economy and water resources in Yangchangwan mining area was constructed. The results show that the multi-objective optimal allocation model well coordinated the social and economic development goals and resource saving goals, and the optimization scheme ensured that the water demand satisfaction of each water sector reached 100%. On the one hand, it can provide technical support for the mining area to realize the green water and green mountains pattern as soon as possible, on the other hand, it can also provide reference for water resources management in other similar areas.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/36/e3sconf_aepee2021_01004.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Zhang Zhen
Zhang Panyue
Zhang Guangming
spellingShingle Zhang Zhen
Zhang Panyue
Zhang Guangming
Multi-objective optimal allocation of water resources in Yangchangwan mining area based on ecological priority
E3S Web of Conferences
author_facet Zhang Zhen
Zhang Panyue
Zhang Guangming
author_sort Zhang Zhen
title Multi-objective optimal allocation of water resources in Yangchangwan mining area based on ecological priority
title_short Multi-objective optimal allocation of water resources in Yangchangwan mining area based on ecological priority
title_full Multi-objective optimal allocation of water resources in Yangchangwan mining area based on ecological priority
title_fullStr Multi-objective optimal allocation of water resources in Yangchangwan mining area based on ecological priority
title_full_unstemmed Multi-objective optimal allocation of water resources in Yangchangwan mining area based on ecological priority
title_sort multi-objective optimal allocation of water resources in yangchangwan mining area based on ecological priority
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description With the development of mining area economy and the adjustment of industrial structure from traditional heavy industry to hightech industry, the supply and demand structure of water resources has changed significantly, and the ecological damage in mining area make the ecological water consumption increase significantly. This paper summarizes the water supply of surface water, groundwater, mine drainage and reclaimed water, as well as all kinds of water demand. Based on the principle of ecological priority, a multi-objective optimal allocation model for the coordinated development of ecological environment, social economy and water resources in Yangchangwan mining area was constructed. The results show that the multi-objective optimal allocation model well coordinated the social and economic development goals and resource saving goals, and the optimization scheme ensured that the water demand satisfaction of each water sector reached 100%. On the one hand, it can provide technical support for the mining area to realize the green water and green mountains pattern as soon as possible, on the other hand, it can also provide reference for water resources management in other similar areas.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/36/e3sconf_aepee2021_01004.pdf
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AT zhangpanyue multiobjectiveoptimalallocationofwaterresourcesinyangchangwanminingareabasedonecologicalpriority
AT zhangguangming multiobjectiveoptimalallocationofwaterresourcesinyangchangwanminingareabasedonecologicalpriority
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