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Evaluation method for regional water cycle health based on nature-society water cycle theory

机译:基于自然社会水循环理论的区域水循环健康评价方法

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Regional water cycles increasingly reflect the dual influences of natural and social processes, and are affected by global climate change and expanding human activities. Understanding how to maintain a healthy state of the water cycle has become an important proposition for sustainable development of human society. In this paper, natural-social attributes of the water cycle are synthesized and 19 evaluation indices are selected from four dimensions, i.e., water-based ecosystem integrity, water quality, water resource abundance and water resource use. A hierarchical water-cycle health evaluation system is established. An analytic hierarchy process is used to set the weight of the criteria layer and index layer, and the health threshold for each index is defined. Finally, a water-cycle health composite-index assessment model and fuzzy recognition model are constructed based on the comprehensive index method and fuzzy mathematics theory. The model is used to evaluate the state of health of the water cycle in Beijing during 2010-2014 and in the planning year (late 2014), considering the transfer of 1 billion m(3) of water by the South-to-North Water Diversion Project (SNWDP). The results show health scores for Beijing of 2.87, 3.10, 3.38, 3.11 and 3.02 during 2010-2014. The results of fuzzy recognition show that the sub healthy grade accounted for 54%, 49%, 61% and 49% of the total score, and all years had a sub -healthy state. Results of the criteria layer analysis show that water ecosystem function, water quality and water use were all at the sub -healthy level and that water abundance was at the lowest, or sick, level. With the water transfer from the SNWDP, the health score of the water cycle in Beijing reached 4.04. The healthy grade accounted for 60% of the total score, and the water cycle system was generally in a healthy state. Beijing's water cycle health level is expected to further improve with increasing water diversion from the SNWDP and industrial restructuring. (C) 2017 Elsevier B.V. All rights reserved.
机译:区域水循环越来越多地反映自然和社会流程的双重影响,并受到全球气候变化和扩大人类活动的影响。了解如何保持水循环健康状态已成为人类社会可持续发展的重要主张。在本文中,合成了水循环的自然社会属性,并选择了19个评估指标,其中包括四维,即水性生态系统完整性,水质,水资源丰富和水资源使用。建立了分层水循环健康评估系统。分析层次处理用于设置标准层和索引层的权重,定义每个索引的运行状况阈值。最后,基于综合指数法和模糊数学理论构建了水循环健康复合指数评估模型和模糊识别模型。该模型用于评估北京2010 - 2014年北京水循环的健康状况,并在规划年度(2014年底),考虑到南北水转让10亿米(3)米水转移项目(SNWDP)。结果显示2010 - 2014年北京2.87,3.10,3.38,3.11和3.02的健康成绩。模糊识别结果表明,副健康成绩占总成绩的54%,49%,61%和49%,而且全年都有一个副健康状态。标准层分析的结果表明,水生态系统功能,水质和用水均在副健康水平,水丰度处于最低或生病的水平。随着SNWDP的水分转移,北京水循环的健康评分达到4.04。健康成绩占总分的60%,水循环系统通常处于健康状态。随着SNWDP和产业结构调整的增加,北京水循环健康水平预计进一步改善了进一步改善。 (c)2017年Elsevier B.V.保留所有权利。

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