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Influence of human-water interactions on the water resources and environment in the Yangtze River Basin from the perspective of multiplex networks

机译:从多路复用网络的角度对长江流域水资源和环境的影响

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Coupled human and natural system research is an urgent issue in the Anthropocene. However, this has not yet been conducted from the perspective of multiplex networks, which are a powerful tool to elucidate the interactions in human-natural systems. This paper establishes a framework of human-water multiplex networks (HWMNs) to explain the combined effects of human-water interactions in the Yangtze River basin. The spatial linkages and the status of each province in the Yangtze River basin can be characterized through the index of network flow and topology. Research demonstrated that the highest import flow of the virtual water environment capacity flow in the Yangtze River Basin is to Jiangsu Province, at 16.2 thousand t. The highest export flow in the Yangtze River Basin is from Shanghai city, at 33.2 thousand t. The control power of Shanghai city over Sichuan Province accounts for 56.59% of the water resources, which is the highest value and can be recognized as one type of telecoupling of water resources. The provinces in the delta of the Yangtze River basin, including Shanghai city, Jiangsu Province and Zhejiang Province, benefit the most from economic trade. The community structure of the virtual water environment capacity flow is highly consistent with the geographical distribution of the Yangtze River basin. Comprehensive research methods combined with network flow analysis and network topology analysis provide more general results. The microenvironmental effect of indirect pollutant discharge is uncovered through HWMNs. This research can provide a more connected view of integrated water management. (C) 2020 Elsevier Ltd. All rights reserved.
机译:耦合人类和自然系统研究是人类人物的紧急问题。然而,这尚未从多路复用网络的角度进行,这是一种强大的工具来阐明人类自然系统中的交互。本文建立了人 - 水多路复用网络(HWMNS)的框架,以解释长江盆地人水相互作用的综合影响。通过网络流量和拓扑指数来表征长江盆地的空间联系和每个省的地位。研究表明,长江盆地虚拟水环境能力流动的最高进口流量是江苏省,均为16.2万吨。长江盆地出口最高流动来自上海市,33.2万吨。上海市四川省上海市控制权占水资源的56.59%,这是最高价值,可被认为是水资源的一种类型的电信耦合。长江流域三角洲省,包括上海市,江苏省和浙江省,受益于经济贸易。虚拟水环境容量流动的社区结构与长江流域的地理分布高度一致。综合研究方法结合网络流分析和网络拓扑分析提供了更一般的结果。间接污染物排放的微环境效应通过HWMNS露出。该研究可以提供更联系的综合水管理视图。 (c)2020 elestvier有限公司保留所有权利。

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