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Total Urban Water Cycle Models in Semiarid Environments-Quantitative Scenario Analysis at the Area of San Luis Potosi, Mexico

机译:半干旱环境中的总城市水循环模型-墨西哥圣路易斯波托西地区的定量情景分析

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摘要

Systems view thinking and holistic urban water cycle concepts are increasingly called upon for integrated analysis of urban water systems to mitigate water stress in large urban agglomerations. However, integrated analysis is frequently not applied due to the inherent complexity, limitations in data availability and especially the lack of guidelines and suitable software tools. The paper presents the application of the total urban water balance model UVQ to the City of San Luis Potosi (1.2 Mio inhabitants) under the arid conditions of Northern Mexico. UVQ is a lumped parameter model which describes water and contaminant flows from source to sink in urban areas and includes all water types such as rainwater, imported water, surface runoff, wastewater and groundwater. The results were especially useful for spatially explicit groundwater recharge calculation in urban areas. A range of urban water scenarios, including different supply strategies and the effect of externalities such as demand change, were simulated and compared to a calibrated baseline scenario. The analysis demonstrated that shallow urban groundwater resources can substantially mitigate problems of water scarcity and overexploitation of deep aquifers if appropriate water quality protection or fit-for-use paradigms are put into place. The modelling exercise delivers relevant information for the decision making process and identifies the most relevant shortcomings in current monitoring systems. This represents a key step on the path to water sensitive and sustainable urban development, including the urban aquifers which have been neglected in the management policy of most cities of the Mexican arid zone.
机译:越来越多地需要系统观点思维和整体城市水循环概念来对城市水系统进行综合分析,以减轻大型城市群的水压力。但是,由于固有的复杂性,数据可用性的限制,尤其是缺乏指导原则和合适的软件工具,通常不应用集成分析。本文介绍了在墨西哥北部干旱条件下,城市总水量平衡模型UVQ在圣路易斯波托西市(1.2 Mio居民)的应用。 UVQ是一个集总参数模型,它描述了城市中从源头到汇的水和污染物流,并包括所有水类型,例如雨水,进口水,地表径流,废水和地下水。这些结果对于城市地区的空间明确的地下水补给量计算特别有用。模拟了一系列城市用水情景,包括不同的供应策略以及诸如需求变化等外部因素的影响,并将其与校准基准情景进行了比较。分析表明,如果采取适当的水质保护或适合使用的范式,城市浅层地下水资源可以大大缓解水资源短缺和深层含水层过度开采的问题。建模练习为决策过程提供了相关信息,并确定了当前监视系统中最相关的缺点。这是迈向水敏感和可持续城市发展道路上的关键一步,其中包括墨西哥干旱区大多数城市的管理政策中忽略的城市含水层。

著录项

  • 来源
    《Water Resources Management》 |2011年第1期|p.239-263|共25页
  • 作者单位

    Posgrado en Ciencias de la Tierra, Instituto de Geologia, Universidad National Autdnoma de Mexico, Ciudad Universitaria, Coyoacan, 04510, Mexico City, Mexico;

    Departamento de Geologia Regional, Instituto de Geologfa, Universidad Nacional Autdnoma de Mexico, Ciudad Universitaria, Coyoacan, 04510, Mexico City, Mexico;

    Department of Applied Geology (AGK), University of Karlsruhe,Kaiserstr.12,76128, Karlsruhe, Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    integrated management; urban aquifers; urban recharge; water scarcity; simulation model;

    机译:综合管理;城市含水层;城市补给;水资源短缺;模拟模型;
  • 入库时间 2022-08-18 01:10:20

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