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A dynamic model for exploring water-resource management scenarios in an inland arid area: Shanshan County,Northwestern China

机译:探索内陆干旱区水资源管理情景的动态模型:中国西北Shan山县

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摘要

Water scarcity is a challenge in many arid and semi-arid regions;this may lead to a series of environmental problems and could be stressed even further by the effects from climate change.This study focused on the water resource management in Shanshan County,an inland arid region located in northwestern China with a long history of groundwater overexploitation.A model of the supply and demand system in the study area from 2006 to 2030,including effects from global climate change,was developed using a system dynamics (SD) modeling tool.This SD model was used to 1) explore the best water-resource management options by testing system responses under various scenarios and 2) identify the principal factors affecting the responses,aiming for a balance of the groundwater system and sustainable socio-eeonomic development.Three causes were identified as primarily responsible for water issues in Shanshan:low water-use efficiency,low water reuse,and increase in industrial water demand.To address these causes,a combined scenario was designed and simulated,which was able to keep the water deficiency under 5% by 2030.The model provided some insights into the dynamic interrelations that generate system behavior and the key factors in the system that govern water demand and supply.The model as well as the study results may be useful in water resources management in Shanshan and may be applied,with appropriate modifications,to other regions facing similar water management challenges.
机译:缺水在许多干旱和半干旱地区都是一个挑战;这可能会导致一系列环境问题,而且气候变化的影响甚至可能进一步加剧这一问题。本研究的重点是内陆杉杉县的水资源管理西北干旱地区,地下水超采历史悠久。2006年至2030年研究区域的供需系统模型,包括系统动力学(SD)建模工具,包括全球气候变化的影响。该SD模型用于:1)通过在各种情况下测试系统响应来探索最佳的水资源管理方案; 2)确定影响响应的主要因素,以实现地下水系统的平衡和可持续的社会经济发展.3确定了造成杉杉市水资源问题的主要原因:用水效率低,中水回用率低以及工业用水需求增加。结合各种原因进行了设计和模拟,到2030年能够将缺水率控制在5%以下。该模型对产生系统行为的动态相互关系以及控制供水和供水的系统关键因素提供了一些见解。该模型和研究结果可能对Shan善县的水资源管理很有用,并且可以通过适当修改将其应用于面临相似水资源管理挑战的其他地区。

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  • 来源
    《山地科学学报(英文版)》 |2017年第6期|1039-1057|共19页
  • 作者单位

    Department of Civil and Environmental Engineering and Construction, University of Nevada, Las Vegas, 4505 S Maryland Pkwy, Las Vegas, NV, 89154, U.S.A.;

    Department of Civil and Environmental Engineering and Construction, University of Nevada, Las Vegas, 4505 S Maryland Pkwy, Las Vegas, NV, 89154, U.S.A.;

    Department of Civil and Environmental Engineering, Southern Illinois University, 1230 Lincoln Drive, Carbondale, IL, 62901, U.S.A.;

    Department of Water Resources, China Institute of Water Resources and Hydropower Research, A-1 Fuxing Road, Haidian District, Beijing 100038, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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