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Water Resources Sustainability Indicator: Application of the Watershed Characteristics Approach

机译:水资源可持续性指标:流域特征法的应用

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摘要

The quantification of the renewable flux (i.e. sustainable limit) of the hydrologic system is the prerequisite for transitioning from unsustainable to sustainable water resources management. The application of the Watershed Characteristics Approach to estimate the renewable flux of the hydrologic system was demonstrated using Minnesota's (USA) Twin Cities Metropolitan Area (TCMA). The methodology quantified the relationships between landscape properties and water balance characteristics, resulting in the development of functioning hierarchical hydrogeological units with corresponding recharge rates. This renewable flux is a key quantitative characteristic for the assessment of a sustainability indicator. The key indicator of sustainable water use is the ratio of the renewable capacity of the hydrologic system to the water use by humans and the environment. By incorporating water use estimates for the TCMA relative to the calculated recharge rates, sustainability indicators for groundwater and total flux were calculated for the metropolitan area. As far back as the 1890s, declines in TCMA groundwater levels have been observed, which correspond to the unsustainable groundwater extraction estimates identified in the results of this study. The non-stationary characteristics of urban watersheds influenced by ongoing land use/land cover changes as illustrated in this paper, emphasizes the need for conservative hydrologic planning to achieve sustainable water management. This approach can also be applied to other metropolitan areas as a hydrologic tool for decision-makers to design sustainable water policy and prevent the over-extraction of the water flowing through the hydrologic system.
机译:水文系统可再生通量(即可持续极限)的量化是从不可持续的水资源管理过渡到可持续的水资源管理的前提。使用明尼苏达州(美国)的双城都会区(TCMA)论证了流域特征法在估算水文系统可再生通量中的应用。该方法量化了景观特性与水平衡特征之间的关系,从而导致了具有相应补给率的功能分级水文地质单位的发展。这种可再生通量是评估可持续性指标的关键定量特征。可持续用水的关键指标是水文系统可再生能力与人类和环境用水的比率。通过将TCMA的用水估算与计算的补给率相结合,可以计算出大城市地区的地下水可持续性指标和总通量。早在1890年代,就已经观测到TCMA地下水位下降,这与本研究结果中确定的不可持续的地下水开采估算值相对应。如本文所述,受持续土地利用/土地覆被变化影响的城市流域的非平稳特征,强调需要进行保守的水文规划以实现可持续的水管理。这种方法也可以作为决策者设计可持续水政策并防止流过水文系统的水被过度提取的水文工具而应用于其他大都市地区。

著录项

  • 来源
    《Water Resources Management 》 |2013年第5期| 1221-1234| 共14页
  • 作者单位

    Department of Bioproducts and Biosystems Engineering, University of Minnesota, Biosystems and Agricultural Engineering Building, 1390 Eckles Avenue, St. Paul, MN 55108, USA;

    Department of Bioproducts and Biosystems Engineering, University of Minnesota, Biosystems and Agricultural Engineering Building, 1390 Eckles Avenue, St. Paul, MN 55108, USA;

    Department of Bioproducts and Biosystems Engineering, University of Minnesota, Biosystems and Agricultural Engineering Building, 1390 Eckles Avenue, St. Paul, MN 55108, USA;

    Water Resources Institute and Department of Agricultural and Biosystems Engineering, South Dakota State University, Agricultural Engineering BOX 2120, Brookings, SD 57007, USA;

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

    sustainability indicator; water use; renewable flux; hydrologic response units; sustainable water management;

    机译:可持续性指标;用水;可再生流量水文响应单位;可持续水管理;

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