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An academic analysis with recommendations for water management and planning at the basin scale: A review of water planning in the Segura River Basin

机译:对流域规模的水管理和规划提出建议的学术分析:塞古拉河流域的水规划回顾

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摘要

Water resources management is particularly challenging in water-scarce basins, where low water availability is combined with a potential water demand exceeding the supply capacity of the natural system. This is the case of the Segura River Basin in south-eastern Spain. This paper aims at analysing the usefulness of incorporating new hydrological data and perspectives to improve the understanding of water availability and management and help promote more integrated water planning in the Segura Basin. In this basin, agriculture amounts to approximately 1366 hm(3)/year and accounts for 80% of the total blue water use. The forest and agriculture use of soil water amounts to 3065 and 1962 hm(3)/year, respectively. The unaccounted virtual water trade is also relevant and helps in mitigating water scarcity in the basin. The basin is a net virtual water-exporting region, with an average export of 1598 hm(3)/year, mainly in the form of fruits and vegetables, and imports approximately 1253 hm(3)/year, mainly related to feed for pig farms. Virtual water imports are four times larger than the disputed water transfer rate to the Segura Basin from other river basins. Water productivity analyses by sub-sectors are useful in understanding the economic rationale of the basin activities. Two types of agriculture coexist in the basin, namely, intensive industrial agriculture and occupational farming, which maintain the territory and landscape. From a Mediterranean country perspective, the analysis recommends considering climate fluctuations and temporal variability and trends of water availability and use, moving beyond the average values considered in river basin management plans. Ground water reserve depletion continues to occur at a rate of 231 hm(3)/year, as water from wells is currently cheaper than using desalinated water in farms, and it does not cause boron-related water quality problems for irrigation. If socially costly administrative measures are not taken, ground water reserve depletion will continue. (C) 2019 Elsevier B.V. All rights reserved.
机译:在缺水盆地,水资源管理尤其具有挑战性,缺水地区的水资源利用率低,加上潜在的需水量超过自然系统的供水能力。西班牙东南部的塞古拉河流域就是这种情况。本文旨在分析合并新的水文数据和观点的有用性,以增进对水供应和管理的理解,并有助于促进塞古拉盆地的综合水计划。在这个流域,农业总量约为每年1366 hm(3),占蓝水总使用量的80%。森林和农业对土壤水的利用分别达到3065和1962 hm(3)/年。未说明的虚拟水贸易也很重要,有助于减轻流域的水资源短缺。流域是一个虚拟的净水出口地区,平均每年出口1598 hm(3)/年,主要以水果和蔬菜的形式出口,每年大约进口1253 hm(3)/年,主要与猪饲料有关农场。虚拟水的进口量是有争议的从其他流域到塞古拉盆地的输水速度的四倍。分部门的水生产率分析有助于理解流域活动的经济原理。流域共有两种农业类型,即集约化工业农业和职业性农业,它们保持了领土和景观。从地中海国家的角度来看,该分析建议考虑气候波动和时间变化以及水的可利用和使用趋势,并超越流域管理计划中考虑的平均值。地下水储量的枯竭继续以每年231 hm(3)/年的速度发生,因为井中的水目前比在农场中使用淡化水便宜,并且不会引起与硼有关的水质问题,从而引起灌溉问题。如果不采取具有社会成本的行政措施,地下水储量将继续消耗。 (C)2019 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第20期|755-768|共14页
  • 作者单位

    Botin Fdn, Water Observ, Castello 18C, Madrid 28001, Spain|Univ Publ Navarra, Jeronimo Ayanz Ctr, Inst Innovat & Sustainable Dev Food Chain IS FOOD, Arrosadia Campus, Pamplona 31006, Spain;

    Tech Univ Catalonia UPC, Campus Nord,Jordi Girona Salgado 8,Ed D2, Barcelona 08034, Spain|Royal Acad Sci Spain, Valverde 22, Madrid 28004, Spain;

    Botin Fdn, Water Observ, Castello 18C, Madrid 28001, Spain|Royal Acad Sci Spain, Valverde 22, Madrid 28004, Spain;

    Tech Univ Madrid UPM, Super Tech Sch Architecture Madrid ETSAM, Av Juan de Herrera 4, Madrid 28040, Spain;

    Segura River Basin Author Confederac Hidrog Segur, Water Planning Off, Plaza Fontes 1, Murcia 30001, Spain;

    Segura River Basin Author Confederac Hidrog Segur, Plaza Fontes 1, Murcia 30001, Spain;

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

    Water planning; Integrated water resources management; Green water; Virtual water trade;

    机译:水资源规划;水资源综合管理;绿水;虚拟水贸易;
  • 入库时间 2022-08-18 04:15:55

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