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Estimating the water budget in a semi-arid region (Torrevieja aquifer-south-east Spain) by assessing groundwater numerical models and hydrochemical data

机译:通过评估地下水数值模型和水化学数据,估算半干旱地区(西班牙托雷维耶阿含水层-东南部)的水预算

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摘要

The driest area of Europe is located in the south-east of Spain. In this region, water plays an essential role for the development and maintenance of the major economical engines for society, tourism and agriculture. In the coastal areas, water scarcity increases the risk of saltwater intrusion connected also to the overexploitation of aquifers. The adequate management of coastal aquifers requires to integrate climatic and hydrogeological information, but it is common to find incomplete datasets and uncertainties about the sources and sinks of water. The Torrevieja coastal aquifer gathers all these challenges with limited information available and essential questions about the aquifer functioning. The water budget has an imbalance between inputs from precipitation-irrigation return and outputs connected to water supply pumping for population and agriculture. Initial estimates indicate an annual deficit of 4.36 Mm(3) that would produce short-term changes in the hydrodynamic system. However, the aquifer has been continuously exploited for the last 30 years which indicates the necessity of reviewing the hydrogeological characteristics of the region. A set of new conceptual models has been tested with numerical models to present alternative possibilities about the hydrogeological functioning combined with the analysis of hydrochemical data. The evaluation of the conceptual models revealed that up to 75% of the groundwater being extracted could proceed from a lower aquifer that has not been monitored. The improved water budget indicated a much lower annual deficit in the Torrevieja aquifer (0.2-0.8 Mm(3)) occasionally positive in years with high precipitation but introduces new questions about the recharge and origin of groundwater in the lower aquifer. In semi-arid areas, water is crucial facing climatic change and desertification processes; in this work, it is presented how the use of numerical models combined with hydrochemical information is a useful approach to provide new perspectives and improve water management.
机译:欧洲最干旱的地区位于西班牙的东南部。在该地区,水对社会,旅游业和农业的主要经济引擎的发展和维护起着至关重要的作用。在沿海地区,缺水增加了盐水入侵的风险,这也与含水层的过度开采有关。适当管理沿海含水层需要整合气候和水文地质信息,但是通常会找到不完整的数据集以及关于水源和汇的不确定性。托雷维耶哈沿海含水层通过有限的可用信息以及有关含水层功能的基本问题来收集所有这些挑战。在降水灌溉收益的投入与与人口和农业用水泵相连的产出之间,水预算之间存在不平衡。初步估计表明,年度赤字为4.36 Mm(3),它将在水动力系统中产生短期变化。但是,在最近的30年中,该含水层已经得到了持续开发,这表明有必要对该地区的水文地质特征进行审查。一组新的概念模型已通过数值模型进行了测试,以提出有关水文地质功能与水化学数据分析相结合的替代可能性。对概念模型的评估表明,多达75%抽取的地下水可能来自未被监测的较低含水层。改善后的水预算表明Torrevieja含水层(0.2-0.8 Mm(3))的年度赤字要低得多,在高降水的年份中偶尔为正,但是引入了有关较低含水层中地下水的补给和来源的新问题。在半干旱地区,面对气候变化和荒漠化进程,水至关重要。在这项工作中,将介绍如何将数值模型与水化学信息结合使用是提供新观点和改善水管理的有用方法。

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