Mapping saltwater intrusion via Electromagnetic Induction (EMI) for planning a Managed Aquifer Recharge (MAR) facility in Maltese Island

Lorenzo De Carlo, A. C. Turturro, M. C. Caputo, M. Sapiano, Julian Mamo, Oriana Balzan, Luke Galea, M. Schembri
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Abstract

In coastal areas, saltwater intrusion causes a depletion of the resource by reducing potable and irrigation freshwater supplies and causing severe deterioration of groundwater quality. This trend is observed in Pwales Valley, in the North part of Malta where the management of water resources plays a crucial role for the environmental sustainability of the area, given the importance of intensive agricultural activity along this valley. In order to tackle such phenomenon, actions or adaptation measures against climate change are strongly required. For example, Managed Aquifer Recharge (MAR) is an increasingly important water management strategy to maintain, enhance and secure stressed groundwater systems and to protect and improve water quality. To accurately plan a Managed Aquifer Recharge scheme, it is crucial to define a hydrogeological model of the studied area, with the use of traditional hydrogeological measurements and innovative unconventional techniques. In recent years, Electromagnetic Induction measurements, based on induction of em fields, have been increasingly used for investigating the saltwater intrusion dynamics due to their high sensitivity to the salinity. In the study area of Pwales Valley, a Managed Aquifer Recharge scheme is being planned and, for this aim, a hydrogeological model has been developed through an Electromagnetic Induction survey. More than 20,000 apparent electrical conductivity (ECa) data were collected to generate a quasi 3D high-resolution model of electrical conductivity of the Pwales Valley. The results highlighted the spatial extension of the tongue-shape salt water intrusion from east to west along the valley, as well as some geological-hydrogeological peculiarities such as the thickness of the salt wedge and the irregular top surface of the bottom impermeable layer, otherwise undetectable with other direct techniques at the field scale resolution. The approach was confirmed to be a useful tool for an effective hydrogeological characterisation, essential for planning adaptation measures to a changing climate, such as the implementation of a Managed Aquifer Recharge scheme.
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通过电磁感应(EMI)绘制盐水入侵图,以规划马耳他岛的蓄水层管理补给(MAR)设施
在沿海地区,盐水入侵导致资源枯竭,减少了饮用水和灌溉淡水供应,造成地下水水质严重恶化。在马耳他北部的普瓦莱斯河谷也发现了这种趋势,由于该河谷沿岸密集的农业活动非常重要,水资源管理对该地区的环境可持续性起着至关重要的作用。为了应对这种现象,必须采取应对气候变化的行动或适应措施。例如,蓄水层管理补给(MAR)是一项日益重要的水资源管理策略,可用于维持、加强和保障紧张的地下水系统,以及保护和改善水质。要准确规划含水层管理补给计划,就必须利用传统的水文地质测量方法和创新的非常规技术,确定研究区域的水文地质模型。近年来,基于电磁场感应的电磁感应测量因其对盐度的高度敏感性,越来越多地被用于研究盐水入侵动态。在普瓦尔斯山谷的研究区域,正在规划一项含水层管理补给计划,为此,通过电磁感应测量建立了一个水文地质模型。收集了 20,000 多个表观电导率 (ECa) 数据,以生成普瓦尔斯河谷的准三维高分辨率电导率模型。结果突出显示了舌状盐水入侵沿山谷自东向西的空间延伸,以及一些地质-水文地质特征,如盐楔厚度和底部不透水层的不规则顶面,这些特征是其他直接技术在实地分辨率下无法探测到的。该方法被证实是有效描述水文地质特征的有用工具,对于规划适应气候变化的措施(如实施蓄水层补给管理计划)至关重要。
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[Acque Sotterranee - Italian Journal of Groundwater is 40 years old] [The activity plan for the realization of the Hydrogeological Map of Italy at 1:500,000 scale] Mapping saltwater intrusion via Electromagnetic Induction (EMI) for planning a Managed Aquifer Recharge (MAR) facility in Maltese Island [Groundwater and energy: shallow geothermal, i.e. heat-exchange, in urban areas] Water quality aspects from Spanish sites to support managed aquifer recharge (MAR) guidelines not based on maximum allowable concentration standards
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