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首页> 外文期刊>Journal of Hydrology >Process-based groundwater salinisation risk assessment methodology: Application to the Akrotiri aquifer (Southern Cyprus)
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Process-based groundwater salinisation risk assessment methodology: Application to the Akrotiri aquifer (Southern Cyprus)

机译:基于过程的地下水盐碱化风险评估方法:应用于阿克罗蒂里含水层(南塞浦路斯)

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摘要

Groundwater salinisation is a major groundwater contamination issue world-wide and can be caused by different processes, such as seawater intrusion, agrochemical pollution, geogenic contamination and irrigation-induced salinisation. In many areas, several salinisation processes are superimposed. Since remedial measures vary for different salinisation processes, correct identification is fundamental for adequate design of management strategies: different strategies may be required in one and the same aquifer, depending on which salinisation process is active where in the domain. A simulation-based salinisation risk assessment methodology is proposed, based on the principle of linear superposition of total dissolved solutes in groundwater. In a first step, the measured bulk salinity distribution is used to calibrate a numerical groundwater flow and transport model, accounting for all identified salinisation processes. Then, the bulk salinity distribution is decomposed into different salinity components by adapting the boundary conditions, running a simulation for each salinisation process separately. These simulation results yield the necessary components to calculate the risk index distributions, which are a measure of the respective future potential salinity increase. Overlaying the risk index distributions with a defined threshold concentration reveals risk areas requiring remediation or conservation measures with respect to each process. The risk area maps resulting from this methodology are a promising tool for the design of groundwater management schemes. They condense relevant information from complex dynamic processes obtained from numerical simulations and visualise the results in simple and static maps, accessible to decision makers who are not familiar with groundwater dynamics. The different steps of the salinisation risk assessment procedure are first described and illustrated on a synthetic example and then applied to a real aquifer system in Southern Cyprus (Akrotiri), where three major salinisation processes are superimposed.
机译:地下水盐碱化是全球范围内的主要地下水污染问题,可能由不同的过程引起,例如海水入侵,农业化学污染,地质污染和灌溉引起的盐碱化。在许多地区,许多盐化过程是叠加的。由于针对不同盐渍化过程的补救措施会有所不同,因此正确识别对于适当设计管理策略至关重要:根据所在领域中哪个盐化过程是活跃的,在同一含水层中可能需要采取不同的策略。提出了一种基于模拟的盐渍化风险评估方法,该方法基于地下水中总溶解溶质的线性叠加原理。第一步,使用测得的总盐度分布来校准数值地下水流量和运移模型,并考虑所有确定的盐化过程。然后,通过调整边界条件,分别对每个盐化过程进行模拟,将总盐度分布分解为不同的盐度成分。这些模拟结果得出了计算风险指数分布的必要组件,这些指数是对未来潜在盐度增加的一种度量。用定义的阈值浓度覆盖风险指数分布会发现需要针对每个过程进行补救或保护措施的风险区域。这种方法得出的风险区域图是设计地下水管理方案的有前途的工具。他们将从数值模拟获得的复杂动态过程中浓缩相关信息,并在简单和静态的地图中可视化结果,那些不熟悉地下水动力学的决策者可以使用它们。首先在一个综合示例中描述和说明了盐化风险评估程序的不同步骤,然后将其应用到塞浦路斯南部(Akrotiri)的真实含水层系统中,其中叠加了三个主要的盐化过程。

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