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Modelling an induced thermal plume with data from electrical resistivity tomography and distributed temperature sensing: a case study in northeast Italy

机译:用电阻率断层扫描和分布式温度传感数据建模诱导热羽:意大利东北部的案例研究

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Groundwater tracer tests are often used to improve aquifer characterization, but they present several disadvantages, such as the need to pour solutions or dyes into the aquifer system and alteration of the water's chemical properties. Thus, tracers can affect the groundwater flow mechanics and data interpretation becomes more complex, hindering effective study of ground heat pumps for low enthalpy geothermal systems. This paper presents a preliminary methodology based on a multidisciplinary application of heat as a tracer for defining the main parameters of shallow aquifers. The field monitoring techniques electrical resistivity tomography (ERT) and distributed temperature sensing (DTS) are noninvasive and were applied to a shallow-aquifer test site in northeast Italy. The combination of these measurement techniques supports the definition of the main aquifer parameters and therefore the construction of a reliable conceptual model, which is then described through the numerical code FEFLOW. This model is calibrated with DTS and validated by ERT outcomes. The reliability of the numerical model in terms of fate and transport is thereby enhanced, leading to the potential for better environmental management and protection of groundwater resources through more cost-effective solutions.
机译:地下水示踪试验经常用于改善含水层表征,但它们呈现几个缺点,例如需要将溶液或染料倒入含水层系统和水的化学性质的改变。因此,示踪剂可以影响地下水流动力学和数据解释变得更加复杂,妨碍了对低焓地热系统的地热泵的有效研究。本文提出了一种基于多学科应用作为定义浅含水层的主要参数的示踪剂的初步方法。现场监测技术电阻率断层扫描(ERT)和分布式温度传感(DTS)是非侵入性的,并且应用于意大利东北部的浅水区测试场所。这些测量技术的组合支持主要含水层参数的定义,从而构建可靠的概念模型,然后通过数值代码FEFLOW描述。该模型用DTS校准并由ERT结果验证。由此提高了命运和运输方面数值模型的可靠性,从而引发了通过更具成本效益的解决方案更好地环境管理和保护地下水资源的潜力。

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