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High-resolution electrical resistivity tomography monitoring of a tracer test in a confined aquifer

机译:高密度电阻率层析成像监测密闭含水层中的示踪试验

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摘要

A permanent geoelectrical subsurface imaging system has been installed at a contaminated land site to monitor changes in groundwater quality after the completion of a remediation programme. Since the resistivities of earth materials are sensitive to the presence of contaminants and their break-down products, 4-dimensional resistivity imaging can act as a surrogate monitoring technology for tracking and visualising changes in contaminant concentrations at much higher spatial and temporal resolution than manual intrusive investigations. The test site, a municipal car-park built on a former gas-works, had been polluted by a range of polycyclic aromatic hydrocarbons and dissolved phase contaminants. It was designated statutory contaminated land under Part IIA of the UK Environmental Protection Act due to the risk of polluting an underlying minor aquifer. Resistivity monitoring zones were established on the boundaries of the site by installing vertical electrode arrays in purpose-drilled boreholes. After a year of monitoring data had been collected, a tracer test was performed to investigate groundwater flow velocity and to demonstrate rapid volumetric monitoring of natural attenuation processes. A saline tracer was injected into the confined aquifer, and its motion and evolution were visualised directly in high-resolution tomographic images in near real-time. Breakthrough curves were calculated from independent resistivity measurements, and the estimated seepage velocities from the monitoring images and the breakthrough curves were found to be in good agreement with each other and with estimates based on the piezometric gradient and assumed material parameters.
机译:在修复方案完成后,已在受污染的土地上安装了永久性地电地下成像系统,以监测地下水质量的变化。由于地球材料的电阻率对污染物及其分解产物的存在很敏感,因此4维电阻率成像可以作为替代监测技术,以比人工侵入更高的空间和时间分辨率来跟踪和可视化污染物浓度的变化。调查。测试地点是建立在以前的煤气厂上的市政停车场,被多种多环芳烃和溶解相污染物污染。由于存在污染潜在的次要含水层的风险,根据《英国环境保护法》第IIA部分,该土地被指定为法定污染土地。通过在目的钻孔中安装垂直电极阵列,在现场边界上建立了电阻率监测区。在收集了一年的监测数据之后,进行了示踪剂测试,以调查地下水流速并演示对自然衰减过程进行快速体积监测。将盐水示踪剂注入受限的含水层中,并在高分辨率的断层图像中以近实时的方式直接观察其运动和演变。根据独立的电阻率测量值计算出穿透曲线,并且根据监测图像和穿透曲线估算出的渗流速度彼此之间以及与基于测压梯度和假定材料参数的估算值之间具有良好的一致性。

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