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Multi-Level Slug Tests to Measure 3-D Hydraulic Conductivity Distributions

机译:多级塞测试以测量3-D液压电导率分布

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The accurate determination of the transport and fate of pollutants through an aquifer begins with a complete understanding of the complexities of the hydraulic conductivity in that aquifer. Slug tests have been a popular method to define in situ hydraulic conductivity in an aquifer. However, traditional slug tests will provide information about the hydraulic conductivity across the entire screened interval of a well and not provide information about variations that may exist in the vertical direction. Equipment was developed that allowed multi-level slug tests to be conducted at discrete intervals within fully screened 5-cm (2 in) diameter wells. Ten such wells at the Geohydrologic and Experiment Monitoring Site were tested in order to provide a more complete spatial definition of the hydraulic conductivity and to determine the utility of the double-packer apparatus for such studies. Results from multi-level slug tests produced vertical profiles of hydraulic conductivity throughout each well’s screened interval. These vertical profiles provided information about spatial variations in hydraulic conductivity, when they were incorporated into cross-sections and a 3-D fence diagram. This research determined the greatest complexity in hydraulic conductivity in a northeast to southwest trend across the study site. Techniques presented here are valuable tools for greater definition of the hydraulic conductivity distribution in similar hydraulic settings.
机译:通过对含水层中水力传导率的复杂性的全面了解,可以准确确定通过含水层的污染物的运输和归宿。团状测试是定义含水层中原位水力传导率的一种流行方法。但是,传统的段塞测试将提供有关井的整个筛选间隔内的水力传导率的信息,而不会提供有关在垂直方向上可能存在的变化的信息。开发了允许在完全筛选的5厘米(2英寸)直径的井中以不连续的间隔进行多级塞测试的设备。为了提供更完整的水力传导率的空间定义,并确定双层封隔器在此类研究中的实用性,在地质水文和实验监测站测试了十口这样的井。多级段塞测试的结果在每个筛选井的整个间隔内产生了垂直的水力传导曲线。当将这些垂直剖面合并到横截面和3-D围栏图中时,它们可提供有关水力传导率空间变化的信息。这项研究确定了整个研究地点的东北向西南趋势中水力传导率的最大复杂性。此处介绍的技术是宝贵的工具,可用于在相似的液压设置中更好地定义水力传导率分布。

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