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A Tracer Methodology for Identifying Ambient Flows in Boreholes

机译:识别钻孔中环境流动的示踪方法

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Identifying flows into, out of, and across boreholes is important for characterizing aquifers, determining the depth at which water enters boreholes, and determining the locations and rates of outflow. This study demonstrates how Single Borehole Dilution Tests (SBDTs) carried out under natural head conditions provide a simple and cheap method of identifying vertical flow within boreholes and determining the location of in-flowing, out-flowing, and cross-flowing fractures. Computer simulations were used to investigate the patterns in tracer profiles that arise from different combinations of flows. Field tracer tests were carried out using emplacements of a saline tracer throughout the saturated length of boreholes and also point emplacements at specific horizons. Results demonstrated that SBDTs can be used to identify flowing fractures at the top and bottom of sections of vertical flow, where there is a change in vertical flow rate within a borehole, and also where there are consistent decreases in tracer concentration at a particular depth. The technique enables identification of fractures that might be undetected by temperature and electrical conductance logging, and is a simple field test that can be carried out without pumping the borehole.
机译:识别流入,流出和穿过井眼的水流对于表征含水层,确定水进入井眼的深度以及确定流出的位置和速率非常重要。这项研究表明,在自然水头条件下进行的单孔稀释测试(SBDT)如何提供一种简单而廉价的方法来识别井眼内的垂直流并确定流入,流出和错流裂缝的位置。计算机模拟被用来调查示踪剂剖面中由于流动的不同组合而产生的模式。现场示踪剂测试是在整个饱和井眼长度范围内使用盐水示踪剂进行的,并在特定层位点进行了点缀。结果表明,SBDT可用于识别垂直流段顶部和底部的流动裂缝,其中井眼内垂直流率发生变化,并且在特定深度示踪剂浓度持续下降。该技术能够识别温度和电导率测井无法检测到的裂缝,并且是一项简单的现场测试,无需泵送钻孔即可进行。

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