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Thermal-plume fibre optic tracking (T-POT) test for flow velocity measurement in groundwater boreholes

机译:用于测量地下水井眼流速的热泵光纤跟踪(T-POT)测试

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We develop an approach for measuring in-well fluid velocities using point electrical heating combined with spatially and temporally continuous temperature monitoring using distributed temperature sensing (DTS). The method uses a point heater to warm a discrete volume of water. The rate of advection of this plume, once the heating is stopped, equates to the average flow velocity in the well. We conducted thermal-plume fibre optic tracking (T-POT) tests in a borehole in a fractured rock aquifer with the heater at the same depth and multiple pumping rates. Tracking of the thermal plume peak allowed the spatially varying velocity to be estimated up to 50 m downstream from the heating point, depending on the pumping rate. The T-POT technique can be used to estimate the velocity throughout long intervals provided that thermal dilution due to inflows, dispersion, or cooling by conduction does not render the thermal pulse unresolvable with DTS. A complete flow log may be obtained by deploying the heater at multiple depths, or with multiple point heaters.
机译:我们开发了一种使用点电加热结合使用分布式温度传感(DTS)进行时空连续温度监测的井内流体速度测量方法。该方法使用点加热器加热离散量的水。一旦停止加热,该羽流的平流速率等于井中的平均流速。我们在具有相同深度和多种抽速的加热器下,在裂隙含水层中的钻孔中进行了热泵光纤跟踪(T-POT)测试。通过跟踪热羽峰,可以根据抽气速率估计距加热点下游50 m的空间变化速度。 T-POT技术可用于估算整个长间隔的速度,条件是由于流入,分散或传导冷却引起的热稀释不会使热脉冲无法用DTS解决。通过将加热器部署在多个深度或使用多点加热器,可以获得完整的流量记录。

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