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Travel-time-based thermal tracer tomography

机译:基于行程时间的热示踪层析成像

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Active thermal tracer testing is a technique to get information about the flow and transport properties of an aquifer. In this paper we propose an innovative methodology using active thermal tracers in a tomographic setup to reconstruct cross-well hydraulic conductivity profiles. This is facilitated by assuming that the propagation of the injected thermal tracer is mainly controlled by advection. To reduce the effects of density and viscosity changes and thermal diffusion, early-time diagnostics are used and specific travel times of the tracer breakthrough curves are extracted. These travel times are inverted with an eikonal solver using the staggered grid method to reduce constraints from the pre-defined grid geometry and to improve the resolution. Finally, non-reliable pixels are removed from the derived hydraulic conductivity tomograms. The method is applied to successfully reconstruct cross-well profiles as well as a 3-D block of a high-resolution fluvio-aeolian aquifer analog data set. Sensitivity analysis reveals a negligible role of the injection temperature, but more attention has to be drawn to other technical parameters such as the injection rate. This is investigated in more detail through model-based testing using diverse hydraulic and thermal conditions in order to delineate the feasible range of applications for the new tomographic approach.
机译:主动热示踪剂测试是一种获取有关含水层流量和传输特性的信息的技术。在本文中,我们提出了一种在层析成像设置中使用主动热示踪剂来重建井间水力传导率曲线的创新方法。通过假设注入的热示踪剂的传播主要由对流来控制,可以方便地实现这一点。为了减少密度和粘度变化以及热扩散的影响,使用了早期诊断方法,并提取了示踪剂穿透曲线的特定行进时间。使用交错网格方法,通过常规求解器将这些行进时间反转,以减少来自预定义网格几何形状的约束并提高分辨率。最后,将不可靠的像素从导出的水力传导率断层图中删除。该方法适用于成功重建井眼剖面以及高分辨率河风-含水层含水层模拟数据集的3-D块。灵敏度分析显示进样温度的作用微不足道,但是必须更加注意其他技术参数,例如进样速度。通过使用各种水力和热力条件的基于模型的测试,对此进行了更详细的研究,以描绘出新的层析成像方法的可行应用范围。

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