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A simple inverse method for the interpretation of pumped flowing fluid electrical conductivity logs

机译:解释流动流体电导率测井曲线的简单逆方法

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Pumped flowing fluid electrical conductivity (FFEC) logs, also known as pumped borehole dilution testing, is an experimentally easy-to-perform approach to evaluating vertical variations in the hydraulic conductivity of an aquifer. In contrast to the simplicity of the logging equipment, analysis of the data is complex and laborious. Current methods typically require repeated solution of the advection-dispersion equation (ADE) for describing the flow in the borehole and comparison with the experimental results. In this paper, we describe a direct solution for determining borehole fluid velocity that bypasses the need for complex numerical computation and repetitive optimization. The method rests on the observation that, while solving the ADE for concentration profile in the borehole (as required for modeling and combined methods) is computationally challenging, the solution for flow distribution along the length of the borehole given concentration data is straightforward. The method can accommodate varying borehole diameters, and uses the fact that multiple profiles are taken in the standard logging approach to reduce the impact of noise. Data from both a simulated borehole and from a field test are successfully analyzed. The method is implemented in a spreadsheet, which is available as supporting information material to this paper.
机译:抽水流体电导率(FFEC)测井曲线,也称为抽水井孔稀释测试,是一种实验上易于执行的方法,用于评估含水层水力传导率的垂直变化。与测井设备的简单性相反,数据分析是复杂而费力的。当前的方法通常需要重复求解对流弥散方程(ADE),以描述井眼中的流动并与实验结果进行比较。在本文中,我们描述了一种确定井眼流体速度的直接解决方案,它无需进行复杂的数值计算和重复性优化。该方法基于以下观察结果:在求解ADE中钻孔浓度分布图(建模和组合方法所需)时,在计算上存在挑战,而给定浓度数据,沿钻孔长度方向的流量分布求解很简单。该方法可以适应变化的井眼直径,并利用以下事实:在标准测井方法中采用了多个剖面,以减少噪声的影响。成功地分析了来自模拟钻孔和现场测试的数据。该方法在电子表格中实现,可作为本文的辅助信息材料使用。

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