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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >A method of moments approach to model the electromagnetic response of multiple steel casings in a layered earth
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A method of moments approach to model the electromagnetic response of multiple steel casings in a layered earth

机译:一种模拟分层地球中多钢壳体电磁响应的矩的方法

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摘要

In oil and gas production environments, controlled-source electromagnetics can be used to aid brownfield exploration, development, and reservoir monitoring efforts. However, such environments typically have many highly conductive steelcased wells in the area of interest. We have developed a modeling algorithm using a method of moments (MoM) approach to calculate the electromagnetic response of multiple 3D steelcased wells of arbitrary geometry in a layered earth conductivity model. This approach involves dividing each casing into a collection of segments, each carrying a uniform current density. A matrix is computed that describes how the casing segments interact with each other electromagnetically. Then, we solve a linear system for the current within each casing segment, given a transmitter of arbitrary frequency and location. From these currents we are able to solve for the secondary electromagnetic fields produced solely by the casings at any point in our layered model, and we add these to the primary fields produced by the transmitter. To validate the algorithm, we compared results with a pseudoanalytic MoM algorithm for a single vertical casing in a half-space. We also compare results with a finite-element solution using Comsol Multiphysics for vertical and single tilted wells buried in various layered earth models. Our results indicate a good match between these different approaches, with tilted casings in a layered model requiring further study. Finally, we applied our algorithm to a realistic synthetic model with three casings (one vertical and two deviated) extending into a layered earth model containing the classic thin resistive layer. This example illustrates how the algorithm can be used to compute the electromagnetic response of multiple steel casings. The example also illustrates how the electromagnetic field changes due to the presence of the casings and how the casings may be used to inject the signal at depth.
机译:在石油和天然气生产环境中,控制源电磁学可用于帮助布朗菲尔德勘探,开发和水库监控努力。然而,这种环境通常在感兴趣的区域中具有许多高导电的钢井。我们开发了一种使用矩(MOM)方法的模型算法来计算分层地球电导模型中任意几何形状的多个钢井的电磁响应。该方法涉及将每个壳体划分为段的集合,每个壳体携带均匀的电流密度。计算矩阵,其描述壳体段如何电磁彼此相互作用。然后,给定每个壳体段内的电流的线性系统,给定任意频率和位置的发射机。从这些电流中,我们能够在我们分层模型中的任何点处由外壳中单独生产的二次电磁场,我们将这些电流添加到发射器产生的主要字段中。为了验证算法,我们将结果与半空间中的单个垂直壳体进行了伪分析垫族算法。我们还使用COMSOL多发性使用COMSOL Multiphysics进行比较结果,用于埋在各种分层地球模型中的垂直和单倾斜井。我们的结果表明了这些不同方法之间的良好匹配,在需要进一步研究的层状模型中具有倾斜的外壳。最后,我们将算法应用于具有三个外壳(一个垂直和两个偏移)的现实合成模型,延伸到包含经典薄电阻层的层状地球模型中。该示例说明了如何使用算法来计算多个钢外壳的电磁响应。该示例还示出了由于壳体的存在以及壳体如何用于在深度注入信号而导致的电磁场如何改变。

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