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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing. >Through-Casing Hydraulic Fracture Evaluation by Induction Logging I: An Efficient EM Solver for Fracture Detection
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Through-Casing Hydraulic Fracture Evaluation by Induction Logging I: An Efficient EM Solver for Fracture Detection

机译:通过感应测井评估套管破裂水力裂缝I:用于裂缝检测的高效EM解算器

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摘要

Hydraulic fracturing is an essential way to improve the production of unconventional shale oil and gas. It is important to characterize the produced fractures using either acoustic or electromagnetic (EM) methods. Conventional EM solvers in the low-frequency range face significant challenges by such multiscale problems where the fracture width is orders of magnitude smaller than its diameters. Furthermore, the cased borehole environment is extremely difficult to simulate with conventional EM solvers due to meshing difficulties and the multiscale nature of the problem. In this paper, we develop a hybrid distorted Born approximation and 3-D mixed ordered stabilized biconjugate gradient fast Fourier transform (DBA-BCGS-FFT) method to simulate the very challenging 2-D, 2-D-axisymmetric, and 3-D hydraulic fracture models under both open and cased borehole environments. Numerical examples show that this method has orders of magnitude higher efficiency than the finite element method. The capabilities of the DBA-BCGS-FFT method for the induction tool fracture mapping are demonstrated by comparing with laboratory experimental results and other reference results.
机译:水力压裂是提高非常规页岩油气产量的重要途径。使用声学或电磁(EM)方法来表征产生的裂缝非常重要。低频范围内的常规EM解算器面临这样的多尺度问题所面临的严峻挑战,其中裂缝宽度比直径小几个数量级。此外,由于啮合困难和问题的多尺度性质,用常规的电磁求解器很难模拟套管井的井眼环境。在本文中,我们开发了一种混合失真的Born逼近和3-D混合有序稳定双共轭梯度快速傅里叶变换(DBA-BCGS-FFT)方法来模拟非常具有挑战性的2-D,2-D轴对称和3-D裸眼和套管井环境下的水力压裂模型。数值算例表明,该方法的效率比有限元方法高几个数量级。通过与实验室实验结果和其他参考结果进行比较,证明了DBA-BCGS-FFT方法用于感应工具裂缝测绘的功能。

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