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Numerical simulation and dimension reduction analysis of electromagnetic logging while drilling of horizontal wells in complex structures

机译:电磁测井的数值模拟与尺寸减小分析,同时钻井井中的复杂结构

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摘要

Electromagnetic logging while drilling (LWD) is one of the key technologies of the geosteering and formation evaluation for high-angle and horizontal wells. In this paper, we solve the dipole source-generated magnetic/electric fields in 2D formations efficiently by the 2.5D finite difference method. Particularly, by leveraging the field's rapid attenuation in spectral domain, we propose truncated Gauss-Hermite quadrature, which is several tens of times faster than traditional inverse fast Fourier transform. By applying the algorithm to the LWD modeling under complex formations, e.g., folds, fault and sandstone pinch-outs, we analyze the feasibility of the dimension reduction from 2D to 1D. For the formations with smooth lateral changes, like folds, the simplified 1D model's results agree well with the true responses, which indicate that the 1D simplification with sliding window is feasible. However, for the formation structures with drastic rock properties changes and sharp boundaries, for instance, faults and sandstone pinch-outs, the simplified 1D model will lead to large errors and, therefore, 2.5D algorithms should be applied to ensure the accuracy.
机译:钻孔(LWD)的电磁记录是高角度和水平孔的地球蹄粉和形成评估的关键技术之一。在本文中,通过2.5D有限差分法,我们高效地解决了2D地层中的偶极源产生的磁场。特别是,通过利用该领域在光谱域中的快速衰减,我们提出了截短的高斯 - Hermite正交,这比传统的逆快速傅里叶变换快几十次。通过将算法应用于复杂地层下的LWD建模,例如折叠,故障和砂岩夹出来,我们分析了从2D到1D的尺寸减少的可行性。对于具有平稳横向变化的结构,如折叠,简化的1D模型的结果与真正的响应很好,这表明使用滑动窗口的1D简化是可行的。然而,对于具有激烈岩石性能的形成结构变化和尖锐的边界,例如,故障和砂岩夹出来,简化的1D模型将导致大误差,因此应采用2.5D算法来确保准确性。

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