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High-Fidelity Real-Time Imaging With Electromagnetic Logging-While-Drilling Measurements

机译:带有电磁测井-钻探测量的高保真实时成像

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A pixel-based inversion approach is introduced for interpretation of deep directional resistivity logging-while-drilling electromagnetic measurements. It can be used for real-time reservoir mapping while drilling to accurately place the well with respect to reservoir boundaries and fluid contacts as well as for reservoir characterization in high angle and horizontal wells. The methodology is based on the Gauss–Newton approach, using an adaptive l1-norm regularization and a robust error term to determine the 1-D formation anisotropic resistivity profile and local formation dip. The new inversion allows high-resolution imaging of the subsurface resistivity distributions and consistent integration of measurements of different depth of investigation. To further enhance the robustness and accuracy of the subsurface images, a fast approximate 2-D inversion is developed, which uses approximate modeling based on locally 1-D models, resulting in reservoir images of improved accuracy and consistency in mildly 2-D and 3-D scenarios. The inversion's ability to generate a stable robust but detailed resistivity image of the formation near the wellbore is proven on synthetic and field data.
机译:引入了基于像素的反演方法,用于解释深方向电阻率随钻测井电磁测量。它可用于钻井时的实时油藏测绘,以相对于油藏边界和流体接触面准确地定位油井,以及用于大角度和水平井中的油藏表征。该方法基于高斯-牛顿法,使用自适应l1范数正则化和鲁棒误差项来确定一维地层各向异性电阻率曲线和局部地层倾角。新的反演可以对地下电阻率分布进行高分辨率成像,并且可以对不同调查深度的测量值进行一致的整合。为了进一步增强地下图像的鲁棒性和准确性,开发了一种快速的近似二维反演方法,该方法使用了基于局部一维模型的近似模型,从而在温和的二维和三阶中提高了储层图像的准确性和一致性。 -D方案。在合成和现场数据上证明了该反演能够在井眼附近生成稳定的鲁棒但详细的电阻率图像的能力。

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