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Numerical Modeling of Eccentered LWD Borehole Sensors in Dipping and Fully Anisotropic Earth Formations

机译:倾斜和完全各向异性地层中偏心随钻测井传感器的数值建模

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摘要

Logging-while-drilling (LWD) borehole sensors are used to provide real-time resistivity data of adjacent earth formations for hydrocarbon exploration. This allows for a proactive adjustment of the dipping angle and azimuth direction of the drill and, hence, geosteering capabilities. The analysis of borehole eccentricity effects on LWD sensor response in full 3 $times$ 3 anisotropic earth formations is important for correct data interpretation in deviated or horizontal wells. In this paper, we present a cylindrical-grid finite-difference time-domain model to tackle this problem. The grid is aligned to the sensor axis to avoid staircasing error in the sensor geometry but, in general, misaligned to the (eccentered) borehole/formation interface. A locally conformal discretization is used to compute effective conductivity tensors of partially-filled grid cells at those interfaces, involving an isotropic medium (borehole) and a full 3 $times$ 3 anisotropic medium in general (dipped earth formation). The numerical model is used to compute the response of eccentered LWD sensors in layered earth formations with anisotropic dipping beds.
机译:随钻测井(LWD)钻孔传感器用于提供相邻地层的实时电阻率数据,用于油气勘探。这样就可以主动调整钻头的倾角和方位角,从而进行地质导向能力的调整。在完整的3×3各向异性地层中,分析井眼偏心对随钻测井传感器响应的影响,对于正确解释斜井或水平井中的数据非常重要。在本文中,我们提出了一个圆柱网格有限差分时域模型来解决这个问题。网格与传感器轴对齐,以避免传感器几何形状出现阶梯误差,但通常与(偏心的)井眼/地层界面未对齐。局部共形离散化用于计算在那些界面处部分填充的网格单元的有效电导率张量,通常涉及各向同性介质(钻孔)和一般3 x 3的各向异性介质(浸入地球地层)。该数值模型用于计算偏心LWD传感器在具有各向异性浸层的层状地层中的响应。

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