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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Cylindrical FDTD Analysis of LWD Tools Through Anisotropic Dipping-Layered Earth Media
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Cylindrical FDTD Analysis of LWD Tools Through Anisotropic Dipping-Layered Earth Media

机译:各向异性浸入土介质对随钻测井仪的圆柱FDTD分析

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摘要

Electrical logging-while-drilling (LWD) tools are commonly used in oil and gas exploration to estimate the conductivity (resistivity) of adjacent Earth media. In general, Earth media exhibit anisotropic conductivities. This implies that when LWD tools are used for deviated and horizontal drilling, the resulting borehole problem may include dipping-layered media with dipping beds having full 3 times 3 conductivity tensors. To model this problem, we describe a 3-D cylindrical finite-difference time-domain (FDTD) algorithm extended to fully anisotropic conductive media and implemented with cylindrical perfectly matched layers to mimic open-domain problems. The 3-D FDTD algorithm is validated against analytical results in simple formations, showing good agreement, and used to simulate the response of LWD tools through anisotropic dipping beds for various values of anisotropic conductivities and dipping angles
机译:随钻电测井(LWD)工具通常用于油气勘探中,以估算相邻地球介质的电导率(电阻率)。通常,地球介质表现出各向异性电导率。这意味着,当将随钻测井仪用于偏斜和水平钻井时,导致的井眼问题可能包括具有浸入层的浸入层介质,浸入层具有完整的3×3电导率张量。为了对此问题进行建模,我们描述了一种3-D圆柱有限差分时域(FDTD)算法,该算法扩展到完全各向异性的导电介质,并使用圆柱完美匹配的层来模拟开域问题。针对简单地层中的分析结果验证了3-D FDTD算法,显示出良好的一致性,并用于模拟LWD工具通过各向异性浸入床对各种各向异性电导率和浸入角值的响应

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