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Three-dimensional simulation of eccentric LWD tool response in boreholes through dipping formations

机译:井下倾斜地层随钻测井仪响应的三维模拟

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We simulate the response of logging-while-drilling (LWD) tools in complex thee-dimensional (3-D) borehole environments using a finite-difference time-domain (FDTD) scheme in cylindrical coordinates. Several techniques are applied to the FDTD algorithm to improve the computational efficiency and the modeling accuracy of more arbitrary geometries/media in well-logging problems: (1) a 3-D FDTD cylindrical grid to avoid staircasing discretization errors in the transmitter, receiver, and mandrel geometries; (2) an anisotropic-medium (unsplit) perfectly matched layer (PML) absorbing boundary condition in cylindrical coordinates is applied to the FDTD algorithm, leading to more compact grids and reduced memory requirements; (3) a simple and efficient algorithm is employed to extract frequency-domain data (phase and amplitude) from early-time FDTD data; (4) permittivity scaling is applied to overcome the Courant limit of FDTD and allow faster simulations of lower frequency tool; and (5) two locally conformal FDTD (LC-FDTD) techniques are applied to better simulate the response of logging tools in eccentric boreholes. We validate the FDTD results against the numerical mode matching method for problems where the latter is applicable, and against pseudoanalytical results for eccentric borehole problems. The comparisons show very good agreement. Results from 3-D borehole problems involving eccentric tools and dipping beds simultaneously are also included to demonstrate the robustness of the method.
机译:我们在圆柱坐标系中使用有限差分时域(FDTD)方案在复杂的三维(3-D)钻孔环境中模拟随钻测井(LWD)工具的响应。在测井问题中,将多种技术应用于FDTD算法,以提高计算效率和更多任意几何形状/介质的建模精度:(1)3-D FDTD圆柱网格,以避免在发射机,接收机,和心轴的几何形状; (2)FDTD算法将各向异性介质(非分裂)完全匹配层(PML)吸收圆柱坐标中的边界条件应用于FDTD算法,从而使网格更加紧凑并减少了内存需求; (3)采用简单有效的算法从早期的FDTD数据中提取频域数据(相位和幅度); (4)应用介电常数缩放来克服FDTD的Courant限制,并允许更快地模拟低频工具; (5)应用两种局部共形的FDTD(LC-FDTD)技术来更好地模拟偏心井眼中测井仪的响应。对于适用于后者的问题,我们对照数值模式匹配方法验证了FDTD的结果,对于偏心井眼问题,针对伪分析结果验证了FDTD的结果。比较显示出很好的一致性。还包含了同时涉及偏心工具和浸渍床的3-D钻孔问题的结果,以证明该方法的鲁棒性。

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