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A Numerical 1.5D Method for the Rapid Simulation of Geophysical Resistivity Measurements

机译:快速数值模拟地球物理电阻率的1.5D方法

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In some geological formations, borehole resistivity measurements can be simulated using a sequence of 1D models. By considering a 1D layered media, we can reduce the dimensionality of the problem from 3D to 1.5D via a Hankel transform. The resulting formulation is often solved via a semi-analytic method, mainly due to its high performance. However, semi-analytic methods have important limitations such as, for example, their inability to model piecewise linear variations on the resistivity. Herein, we develop a multi-scale finite element method (FEM) to solve the secondary field formulation. This numerical scheme overcomes the limitations of semi-analytic methods while still delivering high performance. We illustrate the performance of the method with numerical synthetic examples based on two symmetric logging-while-drilling (LWD) induction devices operating at 2 MHz and 500 KHz, respectively.
机译:在某些地质构造中,可以使用一系列一维模型来模拟井眼电阻率测量。通过考虑一维分层介质,我们可以通过汉克尔变换将问题的维数从3D减少到1.5D。主要由于其高性能,通常通过半分析方法解决所得的配方。但是,半分析方法具有重要的局限性,例如无法对电阻率的分段线性变化建模。本文中,我们开发了一种多尺度有限元方法(FEM)来解决次级场公式。该数值方案克服了半解析方法的局限性,同时仍可提供高性能。我们用基于两个分别在2 MHz和500 KHz下运行的对称随钻测井(LWD)感应设备的数值合成示例来说明该方法的性能。

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