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Response characteristics of array lateral logs and their primary inversion in reservoirs with fracture-induced anisotropy

机译:裂缝引起各向异性的储层阵列横向测井响应特征及其初次反演

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In order to identify fractured reservoirs and determine their fracture parameters with a high definition array laterolog, we built a fracture-induced anisotropic formation model with a parallel fracture group. The three-dimensional finite element method is used to simulate the responses of the array laterolog, and then the primary inversion method is utilized. Numerical simulation shows that when the fracture spacing is small, the array laterolog response of the fracture group is the same as that of a formation with macroscopic electrical anisotropy. The apparent resistivity of the array laterolog is approximately inversely proportional to fracture porosity. The anisotropy depends on the fracture porosity in the fractured formation, which accordingly results in response variation of the array laterolog. The higher the fracture dip, the larger the apparent resistivity. When the fracture dip is low the difference between the deep and shallow apparent resistivities is small, and when the dip is high the difference turns out to be positive. The fracture parameters were inverted using the Marquardt non-linear least squares method. The results, both fracture porosity and dip show a good match with parameters in the actual formation model. This will promote the application of the array laterolog in evaluating fractured reservoirs.
机译:为了识别裂缝储层并通过高清晰度阵列测井法确定裂缝参数,我们建立了具有平行裂缝群的裂缝诱发各向异性地层模型。利用三维有限元方法模拟了阵列横向模拟的响应,然后采用了一次反演方法。数值模拟表明,当裂缝间距较小时,裂缝群的阵列横向响应与具有宏观电各向异性的地层相同。阵列横向测井的视电阻率与裂缝孔隙率大致成反比。各向异性取决于裂缝地层中的裂缝孔隙度,因此导致阵列横向测井的响应变化。裂缝倾角越高,表观电阻率越大。当裂缝倾角较低时,深表观电阻率与浅视电阻率之间的差异较小,而当裂缝倾角较高时,差异则为正值。使用Marquardt非线性最小二乘法对断裂参数进行反演。结果表明,裂缝孔隙率和倾角都与实际地层模型中的参数非常吻合。这将促进阵列测井技术在评价裂缝性储层中的应用。

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