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Productivity simulation of hydraulically fractured wells based on hybrid local grid refinement and embedded discrete fracture model

机译:基于混合局部网格细化和嵌入式离散裂缝模型的水力压裂井产能模拟

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摘要

Using current Embedded Discrete Fracture Models(EDFM) to predict the productivity of fractured wells has some drawbacks, such as not supporting corner grid, low precision in the near wellbore zone, and disregarding the heterogeneity of conductivity brought by non-uniform sand concentration. An EDFM is developed based on the corner grid, which enables high efficient calculation of the transmissibility between the embedded fractures and matrix grids, and calculation of the permeability of each polygon in the embedded fractures by the lattice data of the artificial fracture aperture. On this basis, a coupling method of local grid refinement(LGR) and embedded discrete fracture model is designed, which is verified by comparing the calculation results with the Discrete Fracture Network(DFN) method and fitting the actual production data of the first hydraulically fractured well in Iraq. By using this method and orthogonal experimental design, the optimization of the parameters of the first multi-stage fractured horizontal well in the same block is completed. The results show the proposed method has theoretical and practical significance for improving the adaptability of EDFM and the accuracy of productivity prediction of fractured wells, and enables the coupling of fracture modeling and numerical productivity simulation at reservoir scale.
机译:使用电流嵌入的离散断裂模型(EDFM)来预测裂缝井的生产率具有一些缺点,例如不支持角栅格,近井筒区域的低精度,并忽略不均匀的砂浓度带来的导电性的异质性。基于角栅格开发EDFM,其能够高效地计算嵌入式裂缝和矩阵网格之间的传感器,以及通过人工裂缝孔的晶格数据计算嵌入式裂缝中的每个多边形的渗透率。在此基础上,设计了局部电网细化(LGR)和嵌入离散裂缝模型的耦合方法,通过将计算结果与离散断裂网络(DFN)方法进行比较并拟合第一种液压裂缝的实际生产数据来验证在伊拉克。通过使用这种方法和正交的实验设计,完成了在同一块中的第一多级裂缝水平井的参数的优化。结果表明,该方法具有改善EDFM的适应性以及裂缝井的生产率预测的准确性的理论和实践意义,并实现了储层规模的裂缝建模和数值生产率模拟的耦合。

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