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A fully coupled fracture equivalent continuum-dual porosity model for hydro-mechanical process in fractured shale gas reservoirs

机译:页岩气藏水力过程全耦合裂缝当量连续双孔模型

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A fully coupled fracture equivalent continuum-dual porosity model is proposed to investigate hydro-mechanical coupling phenomena in fractured porous media. An improved fracture tensor is then developed to transform the local discontinuities at cell level to the anisotropic continuum at macro-scale. This model is incorporated into a set of nonlinear partial differential equations and numerically solved by multi-time-step finite element algorithm. The approach is then applied to a field-scale simulation of shale gas reservoir. Results indicate that the proposed method can be applied to insights into the field-scale hydro-mechanical coupling with high-density fractures in any arbitrary orientation within manageable computational cost.
机译:为了研究压裂多孔介质中的水力耦合现象,提出了全耦合裂缝等效连续双孔隙率模型。然后开发出改进的断裂张量,以将单元水平的局部不连续面转换为宏观尺度上的各向异性连续体。该模型被整合到一组非线性偏微分方程中,并通过多时步有限元算法进行数值求解。然后将该方法应用于页岩气藏的现场规模模拟。结果表明,所提出的方法可以用于在可控制的计算成本范围内以任意方向对高密度裂缝进行现场规模的水力耦合研究。

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