首页> 外国专利> Fluid e.g. oil, flow in multilayer porous medium modeling method, involves discretizing each fractured layer by grid pattern, and calculating local flows between each fracture grid cell and associated matrix volume in pseudo-steady state

Fluid e.g. oil, flow in multilayer porous medium modeling method, involves discretizing each fractured layer by grid pattern, and calculating local flows between each fracture grid cell and associated matrix volume in pseudo-steady state

机译:流体例如油,多层多孔介质建模方法中的流动,涉及通过网格模式离散化每个裂缝层,并计算拟稳态下每个裂缝网格单元与相关基质体积之间的局部流动

摘要

Modeling compressible fluid flows in a multilayer porous medium involves discretizing each fractured layer by a grid pattern comprising fracture rigid cells that are centered on nodes each node being associated with a matrix block, and calculating the local flows between each fracture grid cell and associated matrix volume in pseudosteady state. Modeling compressible fluid flows in a multilayer porous medium crossed by a network of fractures of given geometry and by a well involves: (a) discretizing each fractured layer by a grid pattern comprising fracture rigid cells that are centered on nodes at the fracture intersections or at the fracture ends, each node being associated with a matrix block including all the points that are closer than to neighboring nodes; (b) calculating the local flows between each fracture grid cell and associated matrix volume in a pseudosteady state, the transmissivity value being obtained by considering a linear variation of the pressure as a function of the distance between any point of the block and the fracture grid cell; (c) determining the direct flows between the fracture grid cells; (d) determining the direct flow between the matrix volumes through the common edges of the grid cells; (e) determining the direct flows between the fracture grid cells and the matrix grid cells on the one hand, and the volume of the well on the other hand; and (f) simulating the response of the well for imposed flow rate variations by using a diffusion equation that connects the interactions between the pressure and flow rate variations that can be observed in the well.
机译:对多层多孔介质中的可压缩流体流动进行建模,涉及通过网格图案离散每个裂缝层,网格图案包括以节点为中心的裂缝刚性单元,每个节点与矩阵块关联,并计算每个裂缝网格单元与关联矩阵体积之间的局部流量。处于伪稳态。对可渗透流体在多层多孔介质中的流动进行建模,该多层多孔介质与给定几何形状的裂缝网络和井相交涉及:(a)通过网格图案离散化每个裂缝层,网格图案包括以裂缝交叉点或节点为中心的裂缝刚性单元骨折端,每个节点与矩阵块相关联,该矩阵块包括比邻近节点更近的所有点; (b)以伪稳态计算每个裂缝网格单元与相关基质体积之间的局部流动,通过将压力的线性变化作为砌块任一点与裂缝网格之间距离的函数,来获得透射率值细胞; (c)确定裂缝网格单元之间的直接流动; (d)确定通过网格单元的公共边缘的矩阵体积之间的直接流动; (e)一方面确定裂缝网格单元和矩阵网格单元之间的直接流动,另一方面确定井的体积; (f)通过使用扩散方程来模拟井对施加的流速变化的响应,该扩散方程连接了在井中可以观察到的压力和流速变化之间的相互作用。

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