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Effect of Discontinuous Microfractures on Ultratight Matrix Permeability of a Dual-Porosity Medium

机译:不连续微量磨损对双孔隙介质的超滑动矩阵渗透性的影响

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This paper examines the effects of matrix microfractures on effective matrix permeability of a dual-porosity medium.An analytical model is presented with composite matrix blocks consisting of a core where unconnected microfractures do not considerably contribute to flow capacity and a surface layer where the microfractures connected to the matrix surface(resembling wormholes)cause a stimulation effect.The composite matrix flow is coupled with the flow in a network of macrofractures as in the conventional dual-porosity idealizations of fractured media.The paper investigates the effect of matrix-surface stimulation and demonstrates improved fluid transfer from the matrix medium to the fracture network due to matrix microfractures.It is shown that matrix microfractures accelerate production by providing earlier and more effective contribution of matrix into flow rates.This contribution of the matrix due to microfractures cannot be simulated by enhanced matrix permeability as the micro-fractured surface-layer of the matrix causes different flow characteristics than a homogeneous(unfractured)matrix.The effect of the micro-fractured surface-layer of the matrix cannot be taken into account by a triple-porosity model used to incorporate two sets of connected natural fractures or connected fractures and vugs either.
机译:本文研究了基质微磨损对双孔隙介质的有效基质渗透性的影响。分析模型用复合基质块提出,其由未连接的微裂缝没有显着贡献流量和微磨损连接的表面层的核心。对于基质表面(类似的虫洞)引起刺激作用。复合矩阵流与裂缝介质的常规双孔隙度理想化中的宏观裂缝网络中的流动耦合。本文研究了基质表面刺激的影响和表明,由于基质微磨损,从基质培养基到骨折网络的改善流体转移。显示基质微乳状物通过向基质的前面和更有效的贡献提供更好的基质进入流速来加速生产。本质不能模拟基质引起的贡献提高矩阵渗透率作为微射法基质的CTURED表面层导致不同的流动特性而不是均匀的(不裂出的)基质。通过用于包含两组连接的三孔隙度模型,不能考虑矩阵的微裂缝表面层的效果自然骨折或连接的骨折和波纹。

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