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3D Macro Physical Experiment of Matrix-Fracture Interaction Flow in Fractured Reservoirs

机译:裂缝性储层中基质-裂缝相互作用流的3D宏观物理实验

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The imbibition interaction phenomenon exists between the matrix system and the fracture system during the waterflooding process in fractured reservoirs. And the physical experiment method is an important way to study the matrix-fracture interaction flow laws. Quantitative control of the fracture physical parameters distribution and that of the matrix-fracture imbibition interaction parameters are achieved by using the accurate bonding manufacture technique of fractured porous media and the incomplete vacuum saturation technique, respectively. Based on these methods, a three dimensional physical model is established. And then the macro flow laws of fractured porous media with matrix-fracture imbibition interaction are studied. The experiment results are macro displays of the matrix-fracture imbibition interaction. And the experiment can be a reference for studies on matrix-fracture interaction flow laws in fractured reservoirs.
机译:裂缝性油藏注水过程中,基质体系与裂缝体系之间存在吸水作用。物理实验方法是研究基体-断裂相互作用流动规律的重要途径。分别通过使用压裂多孔介质的精确粘结制造技术和不完全真空饱和技术,实现了对裂缝物理参数分布的定量控制和基质-裂缝吸水相互作用参数的定量控制。基于这些方法,建立了三维物理模型。然后研究了具有基质-裂缝吸收作用的多孔多孔介质的宏观流动规律。实验结果是基质-断裂吸水作用的宏观显示。该实验可为研究裂缝性储层中基质-裂缝相互作用的流动规律提供参考。

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