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Pore structure characterization based on joint numerical and experimental study: a case study of Nanpu sag

机译:基于数值与实验联合研究的孔隙结构表征——以南堡凹陷为例

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Petrophycical properties such as acoustic velocity, resistivity and nuclear magnetic resonance are greatly depend on the pore structures. This is because the pore structures could control the elastic modulus, conductive path and seepage distribution of the rock. The theoretical simulation and acoustic- electrical -nuclear magnetic resonance joint experiments were used to study the pore structure control action of acoustic, electrical and nuclear magnetic characteristics by taking the sandstone samples of Nanpu Sag as an example which the pore structure of the samples was classified based on the mercury intrusion fractal curve.. It is found that the control action of pore structure type on the variation law of longitudinal and transverse wave velocity is mainly affected by the aspect ratio of pores; the effect of pore structure type on resistivity change is mainly affected by pore throat ratio and tortuosity; the influence of pore structure on nuclear magnetic changes is mainly affected by pore size factors.
机译:岩石物理性质如声速、电阻率和核磁共振在很大程度上取决于孔隙结构。这是因为孔隙结构可以控制岩石的弹性模量、传导路径和渗流分布。以南堡凹陷砂岩样品为例,采用理论模拟和声-电-核磁共振联合实验研究了声、电、核磁特征对孔隙结构的控制作用,并根据压汞分形曲线对样品的孔隙结构进行了分类。。研究发现,孔隙结构类型对纵横波速度变化规律的控制作用主要受孔隙纵横比的影响;孔隙结构类型对电阻率变化的影响主要受孔喉比和弯曲度的影响;孔结构对核磁变化的影响主要受孔径因素的影响。

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