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Characteristics of micro- and nano-pores in shale oil reservoirs

机译:页岩油藏微型和纳米毛孔的特征

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Porosity is the most common form of reservoirs, and its size, shape, and connectivity directly affect the capacity of oil and gas storage and production. To study the micro–nano-pore structure characteristics of shale oil reservoirs and quantitatively characterize its heterogeneity, this work uses high-precision high-pressure mercury intrusion (HPMI) experimental techniques to study the micro–nano-pore structure characteristics of shale oil, and based on the experimental data, fractal theory is used to quantitatively characterize its heterogeneity. The results of the study show that the micro–nano-pores in the shale oil reservoir are concentrated and continuous, and the pore radius is mainly distributed among the range of 30–500?nm, nanoscale pores are an important part of the pores of the shale oil reservoir. The fractal dimension of the shale oil reservoir is larger than the fractal dimension of typical tight oil reservoirs, indicating that the heterogeneity of shale oil reservoir is stronger. The research results have some theoretical and practical significance for the production of inter-salt shale oil reservoirs.
机译:孔隙度是最常见的储层形式,其尺寸,形状和连接直接影响石油和储气储存和生产的能力。为研究页岩油藏的微纳米孔结构特性并定量表征其异质性,这项工作采用高精度的高压汞侵入(HPMI)实验技术来研究页岩油的微纳米孔结构特征,并基于实验数据,分形理论用于定量表征其异质性。研究结果表明,页岩油贮存器中的微纳米孔浓缩,连续,孔径主要分布在30-500Ω·纳米的范围内,纳米镜孔是毛孔的重要组成部分页岩油藏。页岩油藏的分形尺寸大于典型的纯油储层的分形尺寸,表明页岩油藏的异质性更强。研究结果对盐间页油藏生产具有一些理论和实践意义。

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