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首页> 外文期刊>Transport in Porous Media >Statistical Synthesis of Imaging and Porosimetry Data for the Characterization of Microstructure and Transport Properties of Sandstones
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Statistical Synthesis of Imaging and Porosimetry Data for the Characterization of Microstructure and Transport Properties of Sandstones

机译:成像和孔隙率数据的统计综合,用于表征砂岩的微观结构和传输特性

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The microstructure of a suite of sandstone samples is quantitatively analyzed using a method which combines information from thin section micrographs of the pore space with mercury injection porosimetry in a statistical framework. This method enables the determination of a continuous distribution of pore sizes ranging from few nanometre to several hundred micrometre. The data obtained unify fractal and Euclidean aspects of the void space geometry, yield estimates of the pore-to-throat aspect ratio and challenge the ability of commonly used network models to describe fluid percolation in multiscale porous media. Application of critical path analysis to the prediction of flow permeability and electrical conductivity of sandstone core samples using the new information produces results comparable to those obtained by the classical approach-a fact attributed to the presence of macroscopic heterogeneity at the scale of several millimetres.
机译:一套砂岩样品的微观结构是使用一种方法进行定量分析的,该方法将来自孔隙空间的薄层显微照片的信息与汞注入孔隙率法在一个统计框架内相结合。该方法能够确定从几纳米到几百微米的孔径的连续分布。获得的数据统一了空隙空间几何形状的分形和欧几里得方面,得出了孔喉纵横比的估计值,并挑战了常用网络模型描述多尺度多孔介质中流体渗流的能力。使用新信息将关键路径分析应用到砂岩岩心样品的渗透率和电导率预测中,其结果可与经典方法获得的结果相媲美-这归因于宏观异质性在几毫米范围内的存在。

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