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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Significance of shape factor on permeability anisotropy of sand: representative elementary volume study for pore-scale analysis
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Significance of shape factor on permeability anisotropy of sand: representative elementary volume study for pore-scale analysis

机译:砂砂渗透性各向异性的形状因子意义:孔隙尺度分析的代表性基础卷研究

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摘要

This paper is a study of determination of representative elementary volume (REV) size suitable for pore-scale flow simulation (PFS) and evaluation of permeability anisotropy for sand based on Kozeny-Carman (KC) equation. We extracted small digitized samples for PFS from the 3D structures of Toyoura sand and glass beads obtained by X-ray computed tomography. Using the digitized samples with various sizes, we performed a series of flow simulations. We characterized the sample size using the ratio of the porous length L to the median grain diameter D-50. The L/D-50 of REV was determined on the basis of statistical evaluation on coefficients of variations of the simulated values of void ratio, specific surface, hydraulic conductivity and hydraulic tortuosity.We confirmed that the hydraulic properties obtained from the PFS using the REV size determined agreed well with the past experimental studies. We also conducted PFSs in the horizontal direction to evaluate the permeability anisotropy. We clarified that the shape factor in the KC equation has a strong influence on permeability anisotropy even though previous studies treated hydraulic tortuosity as the only factor that affects the permeability anisotropy.
机译:本文是对适用于孔隙尺度流动模拟(PFS)的代表性基本体积(Rev)尺寸的测定以及基于Kozeny-Carman(KC)方程的砂砾渗透性各向异性评估。我们从由X射线计算机断层扫描获得的Toyoura沙子和玻璃珠的3D结构提取了PFS的小型样品。使用具有各种尺寸的数字化样本,我们执行了一系列流量模拟。我们使用多孔长度L与中间粒径D-50的比率表征样品尺寸。 REV的L / D-50是基于对空隙比,比表面,液压导电性和液压曲折的模拟值的变化系数的统计评估。我们确认使用REV从PFS获得的液压性能大小与过去的实验研究相同确定。我们还在水平方向上进行了PFSS,以评估渗透性各向异性。我们澄清了KC方程中的形状因子对渗透性各向异性的影响很大,即使先前的研究将液压曲折是影响渗透性各向异性的唯一因素。

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