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利用同步辐射显微断层扫描技术对颗粒几何形状对残留非水相液体影响的实验研究。

Experimental investigation of the influence of grain geometry on residual NAPL using synchrotron microtomography.

作者信息

Al-Raoush Riyadh I

机构信息

Department of Civil and Architectural Engineering, Qatar University, Doha, Qatar.

出版信息

J Contam Hydrol. 2014 Apr;159:1-10. doi: 10.1016/j.jconhyd.2014.01.008. Epub 2014 Feb 2.

DOI:10.1016/j.jconhyd.2014.01.008
PMID:24534446
Abstract

The objective of this work was to investigate the impact of grain geometry (size and shape) of porous media on the morphology of residual NAPL. Synchrotron microtomography was used to obtain maps of residual NAPL in multiphase systems. High-resolution, three-dimensional images of natural sand systems, comprising a range of grain sizes and shapes were imaged and analyzed. Findings indicate that residual NAPL saturation is influenced by the shapes of grains of the porous medium more than their sizes. In systems composed of grains with similar sphericity and angularity, residual saturations are independent of median grain sizes at the same operating regime (capillary-controlled regime in this work). Residual saturations tend to increase as the system comprised more angular or non-spherical grains where relatively large NAPL blobs are entrapped in such systems. While volumes of individual blobs tend to decrease as grain size decreases, grain geometry has more profound effects on the morphology of the residual NAPL blobs. Within a system composed of grains with similar shape characteristics, total NAPL-water interfacial area increases as grain sizes decrease where a large number of small blobs are trapped. Total meniscus NAPL-water interfacial area exhibits a linear relation with total interfacial area where it tends to increase as grain sizes decrease. However, while meniscus interfacial areas of individual blobs are highly influenced by pore geometry; residual blobs trapped in pores with complex geometry tend to have higher meniscus interfacial areas due to their branched nature which increases contacts with the wetting phase.

摘要

这项工作的目的是研究多孔介质的颗粒几何形状(尺寸和形状)对残余非水相液体(NAPL)形态的影响。利用同步辐射显微断层扫描技术获取多相系统中残余NAPL的分布图。对包含一系列粒径和形状的天然砂系统进行了高分辨率三维成像和分析。研究结果表明,残余NAPL饱和度受多孔介质颗粒形状的影响大于其尺寸的影响。在由具有相似球度和棱角度的颗粒组成的系统中,在相同的操作条件下(本工作中的毛细管控制条件),残余饱和度与中值粒径无关。当系统包含更多棱角状或非球形颗粒时,残余饱和度往往会增加,因为在这类系统中会截留相对较大的NAPL团块。虽然单个团块的体积往往会随着粒径的减小而减小,但颗粒几何形状对残余NAPL团块的形态有更深远的影响。在由具有相似形状特征的颗粒组成的系统中,随着粒径减小,会截留大量小团块,总NAPL-水界面面积会增加。总弯月面NAPL-水界面面积与总界面面积呈线性关系,且随着粒径减小而趋于增加。然而,虽然单个团块的弯月面界面面积受孔隙几何形状的影响很大;但由于其分支性质增加了与润湿相的接触,被困在具有复杂几何形状孔隙中的残余团块往往具有更高的弯月面界面面积。

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