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3D multi-fractal analysis of porous media using 3D digital images: considerations for heterogeneity evaluation

机译:使用3D数字图像对多孔介质进行3D多分形分析:非均质性评估的考虑因素

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摘要

Pore structure heterogeneity is a critical parameter controlling mechanical, electrical and flow transport behaviour of rock. Multi-fractal analysis method was used for a heterogeneity comparison of three-dimensional rock samples with different lithology. Six real digital samples, containing three sandstones and three carbonates, were used. Based on the mercury injection capillary pressure test on these samples, we found that the carbonate samples are more heterogeneous than sandstones, but primary results of multi-fractal behaviours for all samples were similar. We show that if multi-fractal is used to evaluate and compare heterogeneity of different samples, one needs to follow some considerations such as (1) all samples must have the same size in pixel, (2) samples volume must be bigger than representative volume element, (3) multi-fractal dimensions should be firstly normalized to a determined porosity value and (4) multi-fractal results should be interpreted based on resolution of the imaging tool (effects of fine scale sub-resolution pores are missed). Results revealed that using normalized fractal dimensions, the real samples were divided to less and high heterogeneous groups. Moreover, the study of scale effect also showed that porous structures of these samples are scale invariant in a wide range of scales (from one to eight times bigger).
机译:孔隙结构的非均质性是控制岩石的力学,电学和流体传输行为的关键参数。多重分形分析方法用于不同岩性的三维岩石样品的非均质性比较。使用了六个包含三个砂岩和三个碳酸盐的真实数字样本。根据这些样品的汞注入毛细管压力测试,我们发现碳酸盐样品比砂岩样品具有更高的异质性,但是所有样品的多重分形行为的初步结果相似。我们表明,如果使用多重分形来评估和比较不同样本的异质性,则需要遵循一些考虑因素,例如(1)所有样本必须具有相同的像素大小;(2)样本量必须大于代表体积。元素,(3)首先应将多重分形维数确定为确定的孔隙率值,(4)应根据成像工具的分辨率解释多重分形结果(忽略了小尺寸亚分辨率孔隙的影响)。结果表明,使用归一化分形维数,真实样本被分为较少和较高的异类组。此外,对水垢效应的研究还表明,这些样品的多孔结构在很宽的水垢范围(大1到8倍)中是水垢不变的。

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