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粗糙裂隙双重孔隙介质中牛顿流体的分形渗透率模型

Fractal Permeability Model of Newtonian Fluids in Rough Fractured Dual Porous Media.

作者信息

Yang Shanshan, Wang Mengying, Zheng Sheng, Zeng Shuguang, Gao Ling

机构信息

Three Gorges Mathematical Research Center, China Three Gorges University, Yichang 443002, China.

College of Science, China Three Gorges University, Yichang 443002, China.

出版信息

Materials (Basel). 2022 Jul 2;15(13):4662. doi: 10.3390/ma15134662.

Abstract

Based on the statistical self-similar fractal characteristics of the microstructure of porous media, the total flow rate and permeability of Newtonian fluids in the rough fracture network and rough matrix pores are derived, respectively. According to the connection structure between fractures and pores, the permeability analysis model of fluids in a matrix-embedded fracture network is established. The comparison between the predicted values of the model and the experimental data shows that the predicted values of the permeability of the rough fracture network and the rough matrix pores decrease with the increase in the relative roughness of the fractures and matrix pores, and are lower than the experimental data. Meanwhile, the predicted total flow rate of a rough fractured dual porous media is lower than that of a smooth fractal model and experimental data. In addition, it is also found that the larger the average inclination angle and the relative roughness of the fracture network, the smaller the permeability of the fractured dual porous media, and the relative roughness of the fracture network has a far greater influence on fluid permeability in the fractured dual porous media than the relative roughness of the matrix pores.

摘要

基于多孔介质微观结构的统计自相似分形特征,分别推导了牛顿流体在粗糙裂隙网络和粗糙基质孔隙中的总流量和渗透率。根据裂隙与孔隙之间的连通结构,建立了基质嵌入裂隙网络中流体的渗透率分析模型。模型预测值与实验数据的对比表明,粗糙裂隙网络和粗糙基质孔隙渗透率的预测值随裂隙和基质孔隙相对粗糙度的增加而降低,且低于实验数据。同时,粗糙裂隙双重多孔介质的预测总流量低于光滑分形模型和实验数据。此外,还发现裂隙网络的平均倾角和相对粗糙度越大,裂隙双重多孔介质的渗透率越小,且裂隙网络的相对粗糙度对裂隙双重多孔介质中流体渗透率的影响远大于基质孔隙的相对粗糙度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d5e/9267932/d80658c07534/materials-15-04662-g001.jpg

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