Experiment Study on Topological Characteristics of Sandstone Coating by Micro CT

The pore structure is an important factor of tunnel coating failure, cracking and water leakage. Some investigations on the statistical law of pores and pore networks have been conducted, but little quantitative analysis is observed on topology structure of the pore network, and even the pore struct...

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Main Authors: Feng Gao, Yuhao Hu, Guannan Liu, Yugui Yang
Format: Article
Language:English
Published: MDPI AG 2020-11-01
Series:Coatings
Subjects:
Online Access:https://www.mdpi.com/2079-6412/10/12/1143
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spelling doaj-d2517a82f00d409fbb2547d93e9a79d62020-11-27T07:54:23ZengMDPI AGCoatings2079-64122020-11-01101143114310.3390/coatings10121143Experiment Study on Topological Characteristics of Sandstone Coating by Micro CTFeng Gao0Yuhao Hu1Guannan Liu2Yugui Yang3State Key Laboratory for Geomechanics and Deep Underground Engineering, China University of Mining and Technology, Xuzhou 221116, ChinaState Key Laboratory for Geomechanics and Deep Underground Engineering, China University of Mining and Technology, Xuzhou 221116, ChinaState Key Laboratory for Geomechanics and Deep Underground Engineering, China University of Mining and Technology, Xuzhou 221116, ChinaState Key Laboratory for Geomechanics and Deep Underground Engineering, China University of Mining and Technology, Xuzhou 221116, ChinaThe pore structure is an important factor of tunnel coating failure, cracking and water leakage. Some investigations on the statistical law of pores and pore networks have been conducted, but little quantitative analysis is observed on topology structure of the pore network, and even the pore structure of sandstone is complex and cross-scale distributed. Therefore, it is of theoretical and engineering significance to quantitatively characterize the connectivity of the pore network in sandstone. This study proposes a new complex network theory to analyze the three-dimensional nature of pore network structure in sandstone. The topological network structure, such as clustering degree, average path length and the module, which cannot be analyzed by traditional coordination number and fractal dimension methods, is analyzed. Numerical simulation results show that a scale-free network model is more suitable for describing the sandstone pore network than random models. The pore network of sandstone has good uniformity. The connectivity of sandstone pore networks has great potential for permeability enhancement. Therefore, this new method provides a way to deeply understand the pore connectivity characteristics of sandstone and to explore the distribution of crack grids in the arch of tunnel coatings.https://www.mdpi.com/2079-6412/10/12/1143complex network theorysandstonenetwork topologyseepagedistribution of degree
collection DOAJ
language English
format Article
sources DOAJ
author Feng Gao
Yuhao Hu
Guannan Liu
Yugui Yang
spellingShingle Feng Gao
Yuhao Hu
Guannan Liu
Yugui Yang
Experiment Study on Topological Characteristics of Sandstone Coating by Micro CT
Coatings
complex network theory
sandstone
network topology
seepage
distribution of degree
author_facet Feng Gao
Yuhao Hu
Guannan Liu
Yugui Yang
author_sort Feng Gao
title Experiment Study on Topological Characteristics of Sandstone Coating by Micro CT
title_short Experiment Study on Topological Characteristics of Sandstone Coating by Micro CT
title_full Experiment Study on Topological Characteristics of Sandstone Coating by Micro CT
title_fullStr Experiment Study on Topological Characteristics of Sandstone Coating by Micro CT
title_full_unstemmed Experiment Study on Topological Characteristics of Sandstone Coating by Micro CT
title_sort experiment study on topological characteristics of sandstone coating by micro ct
publisher MDPI AG
series Coatings
issn 2079-6412
publishDate 2020-11-01
description The pore structure is an important factor of tunnel coating failure, cracking and water leakage. Some investigations on the statistical law of pores and pore networks have been conducted, but little quantitative analysis is observed on topology structure of the pore network, and even the pore structure of sandstone is complex and cross-scale distributed. Therefore, it is of theoretical and engineering significance to quantitatively characterize the connectivity of the pore network in sandstone. This study proposes a new complex network theory to analyze the three-dimensional nature of pore network structure in sandstone. The topological network structure, such as clustering degree, average path length and the module, which cannot be analyzed by traditional coordination number and fractal dimension methods, is analyzed. Numerical simulation results show that a scale-free network model is more suitable for describing the sandstone pore network than random models. The pore network of sandstone has good uniformity. The connectivity of sandstone pore networks has great potential for permeability enhancement. Therefore, this new method provides a way to deeply understand the pore connectivity characteristics of sandstone and to explore the distribution of crack grids in the arch of tunnel coatings.
topic complex network theory
sandstone
network topology
seepage
distribution of degree
url https://www.mdpi.com/2079-6412/10/12/1143
work_keys_str_mv AT fenggao experimentstudyontopologicalcharacteristicsofsandstonecoatingbymicroct
AT yuhaohu experimentstudyontopologicalcharacteristicsofsandstonecoatingbymicroct
AT guannanliu experimentstudyontopologicalcharacteristicsofsandstonecoatingbymicroct
AT yuguiyang experimentstudyontopologicalcharacteristicsofsandstonecoatingbymicroct
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