Numerical Study of the Strength and Characteristics of Sandstone Samples with Combined Double Hole and Double Fissure Defects
To explore the failure mechanism of rock with holes and fissures, uniaxial compression tests of sandstone samples with combined double hole and double fissure defects were carried out using Particle Flow Code 2D (PFC2D) numerical simulation software. The failure behaviour and mechanical properties o...
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doaj-4246c4abf65e423b90d9741a9c6124812021-07-15T15:46:34ZengMDPI AGSustainability2071-10502021-06-01137090709010.3390/su13137090Numerical Study of the Strength and Characteristics of Sandstone Samples with Combined Double Hole and Double Fissure DefectsJunbiao Ma0Ning Jiang1Xujun Wang2Xiaodong Jia3Dehao Yao4State Key Laboratory of Mine Disaster Prevention and Control, Shandong University of Science and Technology, Qingdao 266590, ChinaState Key Laboratory of Mine Disaster Prevention and Control, Shandong University of Science and Technology, Qingdao 266590, ChinaJining No.3 Coal Mine, Yanzhou Coal Mining Company Limited, Jining 272100, ChinaJining No.3 Coal Mine, Yanzhou Coal Mining Company Limited, Jining 272100, ChinaState Key Laboratory of Mine Disaster Prevention and Control, Shandong University of Science and Technology, Qingdao 266590, ChinaTo explore the failure mechanism of rock with holes and fissures, uniaxial compression tests of sandstone samples with combined double hole and double fissure defects were carried out using Particle Flow Code 2D (PFC2D) numerical simulation software. The failure behaviour and mechanical properties of the sandstone samples with combined double hole and double fissure defects at different angles were analysed, and the evolution results of the stress field and crack propagation were studied. The results show that with a decrease in fissure angle, the crack initiation stress, damage stress, elastic modulus and peak stress of the defective rock decrease, while the peak strain increases, and the brittleness of the rock is weakened. Rocks with combined double hole and double fissure defects at different angles lead to different failure modes, crack initiation positions and crack development directions. After uniaxial compression, both compressive stress and tensile stress concentration areas are produced in the defective rock, but the compressive stress concentration is of primary importance. The concentration area is mainly distributed around the holes and fissures and the defect connecting line, and the stress concentration area decreases with the decreasing fissure angle. This study can correctly predict the mechanical properties of rock with combined double hole and double fissure defects at different angles and provide a reference for actual rock engineering.https://www.mdpi.com/2071-1050/13/13/7090PFC2Duniaxial compressionfailure modesevolution results of the stress fieldcrack propagation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Junbiao Ma Ning Jiang Xujun Wang Xiaodong Jia Dehao Yao |
spellingShingle |
Junbiao Ma Ning Jiang Xujun Wang Xiaodong Jia Dehao Yao Numerical Study of the Strength and Characteristics of Sandstone Samples with Combined Double Hole and Double Fissure Defects Sustainability PFC2D uniaxial compression failure modes evolution results of the stress field crack propagation |
author_facet |
Junbiao Ma Ning Jiang Xujun Wang Xiaodong Jia Dehao Yao |
author_sort |
Junbiao Ma |
title |
Numerical Study of the Strength and Characteristics of Sandstone Samples with Combined Double Hole and Double Fissure Defects |
title_short |
Numerical Study of the Strength and Characteristics of Sandstone Samples with Combined Double Hole and Double Fissure Defects |
title_full |
Numerical Study of the Strength and Characteristics of Sandstone Samples with Combined Double Hole and Double Fissure Defects |
title_fullStr |
Numerical Study of the Strength and Characteristics of Sandstone Samples with Combined Double Hole and Double Fissure Defects |
title_full_unstemmed |
Numerical Study of the Strength and Characteristics of Sandstone Samples with Combined Double Hole and Double Fissure Defects |
title_sort |
numerical study of the strength and characteristics of sandstone samples with combined double hole and double fissure defects |
publisher |
MDPI AG |
series |
Sustainability |
issn |
2071-1050 |
publishDate |
2021-06-01 |
description |
To explore the failure mechanism of rock with holes and fissures, uniaxial compression tests of sandstone samples with combined double hole and double fissure defects were carried out using Particle Flow Code 2D (PFC2D) numerical simulation software. The failure behaviour and mechanical properties of the sandstone samples with combined double hole and double fissure defects at different angles were analysed, and the evolution results of the stress field and crack propagation were studied. The results show that with a decrease in fissure angle, the crack initiation stress, damage stress, elastic modulus and peak stress of the defective rock decrease, while the peak strain increases, and the brittleness of the rock is weakened. Rocks with combined double hole and double fissure defects at different angles lead to different failure modes, crack initiation positions and crack development directions. After uniaxial compression, both compressive stress and tensile stress concentration areas are produced in the defective rock, but the compressive stress concentration is of primary importance. The concentration area is mainly distributed around the holes and fissures and the defect connecting line, and the stress concentration area decreases with the decreasing fissure angle. This study can correctly predict the mechanical properties of rock with combined double hole and double fissure defects at different angles and provide a reference for actual rock engineering. |
topic |
PFC2D uniaxial compression failure modes evolution results of the stress field crack propagation |
url |
https://www.mdpi.com/2071-1050/13/13/7090 |
work_keys_str_mv |
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