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Numerical simulation of prefabricated cracked rock under uniaxial compression experiment
Author: WANG Yunfei, MA Yongchao, DONG He Time: 2023-11-10 Counts:

WANG Y F, MA Y C, DONG H.Numerical simulation of prefabricated cracked rock under uniaxial compression experiment[J].Journal of Henan Polytechnic University(Natural Science) ,2023,42(6):157-166.

doi:10.16186/j.cnki.1673-9787.2021100058

Received:2021/10/25

Revised:2021/12/27

Published:2023/11/25

Numerical simulation of prefabricated cracked rock under uniaxial compression experiment

WANG Yunfei, MA Yongchao, DONG He

School of Civil EngineeringHenan Polytechnic UniversityJiaozuo 454000HenanChina

Abstract:In order to study the effects of prefabricated cracks on the mechanical propertiesacoustic emission and energy evolution of rock under uniaxial compressionthe mechanical parameters of PFC2D numerical simulation model were inverse performed in laboratory experimentsand then the effects of different dip angles and lengths of prefabricated cracks on rock properties were analyzed on the basis of numerical simulation.The experimental results show that the peak stress and peak strain of rock increase with the increase of prefabricated crack angleand the elastic modulus and deformation modulus also increase with the increase of prefabricated crack angle.Howeverwhen the length increasedthe peak stresspeak strainelastic modulus and deformation modulus decreased continuously.When the prefabricated crack dip angle was 0°15°30°45°the microcrack count fluctuates greatlyand when the prefabricated crack dip angle was 60°75°90°the microcrack count was stable.At the same timewhen the dip angle of prefabricated crack was 0°15°30°45°60°the airfoil crack is the main crack growthwhile when the dip angle of prefabricated crack is 75°90°there is no airfoil crackbut a large number of micro-cracks appear on the rock mass.Under the action of axial stressthese micro-cracks are gradually connectedresulting in shear failure.When the prefabricated crack angle is0°15°30°45°the internal damage of rock appears earlier than that of 60°75°90°and the elastic storage limit increases with the increase of the prefabricated crack angle.

Key words:prefabricated crack;mechanical property;energy evolution;PFC2D

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