Fracture damage and energy evolution of fissured coal subject to triaxial unloading condition
Zhijie Zhu1
Peng Wang2
Xiaohan Yang3
Jan Nemcik4
Ting Ren4
Laigui Wang2
Jun Han2
Songsong Guan2
1.School of Mining,Liaoning Technical University,Fuxin 123008,Liaoning,China;State Key Laboratory of Coal Mining and Clean Utilization,Beijing,China2.School of Mining,Liaoning Technical University,Fuxin 123008,Liaoning,China3.School of Engineering and Technology,Central Queensland University,Mackay,QLD 4740,Australia4.School of Civil,Mining and Environmental Engineering,University of Wollongong,Wollongong,NSW,Australia
摘要:Fissured coal mass under triaxial unloading condition exhibits higher burst potential than the triaxial loading condition,which poses challenge to safety and productivity of resources extraction and underground space utilization.To compre-hensively understand the mechanism of unloading-induced burst during excavation process,this study investigated the fracture and energy evolution of samples with different fissure types such as single,two parallel,and two coplanar-parallel using PFC2D modelling.Triaxial loading tests were conducted to determine the compressive strengths and other parame-ters.With increase of fissure inclination angle,the triaxial compressive strength decreases for β=0°-30°,and then increase forβ=30°-90°.The strength of samples with two coplanar-parallel fissures is the highest.Fissure can significantly change the distribution of fracture and elastic energy.Secondary cracks were generated starting from both ends of the fissure.Forβ=0°-60°,low elastic strain energy area was produced around the fissure along the loading direction.The elastic strain energy is transferred to the outside of fissures.For β=75°-90°,only a small amount of high elastic strain energy was generated on both sides of the fissure.The fracture expansion under unloading conditions occurred due to tensile stress T caused by unloading differential rebound deformation and the shear stress on the fissure surface.
机标关键词:evolutionsubjectenergydamagecoalconditionfissuredfracture
论文发表日期:2025-04-30
在线出版日期:2025-10-15(本平台首次上网日期,不代表文献的发表时间)
页数:14( 255-268 )
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国际煤炭科学技术学报(英文版)

国际煤炭科学技术学报(英文版)

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ISSN:2095-8293
年,卷(期):2025,12(2)
所属栏目:Research Articles