Experimental investigation of the failure mechanism of deep granite under high seepage water pressure and strong unloading effect
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[1] Yi-guo Xue,et al. Damage Characteristics of Granite Under Hydraulic and Cyclic Loading–Unloading Coupling Condition , 2022, Rock Mechanics and Rock Engineering.
[2] Zi-quan Chen,et al. Investigation on the evolution characteristics and transfer mechanism of surrounding rock pressure for a hard-rock tunnel under high geo-stress: case study on the Erlang Mountain Tunnel, China , 2021, Bulletin of Engineering Geology and the Environment.
[3] Chun-chi Ma,et al. Effect of stress paths on failure mechanism and progressive damage of hard-brittle rock , 2021, Journal of Mountain Science.
[4] Xin-li Hu,et al. Mechanical Properties and Permeability Evolution of Red Sandstone Subjected to Hydro-mechanical Coupling: Experiment and Discrete Element Modelling , 2021, Rock Mechanics and Rock Engineering.
[5] Zi-quan Chen,et al. Impacts of geological conditions on instability causes and mechanical behavior of large-scale tunnels: a case study from the Sichuan–Tibet highway, China , 2020, Bulletin of Engineering Geology and the Environment.
[6] Gang Wang,et al. Experimental Study of Mechanical and Permeability Behaviors During the Failure of Sandstone Containing Two Preexisting Fissures Under Triaxial Compression , 2020, Rock Mechanics and Rock Engineering.
[7] Xiating Feng,et al. Experimental Study of Failure Differences in Hard Rock Under True Triaxial Compression , 2019, Rock Mechanics and Rock Engineering.
[8] K. Fukui,et al. Effects of water saturation on the strength and loading-rate dependence of andesite , 2019, International Journal of Rock Mechanics and Mining Sciences.
[9] Xiating Feng,et al. Influence of initial stresses and unloading rates on the deformation and failure mechanism of Jinping marble under true triaxial compression , 2019, International Journal of Rock Mechanics and Mining Sciences.
[10] J. Tejchman,et al. Simulations of hydro-fracking in rock mass at meso-scale using fully coupled DEM/CFD approach , 2019, Acta Geotechnica.
[11] Kwang Yeom Kim,et al. Effect of Water Infiltration, Injection Rate and Anisotropy on Hydraulic Fracturing Behavior of Granite , 2019, Rock Mechanics and Rock Engineering.
[12] Chun-chi Ma,et al. Energy Damage Evolution Mechanism of Rock and Its Application to Brittleness Evaluation , 2018, Rock Mechanics and Rock Engineering.
[13] Keping Zhou,et al. Exploration of damage evolution in marble due to lateral unloading using nuclear magnetic resonance , 2018, Engineering Geology.
[14] Qiang Xu,et al. What we have learned from the 2008 Wenchuan Earthquake and its aftermath: A decade of research and challenges , 2018, Engineering Geology.
[15] Quanle Zou,et al. Response characteristics of coal subjected to coupling static and waterjet impact loads , 2018 .
[16] Yuan Cheng,et al. In Situ Observation of Rock Spalling in the Deep Tunnels of the China Jinping Underground Laboratory (2400 m Depth) , 2018, Rock Mechanics and Rock Engineering.
[17] Tianbin Li,et al. Weakening effects of the presence of water on the brittleness of hard sandstone , 2019, Bulletin of Engineering Geology and the Environment.
[18] Zi-quan Chen,et al. Fracture evolution and energy mechanism of deep-buried carbonaceous slate , 2017 .
[19] Xibing Li,et al. Energy evolution characteristics of hard rock during triaxial failure with different loading and unloading paths , 2017 .
[20] Yilin Fan,et al. In situ experimental investigation of basalt spalling in a large underground powerhouse cavern , 2017 .
[21] Tianbin Li,et al. Geomechanical types and mechanical analyses of rockbursts , 2017 .
[22] M. Gutierrez,et al. Coupled hydro-thermo-mechanical modeling of hydraulic fracturing in quasi-brittle rocks using BPM-DEM , 2017 .
[23] Wenbo Lu,et al. Influence of tunneling methods on the strainburst characteristics during the excavation of deep rock masses , 2016 .
[24] Ru Zhang,et al. Microseismic Monitoring of Strainburst Activities in Deep Tunnels at the Jinping II Hydropower Station, China , 2016, Rock Mechanics and Rock Engineering.
[25] Lanru Jing,et al. Water Pressure Effects on Strength and Deformability of Fractured Rocks Under Low Confining Pressures , 2015, Rock Mechanics and Rock Engineering.
[26] Volker Oye,et al. Experimental investigation of acoustic emissions and their moment tensors in rock during failure , 2014 .
[27] A.P.S. Selvadurai,et al. Computational modelling of crack-induced permeability evolution in granite with dilatant cracks , 2014 .
[28] Da Huang,et al. Conversion of strain energy in Triaxial Unloading Tests on Marble , 2014 .
[29] T. Ishida,et al. The distinct element analysis for hydraulic fracturing in hard rock considering fluid viscosity and particle size distribution , 2011 .
[30] Xia-Ting Feng,et al. Rockburst characteristics and numerical simulation based on a new energy index: a case study of a tunnel at 2,500 m depth , 2010 .
[31] Yun-sheng Wang,et al. Crustal ductile flow and its contribution to tectonic stress in Southwest China , 2009 .
[32] Peng Ruidong,et al. ENERGY MECHANISM OF DEFORMATION AND FAILURE OF ROCK MASSES , 2008 .
[33] An-Zeng Hua,et al. Rock failure due to energy release during unloading and application to underground rock burst control , 2001 .
[34] N. A. Chandler,et al. The progressive fracture of Lac du Bonnet granite , 1994 .