Rock shear creep modelling: DEM – Rate process theory approach
暂无分享,去创建一个
[1] J. G. Gutiérrez-Ch,et al. DEM simulation of rock creep in tunnels using Rate Process Theory , 2022, Computers and Geotechnics.
[2] X. Fan,et al. Shear rupture behaviors of intact and granulated Wombeyan marble with the flat-jointed model , 2022, Archives of Civil and Mechanical Engineering.
[3] H. Bai,et al. Experimental Study on Shear Stress-Displacement, Creep and Shear Slip Instability Behavior of Rock Fractures , 2021 .
[4] Z. Dongsheng,et al. Creep and Control of the Deep Soft Rock Roadway (DSRR): Insights from Laboratory Testing and Practice in Pingdingshan Mining Area , 2021, Rock Mechanics and Rock Engineering.
[5] B. Jang,et al. Influence of Initial Stress and Deformation States on the Shear Creep Behavior of Rock Discontinuities with Different Joint Roughness Coefficients , 2021, Rock Mechanics and Rock Engineering.
[6] Xibao Rao,et al. Creep Behavior of Asphalt Concrete Core Materials in Embankment Dams under a Stepped Loading Path , 2021 .
[7] Jianfeng Wang,et al. DEM study of creep and stress relaxation behaviors of dense sand , 2021 .
[8] S. Du,et al. Damage evolution characteristics of saw-tooth joint under shear creep condition , 2020 .
[9] R. Jimenez,et al. Discrete element modelling of rock creep behaviour using rate process theory , 2020 .
[10] M. Gutierrez,et al. A time-dependent creep model for rock based on damage mechanics , 2020, Environmental Earth Sciences.
[11] M. Karakus,et al. Creep constitutive model considering the overstress theory with an associative viscoplastic flow rule , 2020 .
[12] S. H. Li,et al. A new model of shear creep and its experimental verification , 2020, Mechanics of Time-Dependent Materials.
[13] K. Duan,et al. In situ creep tests on the long‐term shear behaviors of a fault located at the dam foundation of Dagangshan hydropower station, China , 2019, Energy Science & Engineering.
[14] Brijes Mishra,et al. Numerical Study on the Time-Dependent Behavior of Rock Joints , 2019 .
[15] Ke Ma,et al. The effect of water on the creep behavior of red sandstone , 2019, Engineering Geology.
[16] D. Potyondy. A Flat-Jointed Bonded-Particle Model for Rock , 2018 .
[17] S. Tang,et al. The Influence of Water Saturation on the Short- and Long-Term Mechanical Behavior of Red Sandstone , 2018, Rock Mechanics and Rock Engineering.
[18] C. Jia,et al. Experimental investigation on shear creep properties of undisturbed rock discontinuity in Baihetan Hydropower Station , 2018 .
[19] J. Shao,et al. Effects of relative humidity and mineral compositions on creep deformation and failure of a claystone under compression , 2018 .
[20] Yanhui Han,et al. DEM micromechanical modeling and laboratory experiment on creep behavior of salt rock , 2017 .
[21] X. Mao,et al. Shear creep characteristics and constitutive model of limestone , 2016 .
[22] Qiangyong Zhang,et al. Time-Dependent Behavior of Diabase and a Nonlinear Creep Model , 2014, Rock Mechanics and Rock Engineering.
[23] Philip G. Meredith,et al. Time-dependent cracking and brittle creep in crustal rocks: A review , 2013 .
[24] Qiang Xu,et al. The evolution of rock failure with discontinuities due to shear creep , 2013 .
[25] Philip G. Meredith,et al. Micromechanics of brittle creep in rocks , 2012 .
[26] Hongbo Zhao,et al. Laboratory creep tests for time-dependent properties of a marble in Jinping II hydropower station , 2012 .
[27] C. Serra,et al. Creep of Dam Concrete Evaluated from Laboratory and In Situ Tests , 2012 .
[28] C. Kwok,et al. DEM simulations of thermally activated creep in soils , 2010 .
[29] Frédéric-Victor Donzé,et al. YADE‐OPEN DEM: an open‐source software using a discrete element method to simulate granular material , 2009 .
[30] P. Cundall,et al. A bonded-particle model for rock , 2004 .
[31] James K. Mitchell,et al. New Perspectives on Soil Creep , 1993 .
[32] R. Horvath,et al. Long-term settlement of model rock-socketed piers , 1989 .
[33] Paul Le Comte,et al. Creep in Rock Salt , 1965, The Journal of Geology.
[34] M. Nishihara. Creep of shale and sandy-shale , 1952 .
[35] H. Eyring. Viscosity, Plasticity, and Diffusion as Examples of Absolute Reaction Rates , 1936 .
[36] P. Zeng,et al. Discrete Element Modelling of Rock Creep in Deep Tunnels using Rate Process Theory , 2021 .
[37] J. Shao,et al. Experimental investigation of creep behavior of clastic rock in Xiangjiaba Hydropower Project , 2015 .
[38] D. O. Potyondy,et al. A Flat-Jointed Bonded-Particle Material For Hard Rock , 2012 .
[39] Maurice B. Dusseault,et al. Time-dependent Behavior of Rocks , 1993 .
[40] R. Bowden,et al. Time-Dependent Behaviour Of Joints In Shale , 1984 .
[41] J. Cogan. Triaxial creep tests of Opohonga limestone and Ophir shale , 1976 .
[42] A. Nowick,et al. Quantitative treatment of the creep of metals by dislocation and rate- process theories , 1946 .