Precise Distinction of Mechanical Behavior Stages of Coal Under Temperature-Pressure Constraints and its Permeability and Energy Consumption Characteristics
暂无分享,去创建一个
Hewei Zhang | Lei Du | Xiuming Jiang | Jian Shen | J. Tao | Kexin Li | Rendong Wen
[1] Diyuan Li,et al. Mechanical behavior and permeability evolution of sandstone with confining pressure after dynamic loading , 2021, Geomechanics and Geophysics for Geo-Energy and Geo-Resources.
[2] Hao Li,et al. Experimental Study on Triaxial Unloading Failure of Deep Composite Coal-Rock , 2021 .
[3] Liang Zhang,et al. Acoustic emission, damage and cracking evolution of intact coal under compressive loads: Experimental and discrete element modelling , 2021, Engineering Fracture Mechanics.
[4] Jiang Xu,et al. A Novel Damage-Based Permeability Model for Coal in the Compaction and Fracturing Process Under Different Temperature Conditions , 2020, Rock Mechanics and Rock Engineering.
[5] Liang Zhang,et al. A Theoretical and Experimental Study of Stress–Strain, Creep and Failure Mechanisms of Intact Coal , 2020, Rock Mechanics and Rock Engineering.
[6] D. Elsworth,et al. Dual-damage constitutive model to define thermal damage in rock , 2020 .
[7] L. Xiong,et al. Effects of High Temperatures and Loading Rates on the Splitting Tensile Strength of Jointed Rock Mass , 2019, Geotechnical and Geological Engineering.
[8] F. Gao,et al. A three-parameter permeability model for the cracking process of fractured rocks under temperature change and external loading , 2019, International Journal of Rock Mechanics and Mining Sciences.
[9] F. Du,et al. Coal Damage and Permeability Characteristics Under Accelerated Unloading Confining Pressure , 2019, Geotechnical and Geological Engineering.
[10] D. Elsworth,et al. Reassessment of coal permeability evolution using steady-state flow methods: The role of flow regime transition , 2019, International Journal of Coal Geology.
[11] Zhanyou Sa,et al. Damage‐induced permeability model of coal and its application to gas predrainage in combination of soft coal and hard coal , 2019, Energy Science & Engineering.
[12] Jian Shen,et al. Resources and geology of coalbed methane in China: a review , 2018, Coal Geology of China.
[13] Murat Karakus,et al. A coupled thermo-mechanical damage model for granite , 2018 .
[14] Chunshan Zheng,et al. Role of multi-seam interaction on gas drainage engineering design for mining safety and environmental benefits: Linking coal damage to permeability variation , 2018 .
[15] Ren-shu Yang,et al. Study of the dynamic fracture characteristics of coal with a bedding structure based on the NSCB impact test , 2017 .
[16] Rick Chalaturnyk,et al. Influence of High Pressure and Temperature on the Mechanical Behavior and Permeability of a Fractured Coal , 2017 .
[17] Feng Chen,et al. Variation of Coal Permeability under Dehydrating and Heating: A Case Study of Ulanqab Lignite for Underground Coal Gasification , 2014 .
[18] Hongpu Kang,et al. Support technologies for deep and complex roadways in underground coal mines: a review , 2014 .
[19] Hua Guo,et al. Measurement of Longwall Mining Induced Strata Permeability , 2014, Geotechnical and Geological Engineering.
[20] G. Yin,et al. Combined Effect of Stress, Pore Pressure and Temperature on Methane Permeability in Anthracite Coal: An Experimental Study , 2013, Transport in Porous Media.
[21] Yang Ju,et al. Energy analysis and criteria for structural failure of rocks , 2009 .
[22] S. Chaki,et al. Influence of thermal damage on physical properties of a granite rock: Porosity, permeability and ultrasonic wave evolutions , 2008 .
[23] Durgesh C. Rai,et al. Stress-Strain Characteristics of Clay Brick Masonry under Uniaxial Compression , 2007 .
[24] K. Seshagiri Rao,et al. Post failure behaviour of a rock mass under the influence of triaxial and true triaxial confinement , 2006 .
[25] Ming Cai,et al. Generalized crack initiation and crack damage stress thresholds of brittle rock masses near underground excavations , 2004 .
[26] Françoise Homand,et al. Damage-induced permeability changes in granite: a case example at the URL in Canada , 2001 .
[27] J. B. Walsh,et al. Permeability of granite under high pressure , 1968 .
[28] Z. T. Bieniawski,et al. Mechanism of brittle fracture of rockPart Itheory of the fracture process , 1967 .
[29] H. C. Heard. Chapter 7: Transition from Brittle Fracture to Ductile Flow in Solenhofen Limestone as a Function of Temperature, Confining Pressure, and Interstitial Fluid Pressure , 1960 .
[30] Fei Li,et al. Research on nonlinear damage hardening creep model of soft surrounding rock under the stress of deep coal resources mining , 2022, Energy Reports.
[31] Jiang Xu,et al. Experimental study on damage and the permeability evolution process of methane-containing coal under different temperature conditions , 2020 .
[32] Yanan Gao,et al. Crack closure and initiation stresses of coal subjected to thermo-gas-mechanical coupling , 2017 .
[33] C. Resources. Three-phase gas content model of deep low-rank coals and its implication for CBM exploration:A case study from the Jurassic coal in the Junggar Basin , 2015 .
[34] Xie Hepin,et al. RESEARCH AND DEVELOPMENT OF ROCK MECHANICS IN DEEP GROUND ENGINEERING , 2015 .
[35] Wang Lei. EXPERIMENTAL RESEARCH ON INFLUENCE OF TEMPERATURE ON MECHANICAL PROPERTIES OF COAL CONTAINING METHANE , 2011 .
[36] Long Qing-ming. Experiment Study of Coal Permeability Under Different Temperature and Stress , 2009 .