The Stress Sensitivity and Porosity Sensitivity of Coal Permeability at Different Depths: A Case Study in the Pingdingshan Mining Area
暂无分享,去创建一个
Shiyong Wu | Ru Zhang | Zhaopeng Zhang | Zetian Zhang | J. Xie | Jianhui Deng | Jing Xie
[1] Heping Xie,et al. Fractals in Rock Mechanics , 2020 .
[2] B. Lin,et al. Impact of matrix–fracture interactions on coal permeability: Model development and analysis , 2017 .
[3] Heping Xie,et al. An anisotropic coal permeability model that considers mining-induced stress evolution, microfracture propagation and gas sorption-desorption effects , 2017 .
[4] Hao Xu,et al. Experimental study on permeability stress sensitivity of reconstituted granular coal with different lithotypes , 2017 .
[5] F. Gao,et al. Experimental study on CH4 permeability and its dependence on interior fracture networks of fractured coal under different excavation stress paths , 2017 .
[6] Weize Wu,et al. Catalytic oxidation of lignite to carboxylic acids by molecular oxygen in an aqueous FeCl3 solution , 2017 .
[7] Yang Ju,et al. Groundbreaking theoretical and technical conceptualization of fluidized mining of deep underground solid mineral resources , 2017 .
[8] Tao Gao,et al. Investigation of the temperature effect on rock permeability sensitivity , 2017 .
[9] S. Iglauer,et al. Multi-scale x-ray computed tomography analysis of coal microstructure and permeability changes as a function of effective stress , 2016 .
[10] Zenghua Li,et al. Improved Porosity and Permeability Models with Coal Matrix Block Deformation Effect , 2016, Rock Mechanics and Rock Engineering.
[11] Heping Xie,et al. Mining-Induced Coal Permeability Change Under Different Mining Layouts , 2016, Rock Mechanics and Rock Engineering.
[12] Mingzhong Gao,et al. Fractal analysis of acoustic emission during uniaxial and triaxial loading of rock , 2015 .
[13] Zhiping Li,et al. Experimental study on porosity and permeability of anthracite coal under different stresses , 2015 .
[14] Mingzhong Gao,et al. The relationships among stress, effective porosity and permeability of coal considering the distribution of natural fractures: theoretical and experimental analyses , 2015, Environmental Earth Sciences.
[15] Hao Xu,et al. Experimental research on coal permeability: The roles of effective stress and gas slippage , 2014 .
[16] Yuanping Cheng,et al. A sequential approach to control gas for the extraction of multi-gassy coal seams from traditional gas well drainage to mining-induced stress relief , 2014 .
[17] Yuanping Cheng,et al. Permeability distribution characteristics of protected coal seams during unloading of the coal body , 2014 .
[18] Zang Jie,et al. Anisotropic permeability evolution of coal with effective stress variation and gas sorption: Model development and analysis , 2014 .
[19] Sevket Durucan,et al. How gas adsorption and swelling affects permeability of coal: A new modelling approach for analysing laboratory test data , 2014 .
[20] Kan Jin,et al. Impact of Effective Stress and Matrix Deformation on the Coal Fracture Permeability , 2014, Transport in Porous Media.
[21] Zhaoping Meng,et al. Experimental research on the permeability of high-rank coal under a varying stress and its influencing factors , 2013 .
[22] Junjian Wang,et al. Stress sensitivity of coal samples in terms of anisotropy , 2013 .
[23] L. Klinkenberg. The Permeability Of Porous Media To Liquids And Gases , 2012 .
[24] Luke D. Connell,et al. Influence of the effective stress coefficient and sorption-induced strain on the evolution of coal permeability: Model development and analysis , 2012 .
[25] Xiexing Miao,et al. Evolution of coal permeability from stress-controlled to displacement-controlled swelling conditions , 2011 .
[26] Yaodong Jiang,et al. Impact of transition from local swelling to macro swelling on the evolution of coal permeability , 2011 .
[27] Luke D. Connell,et al. Effect of the effective stress coefficient and sorption-induced strain on the evolution of coal permeability: Experimental observations , 2011 .
[28] Derek Elsworth,et al. Permeability evolution in fractured coal: The roles of fracture geometry and water-content , 2011 .
[29] Pathegama Gamage Ranjith,et al. Effects of effective stress changes on permeability of latrobe valley brown coal , 2011 .
[30] R. Chalaturnyk,et al. Permeability and porosity models considering anisotropy and discontinuity of coalbeds and application in coupled simulation , 2010 .
[31] R. Marc Bustin,et al. Volumetric strain associated with methane desorption and its impact on coalbed gas production from deep coal seams , 2005 .
[32] J. Olson,et al. Characteristics and origins of coal cleat: A review , 1998 .
[33] A. C. Bumb,et al. Stress-Dependent Permeability and Porosity of Coal and Other Geologic Formations , 1988 .
[34] Robert W. Zimmerman,et al. Compressibility of porous rocks , 1986 .
[35] S. Durucan,et al. The effects of stress and fracturing on permeability of coal , 1986 .
[36] T. D. van Golf-Racht,et al. Fundamentals of fractured reservoir engineering , 1982 .
[37] W. W. Owens,et al. A Laboratory Study of Low-Permeability Gas Sands , 1980 .
[38] J. S. Y. Wang,et al. Validity of cubic law for fluid flow in a deformable rock fracture. Technical information report No. 23 , 1979 .
[39] W. H. Somerton,et al. Effect of stress on permeability of coal , 1975 .
[40] E. E. Miller,et al. The Effect of Decrease in Porosity with Depth on Future Development of Oil and Gas Reserves in South Louisiana: ABSTRACT , 1965 .
[41] J. B. Walsh. The effect of cracks on the compressibility of rock , 1965 .
[42] J. Archard. Elastic deformation and the laws of friction , 1957, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[43] M. Biot. THEORY OF ELASTICITY AND CONSOLIDATION FOR A POROUS ANISOTROPIC SOLID , 1955 .
[44] K. Terzaghi. Theoretical Soil Mechanics , 1943 .
[45] Ting Liu,et al. A novel ECBM extraction technology based on the integration of hydraulic slotting and hydraulic fracturing , 2015 .
[46] Meng Zhao-pin,et al. Productivity model of CBM wells considering the stress sensitivity and its application analysis , 2014 .
[47] Zhaoping Meng,et al. In-situ stress, pore pressure and stress-dependent permeability in the Southern Qinshui Basin , 2011 .
[48] Zhang Yong,et al. Mining-induced mechanical behavior in coal seams under different mining layouts , 2011 .
[49] Peng Jian-chun,et al. THE RELATIONSHIP BETWEEN STRESS - SENSITIVITY PERMEABILITY AND STARTING PRESSURE GRADIENT OF RESERVOIR , 2005 .
[50] M. A. Barakat,et al. The change in effective stress associated with shrinkage from gas desorption in coal , 2001 .
[51] C. Ying. THE STRESS SENSITIVITY AND THE EVALUATING METHOD OF LOW PERMEABILITY GAS RESERVOIRS , 2001 .
[52] B. Bhushan,et al. Fractal Model of Elastic-Plastic Contact Between Rough Surfaces , 1991 .
[53] S. C. Jones. Using the Inertial Coefficient, B, To Characterize Heterogeneity in Reservoir Rock , 1987 .
[54] Charles W. Byrer,et al. Relationship of Methane Content of Coal Rank and Depth: Theoretical vs. Observed , 1982 .
[55] M. Biot,et al. THE ELASTIC COEFFICIENTS OF THE THEORY OF CONSOLIDATION , 1957 .