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Erschienen in: Geotechnical and Geological Engineering 6/2020

19.06.2020 | Original Paper

Effects of the Deviatoric Stress Ratio on the Coal Failure and Permeability During Deep Mining

verfasst von: Chao Xu, Qiang Fu, Kai Wang, Chaofei Guo, Xiaofang Li

Erschienen in: Geotechnical and Geological Engineering | Ausgabe 6/2020

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Abstract

Practices show that the triaxial stress change of mining-disturbed coal deeply affects its failure and permeability characteristics and easily cause the coal and rock dynamic disasters during deep underground mining process. The combined mechanic-damage-permeability experiments of gas-bearing coal were carried out under the mechanical paths of conventional triaxial compression (CTC), fixing axial pressure and unloading confining pressure (FAPUCP) and loading axial pressure and unloading confining pressure (LAPUCP). Then the effects of the deviatoric stress ratio (DSR) on the damage and permeability characteristics of coal were analyzed. The results proved that the distinguishing deformation and strength characteristics of coal were showed due to the different mechanical paths and the coal specimens were converted from brittle deformation to plastic deformation with the effect of higher confining pressure. The coal specimens of the three mechanical paths generated the main shear failure, tensile-shear failure and ‘X’ conjugate shear failure, respectively, and the fracture angles decreased in order. The damage and permeability of coal specimens could be more and more severe in the order of CTC, FAPUCP and LAPUCP paths, which was due to the different DSR. Thus, the deep mining-disturbed coal of lager DSR is seriously prone to cause the coal and rock dynamic disasters. The corresponding measures should be taken to reduce the DSR of mining-disturbed coal and then avoid the dynamic disasters.

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Literatur
Zurück zum Zitat Cai Y et al (2014) Permeability evolution in fractured coal—combining triaxial confinement with X-ray computed tomography, acoustic emission and ultrasonic techniques. Int J Coal Geol 122:91–104CrossRef Cai Y et al (2014) Permeability evolution in fractured coal—combining triaxial confinement with X-ray computed tomography, acoustic emission and ultrasonic techniques. Int J Coal Geol 122:91–104CrossRef
Zurück zum Zitat Chen H, Cheng Y, Zhou H, Li W (2013) Damage and permeability development in coal during unloading. Rock Mech Rock Eng 46:1377–1390CrossRef Chen H, Cheng Y, Zhou H, Li W (2013) Damage and permeability development in coal during unloading. Rock Mech Rock Eng 46:1377–1390CrossRef
Zurück zum Zitat Chen H, Cheng Y, Ren T, Zhou H, Liu Q (2014) Permeability distribution characteristics of protected coal seams during unloading of the coal body International. J Rock Mech Min Sci 71:105–116CrossRef Chen H, Cheng Y, Ren T, Zhou H, Liu Q (2014) Permeability distribution characteristics of protected coal seams during unloading of the coal body International. J Rock Mech Min Sci 71:105–116CrossRef
Zurück zum Zitat Cheng J, Cheng W, Zhang S (2012) Methods to determine the mine gas explosibility-An overview. J Loss Prevent Proc 25:425–435CrossRef Cheng J, Cheng W, Zhang S (2012) Methods to determine the mine gas explosibility-An overview. J Loss Prevent Proc 25:425–435CrossRef
Zurück zum Zitat Hashiba K, Okubo S, Fukui K (2006) A new testing method for investigating the loading rate dependency of peak and residual rock strength. Int J Rock Mech Min Sci 43:894–904CrossRef Hashiba K, Okubo S, Fukui K (2006) A new testing method for investigating the loading rate dependency of peak and residual rock strength. Int J Rock Mech Min Sci 43:894–904CrossRef
Zurück zum Zitat Huang B, Liu J (2013) The effect of loading rate on the behavior of samples composed of coal and rock. Int J Rock Mech Min Sci 61:23–30CrossRef Huang B, Liu J (2013) The effect of loading rate on the behavior of samples composed of coal and rock. Int J Rock Mech Min Sci 61:23–30CrossRef
Zurück zum Zitat Jasinge D, Ranjith PG, Choi SK, Kodikara J, Arthur M, Li H (2009) Mechanical properties of reconstituted Australian black coal. J Geotech Geoenviron 135:980–985CrossRef Jasinge D, Ranjith PG, Choi SK, Kodikara J, Arthur M, Li H (2009) Mechanical properties of reconstituted Australian black coal. J Geotech Geoenviron 135:980–985CrossRef
Zurück zum Zitat Jiang C et al (2017) Experimental study on seepage properties, AE characteristics and energy dissipation of coal under tiered cyclic loading. Eng Geol 221:114–123CrossRef Jiang C et al (2017) Experimental study on seepage properties, AE characteristics and energy dissipation of coal under tiered cyclic loading. Eng Geol 221:114–123CrossRef
Zurück zum Zitat Kong S, Cheng Y, Ren T, Liu H (2014) A sequential approach to control gas for the extraction of multi-gassy coal seams from traditional gas well drainage to mining-induced stress relief. Appl Energ 131:67–78CrossRef Kong S, Cheng Y, Ren T, Liu H (2014) A sequential approach to control gas for the extraction of multi-gassy coal seams from traditional gas well drainage to mining-induced stress relief. Appl Energ 131:67–78CrossRef
Zurück zum Zitat Li W et al (2015) Addressing the CO2 emissions of the world's largest coal producer and consumer: Lessons from the Haishiwan Coalfield, China. Energy 80:400–413CrossRef Li W et al (2015) Addressing the CO2 emissions of the world's largest coal producer and consumer: Lessons from the Haishiwan Coalfield, China. Energy 80:400–413CrossRef
Zurück zum Zitat Li M, Cao J, Li W (2016) Stress and damage induced gas flow pattern and permeability variation of coal from Songzao Coalfield in Southwest China. Energies 9:351CrossRef Li M, Cao J, Li W (2016) Stress and damage induced gas flow pattern and permeability variation of coal from Songzao Coalfield in Southwest China. Energies 9:351CrossRef
Zurück zum Zitat Lu S, Cheng Y, Li W (2016) Model development and analysis of the evolution of coal permeability under different boundary conditions. J Nat Gas Sci Eng 31:129–138CrossRef Lu S, Cheng Y, Li W (2016) Model development and analysis of the evolution of coal permeability under different boundary conditions. J Nat Gas Sci Eng 31:129–138CrossRef
Zurück zum Zitat Lu S, Li L, Cheng Y, Sa Z, Zhang Y, Yang N (2017) Mechanical failure mechanisms and forms of normal and deformed coal combination containing gas: model development and analysis. Eng Fail Anal 80:241–252CrossRef Lu S, Li L, Cheng Y, Sa Z, Zhang Y, Yang N (2017) Mechanical failure mechanisms and forms of normal and deformed coal combination containing gas: model development and analysis. Eng Fail Anal 80:241–252CrossRef
Zurück zum Zitat Lu S, Zhang Y, Sa Z, Si S (2019a) Evaluation of the effect of adsorbed gas and free gas on mechanical properties of coal. Environ Earth Sci 78:218CrossRef Lu S, Zhang Y, Sa Z, Si S (2019a) Evaluation of the effect of adsorbed gas and free gas on mechanical properties of coal. Environ Earth Sci 78:218CrossRef
Zurück zum Zitat Lu S, Zhang Y, Sa Z, Si S, Shu L, Wang L (2019b) Damage-induced permeability model of coal and its application to gas predrainage in combination of soft coal and hard coal. Energy Sci Eng 7(4):1352–1367 CrossRef Lu S, Zhang Y, Sa Z, Si S, Shu L, Wang L (2019b) Damage-induced permeability model of coal and its application to gas predrainage in combination of soft coal and hard coal. Energy Sci Eng 7(4):1352–1367 CrossRef
Zurück zum Zitat Medhurst TP, Brown ET (1998) A study of the mechanical behaviour of coal for pillar design. Int J Rock Mech Min Sci 35:1087–1105CrossRef Medhurst TP, Brown ET (1998) A study of the mechanical behaviour of coal for pillar design. Int J Rock Mech Min Sci 35:1087–1105CrossRef
Zurück zum Zitat Ma N, Li J, Zhao Z (2015) Distribution of the deviatoric stress field and plastic zone in circular roadway surrounding rock. J China Univ Min Technol 44(2):206–213 Ma N, Li J, Zhao Z (2015) Distribution of the deviatoric stress field and plastic zone in circular roadway surrounding rock. J China Univ Min Technol 44(2):206–213
Zurück zum Zitat Pan R, Cheng Y, Yuan L, Yu M, Dong J (2014) Effect of bedding structural diversity of coal on permeability evolution and gas disasters control with coal mining. Nat Hazards 73:531–546CrossRef Pan R, Cheng Y, Yuan L, Yu M, Dong J (2014) Effect of bedding structural diversity of coal on permeability evolution and gas disasters control with coal mining. Nat Hazards 73:531–546CrossRef
Zurück zum Zitat Thornton C, Zhang L (2010) On the evolution of stress and microstructure during general 3D deviatoric straining of granular media. Géotechnique 60:333–341CrossRef Thornton C, Zhang L (2010) On the evolution of stress and microstructure during general 3D deviatoric straining of granular media. Géotechnique 60:333–341CrossRef
Zurück zum Zitat Wang Z, Luo Y, Guo H, Tian H (2012) Effects of initial deviatoric stress ratios on dynamic shear modulus and damping ratio of undisturbed loess in China. Eng Geol 143–144:43–50CrossRef Wang Z, Luo Y, Guo H, Tian H (2012) Effects of initial deviatoric stress ratios on dynamic shear modulus and damping ratio of undisturbed loess in China. Eng Geol 143–144:43–50CrossRef
Zurück zum Zitat Wang S, Elsworth D, Liu J (2013) Permeability evolution during progressive deformation of intact coal and implications for instability in underground coal seams. Int J Rock Mech Min Sci 58:34–45CrossRef Wang S, Elsworth D, Liu J (2013) Permeability evolution during progressive deformation of intact coal and implications for instability in underground coal seams. Int J Rock Mech Min Sci 58:34–45CrossRef
Zurück zum Zitat Xie H, Ju Y, Gao F, Gao M, Zhang R (2017) Groundbreaking theoretical and technical conceptualization of fluidized mining of deep underground solid mineral resources. Tunn Undergr Space Technol 67:68–70CrossRef Xie H, Ju Y, Gao F, Gao M, Zhang R (2017) Groundbreaking theoretical and technical conceptualization of fluidized mining of deep underground solid mineral resources. Tunn Undergr Space Technol 67:68–70CrossRef
Zurück zum Zitat Xu P, Yang S (2016) Permeability evolution of sandstone under short-term and long-term triaxial compression. Int J Rock Mech Min Sci 85:152–164CrossRef Xu P, Yang S (2016) Permeability evolution of sandstone under short-term and long-term triaxial compression. Int J Rock Mech Min Sci 85:152–164CrossRef
Zurück zum Zitat Xu C, Cheng Y, Ren T, Wang L, Kong S, Lu S (2014) Gas ejection accident analysis in bed splitting under igneous sills and the associated control technologies: a case study in the Yangliu Mine, Huaibei Coalfield, China. Nat Hazards 71:109–134CrossRef Xu C, Cheng Y, Ren T, Wang L, Kong S, Lu S (2014) Gas ejection accident analysis in bed splitting under igneous sills and the associated control technologies: a case study in the Yangliu Mine, Huaibei Coalfield, China. Nat Hazards 71:109–134CrossRef
Zurück zum Zitat Xu C, Yuan L, Cheng Y, Wang K, Zhou A (2016) Square-form structure failure model of mining-affected hard rock strata: theoretical derivation, application and verification. Environ Earth Sci 75:1180CrossRef Xu C, Yuan L, Cheng Y, Wang K, Zhou A (2016) Square-form structure failure model of mining-affected hard rock strata: theoretical derivation, application and verification. Environ Earth Sci 75:1180CrossRef
Zurück zum Zitat Xu C, Fu Q, Cui X, Wang K, Zhao Y, Cai Y (2019) Apparent-depth effects of the dynamic failure of thick hard rock strata on the underlying coal mass during underground mining. Rock Mech Rock Eng 52:1565–1576CrossRef Xu C, Fu Q, Cui X, Wang K, Zhao Y, Cai Y (2019) Apparent-depth effects of the dynamic failure of thick hard rock strata on the underlying coal mass during underground mining. Rock Mech Rock Eng 52:1565–1576CrossRef
Zurück zum Zitat Xue Y et al (2017) Mechanical behaviour and permeability evolution of gas-containing coal from unloading confining pressure tests. J Nat Gas Sci Eng 40:336–346CrossRef Xue Y et al (2017) Mechanical behaviour and permeability evolution of gas-containing coal from unloading confining pressure tests. J Nat Gas Sci Eng 40:336–346CrossRef
Zurück zum Zitat Xue Y, Gao F, Liu X (2015) Effect of damage evolution of coal on permeability variation and analysis of gas outburst hazard with coal mining. Nat Hazards 79:999–1013CrossRef Xue Y, Gao F, Liu X (2015) Effect of damage evolution of coal on permeability variation and analysis of gas outburst hazard with coal mining. Nat Hazards 79:999–1013CrossRef
Zurück zum Zitat Yin G, Jiang C, Wang JG, Xu J (2013) Combined effect of stress, pore pressure and temperature on methane permeability in anthracite coal: an experimental study. Transport Porous Med 100:1–16CrossRef Yin G, Jiang C, Wang JG, Xu J (2013) Combined effect of stress, pore pressure and temperature on methane permeability in anthracite coal: an experimental study. Transport Porous Med 100:1–16CrossRef
Zurück zum Zitat Zhang Q, Fan X, Liang Y, Li M, Li G, Ma T, Nie W (2017a) Mechanical behavior and permeability evolution of reconstituted coal samples under various unloading confining pressures—implications for wellbore stability analysis. Energies 10:292CrossRef Zhang Q, Fan X, Liang Y, Li M, Li G, Ma T, Nie W (2017a) Mechanical behavior and permeability evolution of reconstituted coal samples under various unloading confining pressures—implications for wellbore stability analysis. Energies 10:292CrossRef
Zurück zum Zitat Zhang X, Zhang D, Leo C, Yin G, Feng D, Liyanapathirana DS (2017b) Damage evolution and post-peak gas permeability of raw coal under loading and unloading conditions. Transport Porous Med 117:465–480CrossRef Zhang X, Zhang D, Leo C, Yin G, Feng D, Liyanapathirana DS (2017b) Damage evolution and post-peak gas permeability of raw coal under loading and unloading conditions. Transport Porous Med 117:465–480CrossRef
Zurück zum Zitat Zhao XG et al (2014) Influence of unloading rate on the strainburst characteristics of Beishan granite under true-triaxial unloading conditions. Rock Mech Rock Eng 47:467–483CrossRef Zhao XG et al (2014) Influence of unloading rate on the strainburst characteristics of Beishan granite under true-triaxial unloading conditions. Rock Mech Rock Eng 47:467–483CrossRef
Zurück zum Zitat Zhu WC, Wei CH, Li S, Wei J, Zhang MS (2013) Numerical modeling on destress blasting in coal seam for enhancing gas drainage. Int J Rock Mech Min 59:179–190CrossRef Zhu WC, Wei CH, Li S, Wei J, Zhang MS (2013) Numerical modeling on destress blasting in coal seam for enhancing gas drainage. Int J Rock Mech Min 59:179–190CrossRef
Metadaten
Titel
Effects of the Deviatoric Stress Ratio on the Coal Failure and Permeability During Deep Mining
verfasst von
Chao Xu
Qiang Fu
Kai Wang
Chaofei Guo
Xiaofang Li
Publikationsdatum
19.06.2020
Verlag
Springer International Publishing
Erschienen in
Geotechnical and Geological Engineering / Ausgabe 6/2020
Print ISSN: 0960-3182
Elektronische ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-020-01417-z

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