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Article

Stability analysis of artificial dam in coal mine underground water reservoir based on the hydro-mechanical damage model

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Article: 2190855 | Received 11 Jan 2023, Accepted 09 Feb 2023, Published online: 20 Mar 2023

References

  • Aker E, Kühn D, Vavryčuk V, Soldal M, Oye V. 2014. Experimental investigation of acoustic emissions and their moment tensors in rock during failure. Int J Rock Mech Min Sci. 70:286–295.
  • Andrés C, Ordóñez A, Álvarez R. 2017. Hydraulic and thermal modelling of an underground mining reservoir. Mine Water Environ. 36(1):24–33.
  • Bi J, Liu P, Gan F. 2020. Effects of the cooling treatment on the dynamic behavior of ordinary concrete exposed to high temperatures. Constr Build Mater. 248:118688.
  • Biot MA. 1956. General solutions of equations of elasticity and consolidation for a porous material. Japplphys. 23:91–96.
  • Gu D, Zhang Y, Cao ZG. 2016. Technical progress of water resource protection and utilization by coal mining in China. Coal Sci Technol. 44(1):1–7.
  • Gu D. 2015. Theory framework and technological system of coal mine underground reservoir. J China Coal Soc. 40(2):239–246.
  • Hu M, Rutqvist J, Wang Y. 2016. A practical model for fluid flow in discrete-fracture porous media by using the numerical manifold method. Adv Water Res. 97:38–51.
  • Hu M, Rutqvist J, Wang Y. 2017. A numerical manifold method model for analyzing fully coupled hydro-mechanical processes in porous rock masses with discrete fractures. Adv Water Resour. 102:111–126.
  • Hu M, Wang Y, Rutqvist J. 2017. Fully coupled hydro-mechanical numerical manifold modeling of porous rock with dominant fractures. Acta Geotech. 12(2):231–252.
  • Krzaczek M, Nitka M, Kozicki J, Tejchman J. 2020. Simulations of hydro-fracking in rock mass at meso-scale using fully coupled DEM/CFD approach. Acta Geotech. 15(2):297–324.
  • Luo T, Fan G, Guo B, Zhang S. 2021. Experimental study on the influence of hydro-chemical erosion on morphology parameters and shear properties of limestone fractures. Acta Geotech. 16(12):3867–3880.
  • Okubo S, Fukui K, Hashiba K. 2010. Long-term creep of water-saturated tuff under uniaxial compression. Int J Rock Mech Min Sci. 47(5):839–844.
  • Scheperboer IC, Suiker ASJ, Bosco E, Clemens FHLR. 2022. A coupled hydro-mechanical model for subsurface erosion with analyses of soil piping and void formation. Acta Geotech. 17(11):4769–4798.
  • Souley M, Homand F, Pepa S, Hoxha D. 2001. Damage-induced permeability changes in granite: a case example at the URL in Canada. Int J Rock Mech Min Sci. 38(2):297–310.
  • Wang B-F, Xing J-C, Liang B, Zhang J. 2020. Experimental study on deformation characteristics of rock and coal under stress-fluid interactions in coal mine underground water reservoir. Energy Sources A: recovery, Util Environ Eff. :1–16.
  • Wang JA, Park HD. 2002. Fluid permeability of sedimentary rocks in a complete stress–strain process. Eng Geol. 63(3–4):291–300.
  • Xu P, Yang S-Q. 2016. Permeability evolution of sandstone under short-term and long-term triaxial compression. Int J Rock Mech Min Sci. 85:152–164.
  • Xu T, Ranjith PG, Wasantha PLP, Zhao J, Tang CA, Zhu WC. 2013. Influence of the geometry of partially-spanning joints on mechanical properties of rock in uniaxial compression. Eng Geol. 167:134–147.
  • Xu T, Tang C, Zhao J, Li L, Heap MJ. 2012. Modelling the time-dependent rheological behaviour of heterogeneous brittle rocks. Geophys J Int. 189(3):1781–1796.
  • Xu T, Tang CA, Yang TH, Zhu WC, Liu J. 2006. Numerical investigation of coal and gas outbursts in underground collieries. Int J Rock Mech Min Sci. 43(6):905–919.
  • Xu T, Zhou G, Heap MJ, Yang S, Konietzky H, Baud P. 2018. The modeling of time-dependent deformation and fracturing of brittle rocks under varying confining and pore pressures. Rock Mech Rock Eng. 51:3241–3263.
  • Yang S-Q, Jing H-W, Cheng L. 2014. Influences of pore pressure on short-term and creep mechanical behavior of red sandstone. Eng Geol. 179:10–23.
  • Yang Y, Tang X, Zheng H, Liu Q, Liu Z. 2018. Hydraulic fracturing modeling using the enriched numerical manifold method. Appl Math Modell. 53:462–486.
  • Yao Q, Tang C, Xia Z, Liu X, Zhu L, Chong Z, Hui X. 2020. Mechanisms of failure in coal samples from underground water reservoir. Eng Geol. 267:105494.
  • Zhang C, Wang F, Bai Q. 2021. Underground space utilization of coalmines in China: a review of underground water reservoir construction. Tunn Undergr Space Technol. 107:103657.
  • Zhang F, Wang T, Liu F, Peng M, Bate B, Wang P. 2022. Hydro-mechanical coupled analysis of near-wellbore fines migration from unconsolidated reservoirs. Acta Geotech. 17(8):3535–3551.
  • Zhang G, Li X, Li H. 2015. Simulation of hydraulic fracture utilizing numerical manifold method. Sci China Technol Sci. 58(9):1542–1557.
  • Zhang Q-H, Lin S-Z, Xie Z-Q, Su H-D. 2016. Fractured porous medium flow analysis using numerical manifold method with independent covers. J Hydrol. 542:790–808.
  • Zhao JS, Chen BR, Jiang Q, et al. 2022. Microseismic monitoring of rock mass fracture response to blasting excavation of large underground caverns under high geostress. Rock Mech Rock Eng. 50:733–750.
  • Zhao J-S, Jiang Q, Lu J-F, Chen B-R, Pei S-F, Wang Z-L. 2022. Rock fracturing observation based on microseismic monitoring and borehole imaging: in situ investigation in a large underground cavern under high geostress. Tunn Undergr Space Technol. 126:104549.
  • Zhou G-l, Xu T, Heap MJ, Meredith PG, Mitchell TM, Sesnic AS-Y, Yuan Y. 2020. A three-dimensional numerical meso-approach to modeling time-independent deformation and fracturing of brittle rocks. Comput Geotech. 117:103274.
  • Zhu WC, Wei J, Zhao J, Niu LL. 2014. 2D numerical simulation on excavation damaged zone induced by dynamic stress redistribution. Tunn Undergr Space Technol. 43:315–326.