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Articles

Water outbursts in underground mining with steeply dipping coal seams: numerical simulations based on a mining case

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Pages 511-535 | Received 26 Oct 2013, Accepted 07 Jan 2014, Published online: 31 Jan 2014

References

  • Alejano, L. R., Ramı́rez-Oyanguren, P., & Taboada, J. (1999). FDM predictive methodology for subsidence due to flat and inclined coal seam mining. International Journal of Rock Mechanics and Mining Sciences, 36, 475–491.
  • Álvarez-Fernández, M. I., González-Nicieza, C., Menéndez-Díaz, A., & Álvarez-Vigil, A. E. (2005). Generalization of the n–k influence function to predict mining subsidence. Engineering Geology, 80, 1–36.
  • Biot, M. A. (1941). General theory of three-dimensional consolidation. Journal of Applied Physics, 12, 155–164.
  • Brady, B. H. G., & Brown, E. T. (2004). Rock mechanics for underground mining (3rd ed.). Dordrecht: Springer.
  • Cui, X. M., Miao, X. X., Wang, J. A., & Yang, S. (2000). Improved prediction of differential subsidence caused by underground mining. International Journal of Rock Mechanics and Mining Sciences, 37, 615–627.
  • Dai, H. Y., Wang, J. Z., Cai, M. F., Wu, L. X., & Guo, Z. Z. (2002). Seam dip angle based mining subsidence model and its application. International Journal of Rock Mechanics & Mining Sciences, 39, 115–123.
  • Fang, Z., & Harrison, J. P. (2002). Development of a local degradation approach to the modelling of brittle fracture in heterogeneous rocks. International Journal of Rock Mechanics and Mining Sciences, 39, 443–457.
  • Guo, G. L., Zha, J. F., Miao, X. X., Wang, Q., & Zhang, X. N. (2009). Similar material and numerical simulation of strata movement laws with long wall fully mechanized gangue backfilling. Procedia Earth and Planetary Science, 1, 1089–1094.
  • Karfakis, M. G., Bowman, C. H., & Topuz, E. (1996). Characterization of coal-mine refuse as backfilling material. Geotechnical and Geological Engineering, 14, 129–150.
  • Karmis, M., Agioutantis, Z., & Jarosz, A. (1990). Subsidence prediction techniques in the United States: A state-of-the-art review. Mineral Resources Engineering, 3, 197–210.
  • Kennett, B. L. N. (1983). Seismic wave propagation in stratified media. London: Cambridge University Press.
  • Leventhal, A. R., & de Ambrosis, L. P. (1985). Waste disposal in coal mining – A geotechnical analysis. Engineering Geology, 22, 83–96.
  • Li, Y. M., Liu, C. Y., Li, X. M., & Zhang, N. B. (2010). Roof control effect for gangue backfilling of goaf in thin steeply inclined seam under water body. Journal of China Coal Society, 35, 1419–1424 (in Chinese).
  • Li, Y. M., Liu, C. Y., Zou, X. Z., & Chen, L. C. (2011). Determination and application of reasonable parameters of cemented backfilling mining technology in thin steeply inclined seam. Journal of China Coal Society, 36, 7–12 (in Chinese).
  • Li, L. C., Tang, C. A., Li, G., & Wang, S. Y. (2012). Numerical simulation of 3D hydraulic fracturing based on an improved flow-stress-damage model and a parallel FEM technique. Rock Mechanics & Rock Engineering, 45, 801–818.
  • Li, L. C., Tang, C. A., & Wang, S. Y. (2013). A coupled thermo-hydrologic-mechanical damage model and associated application in a stability analysis on a rock pillar. Tunnelling and Underground Space Technology, 34, 38–53.
  • Li, L. C., Tang, C. A., & Zhu, W. C. (2009). Numerical analysis of slope stability based on the gravity increase method. Computers and Geotechnics, 36, 1246–1258.
  • Li, L. C., Yang, T. H., Liang, Z. Z., & Tang, C. A. (2011). Numerical investigation of groundwater outbursts near faults in underground coal mines. International Journal of Coal Geology, 85, 276–288.
  • Li, S. P., & Wu, D. X. (1997). Effect of confining pressure, pore pressure and specimen dimension on permeability of Yinzhuang sandstone. International Journal of Rock Mechanics & Mining Sciences, 34, 435–441.
  • Liu, H. Y., Roquete, M., Kou, S. Q., & Lindqvist, P. A. (2004). Characterization of rock heterogeneity and numerical verification. Engineering Geology, 72, 89–119.
  • Liu, X. L., & Wang, S. Y. (2012). Mine water inrush forecasting during the mining under waters. Disaster Advances, 5, 876–881.
  • Liu, X. L., Wang, S. J., & Wang, E. Z. (2011). A study on the uplift mechanism of Tongjiezi dam using a coupled hydro-mechanical model. Engineering Geology, 117, 134–150.
  • McClintock, F. A., & Argon, A. S. (1966). Mechanical behavior of materials (p. 770). Reading, MA: Addison-Wesley.
  • Miao, X. X., Cui, X. M., Wang, J. A., & Xu, J. L. (2011). The height of fractured water-conducting zone in undermined rock strata. Engineering Geology, 120, 32–39.
  • Miao, X. X., Zhang, J. X., & Feng, M. M. (2008). Waste-filling in fully-mechanized coal mining and its application. Journal of China University of Mining and Technology, 18, 479–482.
  • Noghabai, K. (2000). Discrete versus smeared versus element embedded crack models on ring problem. Journal of Engineering Mechanics, 125, 307–314.
  • Pearce, C. J., Thavalingam, A., Liao, Z., & Bićanić, N. (2000). Computational aspects of the discontinuous deformation analysis framework for modelling concrete fracture. Engineering Fracture Mechanics, 65, 283–298.
  • Pietruszczak, S., & Mróz, Z. (1981). Finite element analysis of deformation of strain-softening materials. International Journal for Numerical Methods in Engineering, 17, 327–334.
  • Pietruszczak, S., & Xu, G. (1995). Brittle response of concrete as a localization problem. International Journal of Solids and Structures, 32, 1517–1533.
  • Rafael, R. D., & Javier, T. A. (2000). Hypothesis of the multiple subsidence trough related to very steep and vertical coal seams and its prediction through profile functions. Geotechnical and Geological Engineering, 18, 289–311.
  • Ren, G., Whittaker, B. N., & Reddish, D. J. (1989). Mining subsidence and displacement prediction using influence function methods for steep seams. Mining Science and Technology, 8, 235–251.
  • Sengupta, M. (1993). Environmental impacts of mining: Monitoring, restoration and control. Boca Ratan, FL: Lewis.
  • Singh, K. B. (2007). Pot-hole subsidence in Son-Mahanadi master coal basin. Engineering Geology, 89, 88–97.
  • Szwedzicki, T. (1999). Pre- and post-failure ground behaviour: Case studies of surface crown pillar collapse. International Journal of Rock Mechanics and Mining Sciences, 36, 351–359.
  • Tang, C. A. (1997). Numerical simulation on progressive failure leading to collapse and associated seismicity. International Journal of Rock Mechanics & Mining Sciences, 34, 249–261.
  • Tang, C. A., Tham, L. G., Lee, P. K. K., Yang, T. H., & Li, L. C. (2002). Coupling analysis of flow, stress and damage (FSD) in rock failure. International Journal of Rock Mechanics & Mining Sciences, 39, 477–489.
  • Thallak, S., Rothenbury, L., & Dusseault, M. (1991). Simulation of multiple hydraulic fractures in a discrete element system. In J. C. Roegiers (Ed.), Rock mechanics as a multidisciplinary science. Proceedings of the 32nd US Symposium (pp. 271–280). Rotterdam: Balkema.
  • Toraño, J., Rodrı́guez, R., & Ramı́rez-Oyanguren, P. (2000). Probabilistic analysis of subsidence-induced strains at the surface above steep seam mining. International Journal of Rock Mechanics and Mining Sciences, 37, 1161–1167.
  • Wang, J. A., & Park, H. D. (2003). Coal mining above a confined aquifer. International Journal of Rock Mechanics & Mining Sciences, 40, 537–555.
  • Wang, X. M., Zhao, B., Zhang, C. S., & Zhang, Q. L. (2009). Paste-like self-flowing transportation backfilling technology based on coal gangue. Mining Science and Technology, 19, 137–143.
  • Weibull, W. A. (1951). A statistical distribution function of wide applicability. Journal of Applied Mechanics, 18, 293–297.
  • Wong, T. F., Wong, R. H. C., Chau, K. T., & Tang, C. A. (2006). Microcrack statistics, Weibull distribution and micromechanical modeling of compressive failure in rock. Mechanics of Materials, 38, 664–681.
  • Wu, Q., Wang, M., & Wu, X. (2004). Investigations of groundwater bursting into coal mine seam floors from fault zones. International Journal of Rock Mechanics & Mining Sciences, 41, 557–571.
  • Yale, D. P., Lyons, S. L., & Qin, G. (2000). Coupled geomechanics-fluid flow modeling in petroleum reservoirs: Coupled versus uncoupled response. In J. Girard, M. Liebman, C. Breed, & T. Doe (Eds.), Pacific rocks 2000 (pp. 137–144). Rotterdam: Balkema.
  • Yang, T. H., Liu, J., Zhu, W. C., Elsworth, D., Tham, L. G., & Tang, C. A. (2007). A coupled flow-stress-damage model for groundwater outbursts from an underlying aquifer into mining excavations. International Journal of Rock Mechanics & Mining Sciences, 44, 87–97.
  • Yu, W. J., & Wang, W. J. (2011). Strata movement induced by coal-pillar under three circumstances exchanged by gangue backfill and quadratic stability law. Chinese Journal of Rock Mechanics and Engineering, 30, 105–112 (in Chinese).
  • Zhang, H. Q., He, Y. N., Tang, C. A., Ahmad, B., & Han, L. J. (2009). Application of an improved flow-stress-damage model to the critically assessment of water inrush in a mine: A case study. Rock Mechanics & Rock Engineering, 42, 911–930.
  • Zhang, J. C., & Shen, B. (2004). Coal mining under aquifers in China: A case study. International Journal of Rock Mechanics & Mining Sciences, 41, 629–639.
  • Zhu, W. C., & Wei, C. H. (2011). Numerical simulation on mining-induced water inrushes related to geologic structures using a damage-based hydromechanical model. Environmental Earth Sciences, 62, 43–54.
  • Zhu, W. C., & Tang, C. A. (2004). Micromechanical model for simulating the fracture process of rock. Rock Mechanics and Rock Engineering, 37, 25–56.
  • Zhu, W. L., & Wong, T. F. (1999). Network modeling of the evolution of permeability and dilatancy in compact rock. Journal of Geophysical Research, 104, 2963–2971.
  • Zhu, J. B., Zhao, X. B., Wu, W., & Zhao, J. (2012). Wave propagation across rock joints filled with viscoelastic medium using modified recursive method. Journal of Applied Geophysics, 86, 82–87.
  • Zuo, J. P., Peng, S. P., Li, Y. J., Chen, Z. H., & Xie, H. P. (2009). Investigation of karst collapse based on 3-D seismic technique and DDA method at Xieqiao coal mine, China. International Journal of Coal Geology, 78, 276–287.

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