Acknowledgement
Supported by : National Natural Science Foundation of China, Central Universities, Natural Science Foundation of Jiangsu Province
References
- Bai, J.B., Shen, W.L., Guo, G.L., Wang, X.Y. and Yu, Y. (2015), "Roof deformation, failure characteristics, and preventive techniques of gob-side entry driving heading adjacent to the advancing working face", Rock Mech. Rock Eng., 48(6), 2447-2458. https://doi.org/10.1007/s00603-015-0713-2
- Chen, M., Yang, S.Q., Zhang, Y.C. and Zang, C.W. (2016), "Analysis of the failure mechanism and support technology for the Dongtan deep coal roadway", Geomech. Eng., Int. J., 11(3), 401-420. https://doi.org/10.12989/gae.2016.11.3.401
- Fan, K., Liu, G., Xiao, T. and Zheng, L. (2010), "Study on overlying strata movement and structure features aroused by mountainous shallow buried csal seam mining", Proceedings of International Conference on Mine Hazards Prevention and Control, Qingdao, China, October, pp. 76-82.
- Komurlu, E. and Kesimal, A. (2015), "Sulfide-rich mine tailings usage for short-term support purposes: An experimental study on paste backfill barricades", Geomech. Eng., Int. J., 9(2), 195-205. https://doi.org/10.12989/gae.2015.9.2.195
- Li, X. and Li, W. (2016), "Numerical investigation on fracturing behaviors of deep-buried opening under dynamic disturbance", Tunn. Undergr. Sp. Tech., 54, 61-72. https://doi.org/10.1016/j.tust.2016.01.028
- Li, H., Zhao, B., Guo, G., Zha, J. and Bi, J. (2016a), "The influence of an abandoned goaf on surface subsidence in an adjacent working coal face: A prediction method", Bull. Eng. Geol. Environ., 1-11.
- Li, S.C., Wang, J.H., Chen, W.Z., Li, L.P., Zhang, Q.Q. and He, P. (2016b), "Study on mechanism of macro failure and micro fracture of local nearly horizontal stratum in super-large section and deep buried tunnel", Geomech. Eng., Int. J., 11(2), 253-267. https://doi.org/10.12989/gae.2016.11.2.253
- Li, X., Ju, M., Yao, Q., Zhou, J. and Chong, Z. (2016c), "Numerical investigation of the effect of the location of critical rock block fracture on crack evolution in a gob-side filling wall", Rock Mech. Rock Eng., 49(3), 1041-1058. https://doi.org/10.1007/s00603-015-0783-1
- Ma, T., Wang, L., Suorineni, F.T. and Tang, C. (2016), "Numerical analysis on failure modes and mechanisms of mine pillars under shear loading", Shock Vib., 2016(1), 1-14.
- Malkowski, P. (2015), "The impact of the physical model selection and rock mass stratification on the results of numerical calculations of the state of rock mass deformation around the roadways", Tunn. Undergr. Sp. Tech, 50, 365-375. https://doi.org/10.1016/j.tust.2015.08.004
- Nguyen, T.L., Hall, S.A., Vacher, P. and Viggiani, G. (2011), "Fracture mechanisms in soft rock: identification and quantification of evolving displacement discontinuities by extended digital image correlation", Tectonophysics, 503(1-2), 117-128. https://doi.org/10.1016/j.tecto.2010.09.024
- Nikadat, N. and Marji, M.F. (2016), "Analysis of stress distribution around tunnels by hybridized FSM and DDM considering the influences of joints parameters", Geomech. Eng., Int. J., 11(2), 269-288. https://doi.org/10.12989/gae.2016.11.2.269
- Ning, J., Wang, J., Liu, X., Qian, K. and Sun, B. (2014), "Soft-strong supporting mechanism of gob-side entry retaining in deep coal seams threatened by rockburst", Int. J. Min. Sci. Tech., 24(6), 805-810. https://doi.org/10.1016/j.ijmst.2014.10.012
- Rebello, N., Sastry, V.R. and Shivashankar, R. (2014), "Study of surface displacements on tunnelling under buildings using 3dec numerical modelling", International Scholarly Research Notices.
- Taheri, A. and Tani, K. (2010), "Characterization of a sedimentary soft rock by a small in-situ triaxial test", Geotech. Geol. Eng., 28(3), 241-249. https://doi.org/10.1007/s10706-008-9245-9
- Tan, Y.L., Yu, F.H., Ning, J.G. and Zhao, T.B. (2015), "Design and construction of entry retaining wall along a gob side under hard roof stratum", Int. J. Rock Mech. Min. Sci., 77, 115-121.
- Wang, G.F., Gong, S.Y., Dou, L., Cai, W. and Mao, Y. (2015), "Evolution of stress concentration and energy release before rock bursts: Two case studies from Xingan Coal Mine, Hegang, China", Rock Mech. Rock Eng, 1-9.
- Yang, J.X., Liu, C.Y., Yu, B. and Wu, F.F. (2015a), "The effect of a multi-gob, pier-type roof structure on coal pillar load-bearing capacity and stress distribution", Bull. Eng. Geol. Environ., 74(4), 1-7. https://doi.org/10.1007/s10064-013-0552-x
- Yang, Y., Wang, R., Xing, W. and Cheng, L. (2015b), "Analysis of deformation and failure of hard rock mass surrounding underground openings in houziyan hydropower station by 3dec numerical simulation", Apmis Supplementum, 117(127), 55-59.
- Yang, X.L., Xu, J.S., Li, Y.X. and Yan, R.M. (2016), "Collapse mechanism of tunnel roof considering joined influences of nonlinearity and non-associated flow rule", Geomech. Eng., Int. J., 10(1), 21-35. https://doi.org/10.12989/gae.2016.10.1.021
- Yong, Y., Tu, S., Zhang, X. and Bo, L. (2015), "Dynamic effect and control of key strata break of immediate roof in fully mechanized mining with large mining height", Shock Vib., 2015(4), 1-11.
- Yoo, C. (2016), "Effect of spatial characteristics of a weak zone on tunnel deformation behavior", Geomech. Eng., Int. J., 11(1), 41-58. https://doi.org/10.12989/gae.2016.11.1.041
- Zhao, C. (2015), "Analytical solutions for crack initiation on floor-strata interface during mining", Geomech. Eng., Int. J., 8(2), 237-255. https://doi.org/10.12989/gae.2015.8.2.237
- Zhu, H., Ye, B., Cai, Y. and Zhang, F. (2013), "An elasto-viscoplastic model for soft rock around tunnels considering overconsolidation and structure effects", Comput. Geotech., 50(50), 6-16. https://doi.org/10.1016/j.compgeo.2012.12.004
- Zhang, G.F., He, M.C., Yu, X.P. and Huang, Z.G. (2011), "Research on the technique of no-pillar mining with gob-side entry formed by advanced roof caving in the protective seam in Baijiao coal mine", J. Min. Saf. Eng., 28(4), 511-516. [In Chinese]
- Zhang, N., Yuan, L., Han, C., Xue, J. and Kan, J. (2012), "Stability and deformation of surrounding rock in pillarless gob-side entry retaining", Safety Sci., 50(4), 593-599. https://doi.org/10.1016/j.ssci.2011.09.010
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