Track 4: Coal

194 He, J., Li, J.Q. and Li, Y.L., (2023). Scientific advancements in the planning and construction of water transfer projects in China under the new situation. China Water Resources. 49-53. Hong, B.Q., (2006). Comprehensive technology for deep mine rapid construction. Coal Science and Technology. 8-11. Li, S.C., Li, L.P. and Sun, Z.Z., (2023). Key technology analysis and development trend of the equipment for ul-tra-long directional drilling and grouting. Rock and Soil Mechanics. 1-30. Liu, Z.Q., Song, Z.Y. and Cheng, S.Y., (2024). Seventy years innovation development and popularization practice of coal mine construction technology and equipment in China. Coal Science and Technology. 65-83. Ministry of Housing and Urban-Rural Development of the People's Republic of China. (2022). Standard for construction of coal mine roadways and shafts (GB/T 50511-2022). Beijing: China Planning Press. Niu, X.Q., Zhang, C. J, (2019). Some key technical issues on construction of ultra-long deepburied water conveyance tunnel under complex geological conditions. Tunnel Construction. 523-536. Tong, R.J., Zheng, S.T. and Wu, Y.J., (2022). Key technology of advance pre-grouting of ground directional holes to shield roadway passing fault and broken zone. Coal Science and Technology. 196-203. Xie, H.P., Zhang, R. and Ren, L., (2022). Analysis and thoughts on surrounding rock mass catastrophe of deep-buried tunnels along Sichuan-Tibet railway[J]. Engineering Science and Technology. 1-20. Yang, X., Tian, L. and Deng, Y., (2023). Development and application of grouting technology to prevention and control of Ordovician limestone water disaster in north China. Mine Construction Technology. 18-22. Zhang, S.S., (2025). Research status and development trend of deep geological exploration techniques for hydraulic and hydropower engineering. Chinese Journal of Rock Mechanics and Engineering. 1377-1404.

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