Rock burst prevention and control of multifield coupling in longwall working face
Author:
Publisher
Springer Science and Business Media LLC
Subject
Geophysics
Link
https://link.springer.com/content/pdf/10.1007/s11770-023-1013-3.pdf
Reference38 articles.
1. Cai, W., Dou, L.M., Si, G.Y., Hu, Y.W., 2020a. Fault-Induced Coal Burst Mechanism under Mining-Induced Static and Dynamic Stresses: Engineering, 7 (prepublish).
2. Cai, W., Dou, L.M., Ju, Y., Cao, W.Z., Yuan, S.S., Si, G.Y., 2018a. A plastic strain-based damage model for heterogeneous coal using cohesion and dilation angle: International Journal of Rock Mechanics and Mining Sciences, 110.
3. Cai, W., Dou, L.M., Zhang, M., Cao, W.Z., Shi, J.Q., Feng, L.F., 2018b. A fuzzy comprehensive evaluation methodology for rock burst forecasting using microseismic monitoring: Tunnelling and Underground Space Technology incorporating Trenchless Technology Research, 80.
4. Cai, W., Bai, X.X., Si, G.Y., Cao, W.Z., Gong, S.Y., Dou, L.M., 2020b. A Monitoring Investigation into Rock Burst Mechanism Based on the Coupled Theory of Static and Dynamic Stresses: Rock Mechanics and Rock Engineering, 53(prepublish).
5. Chen, L., Shen, B.T., Bongani, Dlamini, 2018. Effect of faulting on coal burst—A numerical modelling study: International Journal of Mining Science and Technology, 28(05), 739–743.
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