Study of the Influence of Block Caving Underground Mining on the Stability of the Overlying Open Pit Mine

Author:

Tegachouang Nathan Chimi,Bowa Victor MwangoORCID,Li Xinping,Luo Yi,Gong Wenping

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

Geology,Soil Science,Geotechnical Engineering and Engineering Geology,Architecture

Reference18 articles.

1. Ahmed HM, Eberhardt E, Dunbar WS (2014) Interaction between block caving and rock slope deformation kinematics as a function of cave position and orientation of discontinuities. Min Technol 123(3):140–148

2. Eberhardt E, S. D., Elmo D et al. (2007). Transition from surface to underground mining: integrated mapping, monitoring and modeling data to better understand complex rock mass interaction. Proceedings of the International Symposium on Rock Slope Stability in Open Pit Mining and Civil Engineering, Perth, Australia, September 2007: 321–332.

3. Edelbro C, Sjöberg J, Malmgren L et al (2012) Prediction and follow-up of failure and fallouts in footwall drifts in the Kiirunavaara mine. Can Geotech J 49(5):546–559

4. Elmo D, V. A., Stead D et al. (2007). A hybrid FEM/DEM approach to model the interaction between open pit and underground block caving mining. Proceedings of the 1st Canada–U.S. Rock Mechanics Symposium, Vancouver, Canada 2: 1287–1294.

5. Elmo D, V. A., Stead D, Rance JR (2008). Numerical analysis of pit wall deformations induced by block-caving mining: a combined FEM/DEM-DFN synthetic rock mass approach. Proceedings of the 5th International Conference and Exhibition on Mass Mining (MassMin2008), Lulea°, Sweden, June 2008: 1073–1082.

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