REVISTA MINERÍA 542 | EDICIÓN NOVIEMBRE 2022

MINERÍA la mejor puerta de acceso al sector minero MINERÍA / NOVIEMBRE 2022 / EDICIÓN 542 75 34 Hexagon. 2021. HxGN MinePlan Engineering OP LTP Pro. Hexagon. 35 Hexagon. 2021. HxGN MinePlan Project Evaluator. Hexagon. 36 Kliche CA. 2011. Slope stability. En: Darling P (ed) SME Mining Engineering Handbook. 3era edición. Sociedad de Minería, Metalurgia y Exploración, págs. 495-525. 37 Lorig L, Read J, Stacey P. 2009. Slope design methods. En: Read J, Stacey P (eds) Guidelines for open pit slope design. CRC Press, pág 237-264. 38 Rocscience. 2020. Manual de usuario de SWedge. https://www.rocscience.com/ help/swedge/documentation 39 SRK. 2016. Frac_Rock: programme for the analysis of discontinuous rock masses. 40 Call RD. 1992. Slope stability. En: Hartman HL (ed) SME Mining Engineering Handbook, vol 1. 2da edición. Sociedad de Minería, Metalurgia y Exploración, Littleton, Colorado (EE.UU.) Cap. 10.4. 41 Ryan TM, Pryor PR. 2001. Designing catch benches and interramp slopes. En: Hustrulid W, McCarter M, van Zyl D (eds) Slope stability in surface mining. Sociedad de Minería, Metalurgia y Exploración, págs. 27-38. 42 Alejano LR, Pons B, Bastante FG, Alonso E, Stockhausen HW. 2007. Slope geometry design as a means of controlling rockfalls in quarries. International Journal of Rock Mechanics & Mining Sciences 44: 903-921. 43 Rocscience. 2002. Manual de usuario de RocFall. https://www.rocscience.com/help/ rocfall/documentation 44 Basson FRP. 2012. ‘Rigid body dynamics for rock fall trajectory simulation’, en Proceedings of the 46th US Rock Mechanics & Geomechanics Symposium 24–27 June 2012, American Rock Mechanics Association, Chicago. 45 Bar N, Nicoll S, Pothitos F. 2016. Rock fall trajectory field testing, model simulations and considerations for steep slope design in hard rock. First Asia Pacific Slope Stability in Mining (APSSIM) Conference, Brisbane, Australia. 46 Gibson W, de Bruyn IA, Walker DJH. 2006. Considerations in the optimisation of bench face angle and berm width geometries for open pit mines. Proc. South African Institute of Mining and Metallurgy Int Symp on Stability of rock slopes, Symp series S44 Stability of rock slopes in open pit mining and civil engineering situations, págs. 557-579. 47 Coetsee S. 2020. An overview of bench design for cut slopes with an example of an advanced dataset assessment technique. Proc of the 2020 Int Symp on Slope Stability in Open Pit Mining and Civil Engineering, págs. 73174848. 48 Tang GP, Zhao LH, Li L, Yang F. 2015. Stability charts of slopes under typical conditions developed by upper bound limit analysis. Computers & Geotechnics, 65: 233-240. 49 Hoek E, Carranza-Torres C, Corkum B. 2002. Figura 16. Tonelaje de mineral (amarillo) y residuos de roca (gris) (eje vertical izquierdo) y flujos de caja en US$ (eje vertical derecho) representados en función del tiempo en años para: a) diseño tradicional de la mina y b) diseño basado en perfiles de pared de tajo óptimos.

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