يعرض 1 - 3 نتائج من 3 نتيجة بحث عن '"Cajicáca, Leonardo"', وقت الاستعلام: 0.43s تنقيح النتائج
  1. 1
    Academic Journal
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    Academic Journal

    وصف الملف: application/pdf

    Relation: https://revistas.unal.edu.co/index.php/rbct/article/view/67217; Universidad Nacional de Colombia Revistas electrónicas UN Boletín Ciencias de la Tierra; Boletín Ciencias de la Tierra; Perez Rodriguez, Manuel Santiago and Garcia-Aristizabal, Edwin Fabian and Vega-Posada, Carlos Alberto and Montoya-Dominguez, Juan and Noriega, Pablo and Alfonso, Jhon and Cajicáca, Leonardo (2018) Estudio comparativo entre sistemas de clasificación geomecánica en un depósito tipo Pórfido. Boletín de Ciencias de la Tierra (43). pp. 34-44. ISSN 2357-3740; https://repositorio.unal.edu.co/handle/unal/68366; http://bdigital.unal.edu.co/69399/

  3. 3
    Electronic Resource

    Additional Titles: Estudio comparativo entre sistemas de clasificación geomecánica en un depósito tipo Pórfido

    المصدر: Boletín de Ciencias de la Tierra; Núm. 43 (2018): Agosto-Enero, 2018; 34-44; Boletín de Ciencias de la Tierra; No. 43 (2018): Agosto-Enero, 2018; 34-44; 2357-3740; 0120-3630

    URL: https://revistas.unal.edu.co/index.php/rbct/article/view/67217/64566
    https://revistas.unal.edu.co/index.php/rbct/article/view/67217/64566
    *ref*/Ramírez, P., y Alejano, L., Mecánica de Rocas: Fundamentos e Ingeniería de Taludes. Universidad Politécnica de Madrid, Madrid. [en línea]. 2004. [consulta, 5 de diciembre de 2017]. Disponible en: http://oa.upm.es/14183/1/MECANICA_DE_ROCAS_1.pdf
    *ref*/Corbett, G., Anatomy of porphyry-related Au-Cu-Ag-Mo mineralised systems: Some exploration implications. In Australian Institute of Geoscientists North Queensland Exploration Conference, 2009, pp. 1-13.
    *ref*/Bieniawski, Z.T., Engineering rock mass classifications: A complete manual for engineers and geologists in mining, civil, and petroleum engineering. John Wiley & Sons, 1989.
    *ref*/Laubscher, D.H., A geomechanics classification system for the rating of rock mass in mine design, Journal of the Southern African Institute of Mining and Metallurgy, 90(10), pp. 257-273, 1990.
    *ref*/Barton, N., Some new Q-value correlations to assist in site characterisation and tunnel design. International Journal of Rock Mechanics and Mining Sciences, 39(2), pp. 185-216, 2002. DOI: 10.1016/S1365-1609(02)00011-4
    *ref*/Coulomb, C., Essai sur une application des règles de maximis et minimis à quelques problèmes de statique relatifs à l'architecture. París, Mem. Div. Sav. Acad., 1773, 7 P.
    *ref*/Lutton, R., Banks, D. and Strohm Jr, W., Slides in the Gaillard cut, Panama canal zone, rockslides and avalanches, vol. 2, Amsterdam, 1979, pp. 151-224.
    *ref*/Terzaghi, K., Stress conditions for the failure of saturated concrete and rock, en: Proceedings-American Society for Testing and Materials, 45, pp. 777-792, 1945.
    *ref*/Talobre, J., La mécanique des roches: Et ses applications, 2da Ed. Paris, 1967.
    *ref*/Jaeger, J. and Cook, N., Fundamentals of rock mechanics: London, Methuen and Co. 513 P.
    *ref*/Bieniawski, Z.T., Engineering classification of jointed rock masses. Civil Engineer in South Africa, 15(12), pp 335-343, 1973.
    *ref*/Bieniawski, Z.T. (Ed.), Exploration for rock engineering: Proceedings of the Symposium on Exploration for Rock Engineering, Johannesburg, Balkema, 1, 1976, pp 97-106.
    *ref*/Barton, N., Lien, R. and Lunde, J., Engineering classification of rock masses for the design of tunnel support. Rock Mechanics, 6(4), pp 189-236, 1974. DOI: 10.1007/BF01239496
    *ref*/Hoek, E. and Bray, J., Rock Slope Engineering. London, 1974.
    *ref*/Grimstad, E. and Barton, N., Updating the Q-system for NMT. In: Proceedings of the International Symposium on Sprayed Concrete-Modern use of wet mix sprayed concrete for underground support, Fagemes, Oslo, Norwegian Concrete Association, 1993.
    *ref*/Laubscher, D.H., Geomechanics classification of jointed rock masses-mining applications. Trans. Instn. Min. Metall, 86, pp. A1-8, 1977.
    *ref*/Hoek, E. and Brown, E.T., Underground excavations in rock. London, Instn Min. Metall., 1980, 527 P.
    *ref*/Hoek, E., The Hoek-Brown failure criterion-a 1988 update. In: Proc. 15th Canadian Rock Mechanics. Symp, Toronto, Dept. Civil Engineering, University of Toronto, 1988, pp. 31-38.
    *ref*/Hoek, E. and Kaiser, P.K., Support of underground excavations in hard rock. CRC Press, 1995.
    *ref*/Marinos, P. and Hoek, E., GSI: A geologically friendly tool for rock mass strength estimation. In: ISRM International Symposium. International Society for Rock Mechanics, 2000, pp. 1422-1442.
    *ref*/Cai, M., Kaiser, P.K., Uno, H., Tasaka, Y. and Minami, M., Estimation of rock mass deformation modulus and strength of jointed hard rock masses using the GSI system. International Journal of Rock Mechanics and Mining Sciences, 41(1), pp. 3-19, 2004. DOI: 10.1016/S1365-1609(03)00025-X
    *ref*/Hoek, E., Carter, T.G. and Diederichs, M.S., Quantification of the geological strength index chart. In: 47th US rock mechanics/geomechanics symposium. American Rock Mechanics Association, 2013.
    *ref*/Ramamurthy, T., A geo-engineering classification for rocks and rock masses. International Journal of Rock Mechanics and Mining Sciences, 41(1), 2004. pp. 89-101. DOI: 10.1016/S1365-1609(03)00078-9
    *ref*/Palmstrom, A. and Broch, E., Use and misuse of rock mass classification systems with particular reference to the Q-system. Tunnelling and Underground Space Technology, 21(6), pp. 575-593, 2006. DOI: 10.1016/j.tust.2005.10.005
    *ref*/Jakubec, J. and Esterhuizen, G.S., Use of the mining rock mass rating (MRMR) classification: industry experience. In: Proceedings International Workshop on Rock Mass Classification in Underground Mining., Mark, C., Pakalnis, R. and Tuchman, R.J. (eds), Vancouver, BC, Canada, National Institute for Occupational Safety and Health Information Circular (IC), 9498, 2007, pp. 413-421.
    *ref*/ASTM D5878, Standard guides for using rock-mass classification systems for engineering, ASTM Int. West Conshohocken, PA, 2008, pp. 1-30.
    *ref*/Zhang, W., Chen, J., Cao, Z. and Wang, R., Size effect of RQD and generalized representative volume elements: A case study on an underground excavation in Baihetan dam, Southwest China. Tunnelling and Underground Space Technology, 35, pp. 89-98, 2013. DOI: 10.1016/j.tust.2005.10.005
    *ref*/Özkan, İ., Erdem, B. and Ceylanoğlu, A., Characterization of jointed rock masses for geotechnical classifications utilized in mine shaft stability analyses. International Journal of Rock Mechanics and Mining Sciences, 73, pp. 28-41, 2015. DOI: 10.1016/j.ijrmms.2014.10.001
    *ref*/Rad, H.N., Jalali, Z. and Jalalifar, H., Prediction of rock mass rating system based on continuous functions using Chaos–ANFIS model. International Journal of Rock Mechanics and Mining Sciences, 73, pp. 1-9, 2015. DOI: 10.1016/j.ijrmms.2014.10.004
    *ref*/AngloGold Ashanti Limited. Mineral resource and ore reserve report 2015 - Supporting our strategy. [online]. 2015. [consulted December 5th of 2017]. Available at: https://thevault.exchange/?get_group_doc=143/1502780767-MineralResourceandOreReserveReport2015.pdf
    *ref*/Dempers, G.D., Seymour, C.R.W. and Harris, M.B., Optimising geotechnical logging to accurately represent the geotechnical environment. In: Second Australasian Ground Control in Mining Conference, 2010.
    *ref*/Statgraphics Centurion, X. V. I. Statpoint Technologies. INC. version, 16, 17. 2009.
    *ref*/Kumar, N., Samadhiya, N.K. and Anbalagan, R., Application of rock mass classification systems for tunneling in Himalaya, India. International Journal of Rock Mechanics and Mining Sciences, 41, pp. 852-857, 2004.