Название |
Solution of geoecological problems in underground mining of deep iron ore deposits |
Информация об авторе |
Institute of Comprehensive Exploitation of Mineral Resource, Moscow, Russia:
Galchenko Yu. P., Doctor of Engineering Sciences, Leading Researcher
NUST MISIS, Moscow, Russia:
Eremenko V. A., Professor, Doctor of Engineering Sciences, Director of the Research Center for Applied Geomechanics and Converging Geotechnologies, eremenko@ngs.ru Myaskov A. V., Professor, Doctor of Economic Sciences, Director
Peoples’ Friendship University of Russia, Moscow, Russia: Kosyreva M. A., Student |
Библиографический список |
1. Trubetskoy K. N., Galchenko Yu. P. Geoecology of exploration of mineral resources and ecogeotechnologies mining. Moscow : Nauchtehlitizdat. 2015. p. 360. 2. Bronnikov D. M., Zamesov N. F., Bogdanov G. I. Deep level ore mining. Nedra. Moscow. 1982. 3. Eremenko A. A., Eremenko V. A., Gaidin A. P. Improvement of rockburst-hazardous iron ore mining under natural and mining-induced impacts. Novosibirsk : Nauka, 2008, 312 p. 4. Eremenko V., Eremenko А., Gakhova L., Klishin I. Finding zones of stress concentrations and seismic events in deep ore mining affected by high horizontal stresses, in Deep and High Stress Mining. Sixth International Seminar on Deep and High Stress Mining 2012. 28–30 March 2012. Australia, Perth, 2012, pp. 443–450. 5. Timonin V. V., Kondratenko A. S. Process and Measuring Equipment Transport in Uncased Boreholes. Journal of Mining Science. 2015. Vol. 51. No 5. pp. 1056–1061. 6. Kondratenko A. S., Timonin V. V., Patutin A.V. Prospects for directional drilling in hard rocks. Journal of Mining Science. 2016. Vol. 52. No 1. pp. 129–134. 7. Primychkin A. Yu., Kondratenko A. S., Timonin V. V. Determination of variables for air distribution system with elastic valve for down-the-hole pneumatic hammer. IOP Conference Series: Earth and Environmental Science. 2017. Vol. 53. DOI: 10.1088/1755-1315/53/1/012025. 8. Yi X. W., Ma G. W., Fourie A. Centrifuge model studies on the stability of fibre-reinforced cemented paste backfill stopes. Geotextiles and Geomembranes. 2018. Vol. 46(4). pp. 396–401. 9. Yi X. W., Ma G. W., Fourie A., Li Z. J. Compressive behaviour of reinforced cemented paste backfill. 13th ISRM International Congress of Rock Mechanics. 2017. January. pp. 1–10. 10. Ma G., Li Z., Yi X., Guo L. Macro-meso experiment of fiberreinforced cement paste filling material. Beijing Gongye Daxue Xuebao. Journal of Beijing University of Technology. 2016. Vol. 42(3). pp. 406–412. 11. Hane I., Belem T., Benzaazoua M., Maqsoud A. Laboratory Characterization of Cemented Tailings Paste Containing Crushed Waste Rocks for Improved Compressive Strength Development. Geotechnical and Geological Engineering. 2017. Vol. 35(2). pp. 645–662. 12. Ryzhkov Yu. A., Volkov A. N., Gogolin V. A. Mechanics of fill masses and their formation technology. Moscow : Nedra, 1985. 13. Eremenko V. A., Barnov N. G., Kondratenko A. S., Timonin V. V. Me thod for mining steeply dipping thin lodes. Gornyi Zhurnal. 2016. No. 12. pp. 45–50. DOI: 10.17580/gzh.2016.12.10. |