Журналы →  Gornyi Zhurnal →  2015 →  №11 →  Назад

DEVELOPMENT OF DEPOSITS
Название Creation and industrial introduction of underground mining systems for diamond deposits of ALROSA
DOI 10.17580/gzh.2015.11.10
Автор Chaadaev A. S., Zyryanov I. V., Kirillov D. S., Bondarenko I. F.
Информация об авторе

ALROSA, Yakutsk, Russia:

A. S. Chaadaev, Vice-President for Innovations, Candidate of Economical Sciences
D. S. Kirillov, Head of Department of Mining

 

Yakutniproalmaz Institute, Yakutsk, Russia:

I. V. Zyryanov, Deputy Director for Science, Doctor of Engineering Sciences, e-mail: ZyryanovIV@alrosa.ru
I. F. Bondarenko, Academic Secretary, Candidate of Engineering Sciences

Реферат

As a result of comprehensive substantiation, experimental approbation systems of underground mining of kimberlite pipes were created and introduced into industry at a large scale for the first time in the world practice for advancement of subsurface mining in extreme conditions of Yakutia on the new methodological basis of research and design. The extent of the permafrost—zerodegree isotherm is at the depth of 700–1100 m, is a characteristic feature of the deposits under consideration. Thickness of permafrost varies from 300 to 500 m. Mines of Internatsionalny (1999), Aykhal (2002) and Mir (2009) mine kimberlites by underground method. In 2014 an underground mine at Udachnaya pipe was commissioned. On the whole, explored and estimated reserves of the four listed deposits, underground mining of which is already carried out, are valued at — US$ 72 billion. Construction of four underground mines practically at the same time, under conditions of sternly constrained material, and financial, and labor resources required scientific substantiation as well as development and introduction of a number of new technologies and methods of underground mines construction intended to reduce volumes, cost and implementation periods of these projects.

Ключевые слова Permafrost zone, extreme conditions, underground mining systems, diamond deposits, kimberlite pipes, continuous mining, parameters
Библиографический список

1. Akishev A. N., Bondarenko I. F., Vasilev P. V., Mining S. S. Upravlenie zapasami i kachestvom almazorudnogo syrya (Control of reserves and quality of diamond-ore raw materials). Responsible editors: V. P. Serov, A. N. Cherepnov. Novosibirsk : Publishing House of Siberian Branch of Russian Academy of Sciences, 2012. 382 p.
2. Kolganov V. F., Bondarenko I. F., Davydenko A. Yu., Vasilev P. V. Kompyuternoe modelirovanie pri razvedke i optimizatsii razrabotki mestorozhdeniy almazov (Computer simulation during the exploration and optimization of diamond deposit mining). Moscow : Nauka, 2008. 262 p.
3. Pismennyy A. V., Borodin A. A., Kulminskiy A. S. Problemy i puti effektivnoy otrabotki almazonosnykh mestorozhdeniy : sbornik dokladov Mezhdunarodnoy nauchnoprakticheskoy konferentsii, posvyashchennoy 50-letiyu Yakutskogo nauchnoissledovatelskogo i proektnogo instituta almazodobyvayushchey promyshlennosti «Yakutniproalma», 11–15 aprelya 2011 goda (Problems and ways of efficient mining of diamond-bearing deposits : collection of reports of International scientific-practical conference, devoted to the 50-th anniversary of Yakutsk scientific-research and project institute of diamond industry «Yakutniproalmaz», April 11–15, 2011). Mirnyy — Novosibirsk : Nauka, 2011. pp. 284– 290.
4. Bondarenko I. F., Khon V. I., Nikitin R. Ya. Prognoznaya otsenka stepeni vliyaniya vzryvnykh rabot na podkarernyy tselik rudnika «Mir» (Forecast assessment of the grade of influence of blasting operations on the pit pillar of «Mir» mine). Problemy otrabotki almazonosnogo mestorozhdeniya trubki «Mir» pod tolshchey metegero-icherskogo vodonosnogo kompleksa : materialy nauchno-prakticheskoy konferentsii 22–24 oktyabrya 2012 (Problems of mining of diamond-bearing deposit of «Mir» pipe under the layer of Metegero-Ichersk water-bearing complex : materials of scientific-practical conference, October 22–24, 2012). Moscow, 2012. pp. 180–185.
5. Montyanova A. N., Efimov A. I., Talantsev L. R. K voprosu avtomatizatsii tekhnologii zakladochnykh rabot pri kombaynovoy otboyke rudy korennykh almaznykh mestorozhdeniy (To the question about automation of stowing operation technologies during the combine breaking of primary diamond deposit ore). Gornyy Informatsionno-Analitichaskiy Byulleten = Mining Informational-Analytical Bulletin. 2010. No. 2. pp. 343–353.
6. Shtaub I. V., Montyanova A. N., Kirillov D. S., Bildushkinov E. V. Spetsificheskie osobennosti zakladochnykh rabot na rudnike «Mir» (Specific peculiarities of stowing operations at «Mir» mine). Nauka i innovatsionnye razrabotki – Sever : tezis dokladov Mezhdunarodnoy nauchno-prakticheskoy konerentsii, 10–12 marta 2014 goda (Science and innovation elaborations – North : thesis of reports of International scientific-practical conference, March 10–12, 2014). Mirnyy, 2014. p. 85.
7. Underground mining technology: centuries of history from the foundation for today’s sophisticated systems. Engineering and Mining Journal. 2013. Suplement. pp. 8–16.
8. Li L. A new concept of backfill design-application of wick drains in backfilled stopes. International Journal of Mining Science and Technology. 2013. Vol. 23, No. 5. pp. 763– 770.
9. Fiscor S. Roof bolting technology. Coal Age. 2012. Vol. 117, No. 5. pp. 26, 28, 30.
10. Kamran E., Hadjigeorgiou J. Selecting ore Pass-Finger Raise configurations in underground mines. Rock Mechanics and Rock Engineering. 2011. Vol. 44, No. 3. pp. 291–303.

Language of full-text русский
Полный текст статьи Получить
Назад