DOI: 10.56195/20793332-2026-26-1-57-60
S. A. Shemyakin1, A. Yu. Cheban2, E. A. Shishkin1, V. Yu. Voronin3
- Graduate School of advanced engineering, Pacific National University, Khabarovsk, Russian Federation
- Institute of Mining, Khabarovsk Federal Research Center of the Far Eastern Branch of the Russian Academy of Sciences, Khabarovsk, Russian Federation
- Areal company, Khabarovsk, Russian Federation
- Abstract:
- The intensive development of the subsoil of Siberia and the Far East requires the equipping of mining enterprises with modern technology, including vehicles. A three-stage methodology is proposed for selecting vehicles for transporting rock to landfills after loading with excavators and other transportation operations. The first stage is preliminary in terms of the number of buckets unloaded by the excavator into the dump truck body. The second stage is the assessment of the required number of dump trucks at the quarry. The third stage is to check vehicles for traction characteristics at this quarry. The use of the proposed methodology will make it possible to exclude the acquisition of inefficient motor vehicles for this mining enterprise.
- Keywords:
- mining enterprise, quarry, motor transport, excavator, dump truck selection method, traction calculation
- For citation:
- Shemyakin S.A., Cheban A.Yu., Shishkin E.A., Voronin V.Yu. The methodology of selecting vehicles in the mineral deposits of the Far Eastern region of Russia. Mine Surveying and Subsurface Use. 2026;26(1):57-60. (In Russ.). https:// doi.org/10.56195/20793332-2026-26-1-57-60.
- Information about the authors:
-
- Stanislav A. Shemyakin – Dr. Sci. (Eng.), Professor of the Graduate School of advanced engineering, Pacific National University, Khabarovsk, Russian Federation
- Anton Y. Cheban – Cand. Sci. (Eng.), Senior Researcher, Institute of Mining, Khabarovsk Federal Research Center of the Far Eastern Branch of the Russian Academy of Sciences, Khabarovsk, Russian Federation
- Evgeny A. Shishkin – Cand. Sci. (Eng.), Associate Professor of the Graduate School of advanced engineering, Pacific National University, Khabarovsk, Russian Federation; e-mail:
This email address is being protected from spambots. You need JavaScript enabled to view it. - Vyacheslav Y. Voronin – Chief Engineer, Areal company, Khabarovsk, Russian Federation
- References:
-
- 1. Макарова И.В., Ганиев М.М., Баринов А.С. и др. Современный автотранспорт горнопромышленного комплекса: проблемы и решения. Горная промышленность. 2025; 1S: 28-33. https://doi.org/10.30686/1609-9192-2025-1S-28-33. Makarova I.V., Ganiev M.M., Barinov A.S. et al. Modern motor transport of the mining complex: challenges and solutions. Russian Mining Industry. 2025; 1S: 28-33. (In Russ.). https://doi.org/10.30686/1609-9192-2025-1S-28-33.
- 2. Курганов В.М., Грязнов М.В., Колобанов С.В. Оценка надежности функционирования экскаваторно-автомобильных комплексов в карьере. Записки Горного института. 2020; 241: 10-21. https://doi.org/10.31897/pmi.2020.1.10. Kurganov V.M., Gryaznov M.V., Kolobanov S.V. Assessment of operational reliability of quarry excavator-dump truck complexes. Journal of Mining Institute. 2020; 241: 10-21. (In Russ.). https://doi.org/10.31897/pmi.2020.1.10.
- 3. Вдовиченко А.М., Серебренников О.Д. Обоснование показателей, определяющих выбор транспорта глубоких нагорных карьеров. Записки Горного института. 1989; 120: 103-105. Vdovichenko A.M., Serebrennikov O.D. Justification of the indicators determining the choice of transportation of deep highland quarries. Journal of Mining Institute. 1989; 120: 103-105. (In Russ.).
- 4. Насиров У.Ф., Заиров Ш.Ш., Каримов Ш.В. Исследование и оценка технологического автотранспорта для эффективной транспортировки горной массы в глубоких карьерах. Уголь. 2023; 12: 67-72. https://doi.org/10.18796/0041-5790-2023-12-67-72. Nasirov U.F., Zairov S.S., Karimov S.V. Research and evaluation of process fleet for effective haulage of rock mass in deep open pits. Coal. 2023; 12: 67-72. (In Russ.). https://doi.org/10.18796/0041-5790-2023-12-67-72.
- 5. Циперфин И.М., Штейн В.Д. Карьерный автомобильный транспорт: Справочник. Москва, 1992: 415. Tsiperfin I.M., Stein V.D. Career automobile transport: Handbook. Moscow, 1992: 415. (In Russ.).
- 6. Burmistrov K.V., Osintsev N.A., Shakshakpaev A.N. Selection of open-pit dump trucks during quarry reconstruction. Procedia Engineering. 2017; 206: 1696-1702. https://doi.org/10.1016/j.proeng.2017.10.700.
- 7. Koptev V., Kopteva A., Ivanova T. Directions for the development of transport machines for open-pit mining. Journal of Applied Engineering Science. 2020; 19 (1): 1-5. https://doi.org/10.5937/jaes0-28708.
- 8. Яковлев В.Л., Зырянов И.В., Журавлев А.Г., Черепанов В.А. Особенности современного подхода к выбору технологического транспорта для алмазорудных карьеров Якутии. Физико-технические проблемы разработки полезных ископаемых. 2018; 6: 109-119. Yakovlev V.L., Zyryanov I.V., Zhuravlev A.G., Cherepanov V.A. Peculiarities of the modern approach to the choice of technological transport for diamond ore quarries in Yakutia. Journal of Mining Science. 2018; 6: 109-119. (In Russ.).
- 9. Таланин В.В., Казаков В.А., Бехер В.Г. Оптимизация расстояний транспортирования вскрышных пород карьера автотранспортом с использованием горно-геологических информационных систем. Горный информационно-аналитический бюллетень. 2025; 10: 124-139. https://doi.org/10.25018/0236_1493_2025_10_0_124. Talanin V.V., Kazakov V.A., Bekher V.G. Distance optimization in overburden haulage by dump trucks using mining and geological information systems. Mining informational and analytical bulletin. 2025; 10: 124-139. (In Russ.). https://doi.org/10.25018/0236_1493_2025_10_0_124.
- 10. Журавлёв А.Г., Семёнкин А.В., Черепанов В.А. и др. Задачи развития перспективных циклично-поточных технологий для глубоких карьеров. Горная промышленность. 2022; 1S: 53-62. https://doi.org/10.30686/1609-9192-2022-1S-53-62. Zhuravlev A.G., Semenkin A.V., Cherepanov V.A. et al. The purpose of developing advanced in-pit crushing and conveying technology for deep open pits. Russian Mining Industry. 2022; 1 S: 53-62. (In Russ.). https://doi.org/10.30686/1609-9192-2022-1S-53-62.
- 11. Хорешок А.А., Дубинкин Д.М., Марков С.О., Тюленев М.А. Оценка степени взаимовлияния вместимости ковша экскаватора и кузова автосамосвала. Вестник Кузбасского государственного технического университета. 2021; 3: 104-112. https://doi.org/10.26730/1999-4125-2021-3-104-112. Khoreshok A.A., Dubinkin D.M., Markov S.O., Tyulenev M.A. Estimation of the degree of mutual influence of the excavator bucket capacity and haul truck body. Bulletin of the Kuzbass State Technical University. (In Russ.). https://doi.org/10.26730/1999-4125-2021-3-104-112.
- 12. Томаков П.И., Наумов И.К. Технология, механизация и организация открытых горных работ. Москва, 1992: 463. Tomakov P.I., Naumov I.K. Technology, mechanization and organization of open-pit mining. Moscow, 1992: 463. (In Russ.).
- 13. Mirzaei-Nasirabad H., Mohtasham M., Askari-Nasab H. et al. An optimization model for the real-time truck dispatching problem in open-pit mining operations. Optimization and Engineering. 2023; 24: 2449-2473. https://doi.org/10.1007/s11081-022-09780-x.
- 14. Botyan E., Pushkarev A. Improving the methodology of choosing machinery models for the formation of an excavator and vehicle fleet during the modernization of a mining transport system, with account for the Arctic specifics. Transportation Research Procedia. 2021; 57: 106-112. https:// doi.org/10.1016/j.trpro.2021.09.031.
- 15. Шемякин С.А., Лещинский А.В. Расчет землеройных машин. Хабаровск, 2014:55. Shemyakin S.A., Leshchinsky A.V. Calculation of earthmoving machines. Khabarovsk, 2014:55.
- 16. Трубецкой К. Н. и др. Открытые горные работы справочник. Москва, 2014: 621. Trubetskoy K.N. et al. Open-pit mining handbook. Moscow, 2014:621.
- 17. Подэрни Р.Ю. Механическое оборудование карьеров. Москва, 2003: 605. Poderni R.Y. Mechanical equipment of quarries. Moscow, 2003: 605.
