Acceso abierto

Rational Application of Container Technology at Dumping

,  y   
07 nov 2024

Cite
Descargar portada

Altynbayeva G., Kadnikova O., Aydarhanov A., Toretayev M. Industrial Wastewaters of the Feed Industry: use of Sodium Ferrate in the Phenol Purification Process. Environmental and Climate Technologies 2021:25(1):829–839. https://doi.org/10.2478/rtuect-2021-0062 Search in Google Scholar

Kadnikova O., Altynbayeva G., Kuzmin S., Aidarkhanov A., Toretayev M., Khabdullina Z. Ecological Feasibility of Applying Technology in Recycling Garment and Knitwear Production. Environmental and Climate Technologies 2019:23SI(2):291–309. https://doi.org/10.2478/rtuect-2019-0069 Search in Google Scholar

Smith A., Linderoth J., Luedtke J. Optimization-based dispatching policies for open-pit mining. Optimization and Engineering 2021:22(3):1347–1387. https://doi.org/10.1007/s11081-021-09628-w Search in Google Scholar

Tyo S. G., Zeitinova Sh. B. Optimizing the contours of open pit mining with the use of mining and geological information systems and technologies. Complex Use of Mineral Raw Materials 2023:327(4):50–56. https://doi.org/10.31643/2023/6445.39 Search in Google Scholar

Rakhmangulov A., Burmistrov K., Osintsev N. Sustainable open pit mining and technical systems: concept, principles, and indicators. Sustainability 2021:13(3):1101. https://doi.org/10.3390/su13031101 Search in Google Scholar

Bogusz K., Sulich A. The sustainable development strategies in mining industry, In: Soliman, K.S. (ed.) Education Excellence and InnovationManagement through Vision2020. International Business Information Management Association (IBIMA). Search in Google Scholar

Stevens R. Mineral Exploration and Mining Essentials. Pakawau Geomanagement, Inc. Search in Google Scholar

Koptev, V.Yu., Kopteva, A.V., Ivanova, T.S. Directions for the development of transport machines for open-pit mining. Journal of Applied Engineering Science 2021:19(1):137–141. https://doi.org/10.5937/jaes0-28708 Search in Google Scholar

Oggeri C., Fenoglio T., Godio A., Vinai R. Overburden management in open pits: Options and limits in large limestone quarries. International Journal of Mining Science and Technology 2018:29(2):217–228. https://doi.org/10.1016/j.ijmst.2018.06.011 Search in Google Scholar

Shakenov A., Sładkowski A., Stolpovskikh I. Haul road condition impact on tire life of mining dump truck. Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu 2022:6:25–29. https://doi.org/10.33271/nvngu/2022-6/025 Search in Google Scholar

Mindur L. Combinedintermodal transport – The global trends. Transport Problems 2021:16(3):65–75. https://doi.org/10.21307/tp-2021-042 Search in Google Scholar

Darling P. (ed.) SME Mining Engineering Handbook (3rd Edition). Colorado: Society for Mining, Metallurgy, and Exploration Inc. Search in Google Scholar

Ponomarenko M. R., Kutepov Yu. I. Mining Complexity Assessment to Substantiate Deformation Monitoring at Open Pit Mines. Journal of Mining Science 2022:57:986–994. https://doi.org/10.1134/S1062739121060119 Search in Google Scholar

Tyo S. G., Zeitinova Sh. B. Optimizing the contours of open pit mining with the use of mining and geological information systems and technologies. Complex Use of Mineral Resources 2023:327(4):50–56. https://doi.org/10.31643/2023/6445.39 Search in Google Scholar

Gu Q., Xue B., Ruan S., Li X. A road extraction method for intelligent dispatching based on MD-Link NeSt network in open-pit mine. International Journal of Mining Reclamation and Environment 2021:35(9):656–669. https://doi.org/10.1080/17480930.2021.1949800 Search in Google Scholar

Xu T., Shi F., Liu W. Research on Open-pit Mine Vehicle Scheduling Problem with Approximate Dynamic Programming. IEEE International conference on industrial cyber physical systems (ICPS), 2019. https://doi.org/10.1109/ICPHYS.2019.8780275 Search in Google Scholar

Chen Q., Niu Y., Xiao C. Study on the Influence of Wet Backfilling in Open Pit on Slope Stability. Sustainability 2023:15(16):12492. https://doi.org/10.3390/su151612492 Search in Google Scholar

Ren Z., Wang L., He Z. Open-Pit Mining Area Extraction from High-Resolution Remote Sensing Images Based on EMANet and FC-CRF. Remote Sensing 2023:15(15):3829. https://doi.org/10.3390/rs15153829 Search in Google Scholar

Yakovlev V. L., Bersenev V. A., Glebov A. V., Kulniyaz S. S., Marinin M. A. Selecting Cyclical-and-Continuous Process Flow Diagrams for Deep Open Pit Mines. Journal of Mining Science 2019:55:783–788. https://doi.org/10.1134/S106273911905615X Search in Google Scholar

Kovshov S. V., Pasynkov A. V. Evaluation of dust emissions during transportation of rock mass at deposits developedopen pitmine. Proceedings of the Tula State University – sciences of Earth. https://doi.org/10.46689/2218-5194-2020-2-1-78-87 Search in Google Scholar

Shi Shuaihang, Guo Zizheng, Ding Peng, Tao Yabin, Mao Hui, Jiao Zhichao. Failure Mechanism and Stability Control Technology of Slope during Open-Pit Combing Underground Extraction: A Case Study from Shanxi Province of China. Sustainability 2022:14(14):8939. https://doi.org/10.3390/su14148939 Search in Google Scholar

Tolovkhan B., Demin V., Amanzholov Z., Smagulova A., Tanekeyeva G., Zairov S., Krukovskyi O., Cabana E. Substantiating the rock mass control parameters based on the geomechanical model of the Severny Katpar deposit, Kazakhstan. Mining of Mineral Deposits 2022:16(3):123–133. https://doi.org/10.33271/mining16.03.123 Search in Google Scholar

Abdellah W. R., Hirohama C., Sainoki A., Towfeek A. R., Ali M. A. M. Estimating the Optimal Overall Slope Angle of Open-Pit Mines with Probabilistic Analysis. Applied Sciences 2022:12(9):4746. https://doi.org/10.3390/app12094746 Search in Google Scholar

Hustrulid W., Kuchta M., Martin R. Open Pit Mine Planning and Design. – V.1: Fundamental. 3rd ed. Taylor and Francis. Search in Google Scholar

Kuzmin S., Kadnikova O., Altynbayeva G., Turbit A., Khabdullina Z. Development of a new environmentallyfriendly technology for transportation of mined rock in the opencast mining. Environmental and Climate Technologies 2020:24(1):341–354. https://doi.org/10.2478/rtuect-2020-0019 Search in Google Scholar

Sładkowski A., Utegenova A., Kuzmin S., Rakishev B., Stolpovskikh I. Energy advantages of container transport technology in deep careers. Naukovyi Visnyk Nationalnoho Hirnychoho Universytetu 2019:5:29–34. https://doi.org/10.29202/nvngu/2019-5/3 Search in Google Scholar

Hussan B., Lozynska M. I., Takhanov D. K., Oralbay A. O., Kuzmin S. L. Assessing the quality of drilling-andblasting operations at the open pit limiting contour. Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu 2021:6:42–48. https://doi.org/10.33271/nvngu/2021-6/042 Search in Google Scholar

Khussan B., Abdiev A., Bitimbayev M., Kuzmin S., Issagulov S., Matayev A. Substantiation and development of innovative container technology for rock mass lifting from deep open pits. Mining of Mineral Deposits 2022:16(4):87–95. https://doi.org/10.33271/mining16.04.087 Search in Google Scholar

Rakishev B. R. Technological complexes of open–pit mining: monograph / Almaty: KazNTU. – 313 p. Search in Google Scholar

Rakishev B. R., Kovrov A. S., Moldabaev S. K., Babiy E. V. Ensuring geomechanical stability of embankments for conveyors with cyclic flow technology. Almaty: Bulletin of the National Academy of Sciences of the Republic of Kazakhstan. 2016. Search in Google Scholar

Husan B. Methodological guidelines for the implementation of practical exercises in the discipline ‘Aerology of quarries’. Karaganda: Karaganda Technical University. 2018. Search in Google Scholar

Idioma:
Inglés
Calendario de la edición:
2 veces al año
Temas de la revista:
Ciencias de la vida, Ciencias de la vida, otros