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Methods for computer aiding the configuration and assessment of auxiliary mine transportation means

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Mine transportation of materials in underground mine workings is realized by mine underground railways as well as by suspended monorails or floor-mounted railway. Transportation is realized on tracks placed on the floor of working or on rails suspended to roadway support. Each transport operation must be preceded by a transport design project, made in accordance with obligatory legislation. A part of the project are traction calculations. Their implementation in a computer program allows for minimization of the possibility of errors during the configuration of suspended queues and conducting traction calculations, which consequently leads to improve the level of safety. The article discusses the modular Safe Trans Design system, supporting the design of auxiliary mine transportation. The system has been implemented in the mines of JSW S.A. The assumptions and structure of the system as well as algorithms of operation of the ‘configurator of transportation sets’ and ‘assessment and reporting module’ are presented. The method of creating an auxiliary mine transportation system project is presented. Safe Trans Design system is used in planning, organizational and training activities implemented as part of transport safety management in mining plants. Developed methods can be easily adapted to other legislations of hard coal producers’ countries, where suspended monorails are used in underground auxiliary mining transportation systems.
Wydawca
Rocznik
Tom
Strony
268--275
Opis fizyczny
Bibliogr. 25 poz., rys.
Twórcy
  • KOMAG Institute of Mining Technology Pszczyńska 37, 44-101 Gliwice, Poland
autor
  • KOMAG Institute of Mining Technology Pszczyńska 37, 44-101 Gliwice, Poland
Bibliografia
  • [1] V. Adjiski, D. Mirakovski, Z. Despodov, S. Mijalkovski. “Simulation and optimization of evacuation routes in case of fire in underground mines“, Journal of Sustainable Mining, vol. 14, issue 3, pp. 133-143, 2015.
  • [2] T. Alix, Y. Benama, N. Perry. “A framework for the design of a Reconfigurable and Mobile Manufacturing System“, Procedia Manufacturing, vol. 35, pp. 304-309, 2019.
  • [3] N. Brahimi, A. Dolgui, E. Gurevsky, A. R. Yelles-Chaouche. “A literature review of optimization problems for reconfigurable manufacturing systems“, IFAC-PapersOnLine, vol. 52, issue 13, pp. 433-438, 2019.
  • [4] J. Cheng, J. Mei, S. Peng, C. Qi, Y. Shi. “Comprehensive consultation model for explosion risk in mine atmosphereCCMER“, Safety Science, vol. 120, pp. 798-812, 2019.
  • [5] J. Cheng, Y. Wu, H. Xu, J. Liu, Y. Yang, H. Deng, Y. Wang. “Comprehensive and Integrated Mine Ventilation Consultation Model – CIMVCM“, Tunnelling and Underground Space Technology, vol. 45, pp. 166-180, 2015.
  • [6] O. Ezzat, K. Medini, X. Boucher, X. Delorme. “Product and service modularization for variety management”, Procedia Manufacturing, vol. 28, pp. 148-153, 2019.
  • [7] D. Jasiulek, K. Stankiewicz, M. Woszczyński. “Intelligent self-powered sensors in the State-of-the-Art control systems of mining machines“, Arch. Min. Sci., vol. 61 (4), pp. 907-915, 2016.
  • [8] Jasiulek, Dariusz; Bartoszek, Slawomir; Perutka, Karel; et al.. Acta Montanistica Slovaca, Volume 24 , Issue: 4 , Pages: 2019 , 391-401
  • [9] J. Karliński, M. Ptak, P. Działak, E. Rusiński. “The approach to mining safety improvement: Accident analysis of an underground machine operator“, Archives of Civil and Mechanical Engineering, vol. 16, issue 3, pp. 503-512, 2016.
  • [10] B. Karwat, R. Machnik, J. Niedźwiedzki, M. Nogaj, P. Rubacha, E. Stańczyk. “Calibration of bulk material model in Discrete Element Method on example of perlite D18-DN“, Maintenance and Reliability, vol. 21 (2), pp. 351-357, 2019.
  • [11] Kovanič, Ľ.: Possibilities of terrestrial laser scanning method in monitoring of shape deformation in mining plants. Inżynieria Mineralna. 31, 2013, 1, 29-41, ISSN 1640-4920.
  • [12] Kovanič, L., Blišťan, P., Zelizňakova, V., Palkova, J., Baulovič, J. : Deformation investigation of the shell of rotary kiln using terrestrial laser scanning (TLS) measurement, Metalurgija, vol.58, nr. 3-4, str. 311-314, 2019. https://hrcak.srce.hr/218411
  • [13] M. Latos, K. Stankiewicz. “Studies on the effectiveness of noise protection for an enclosed industrial area using global active noise reduction systems“, Journal of Low Frequency Noise Vibration and Active Control, vol. 34 (1), pp. 9- 20, 2015.
  • [14] I. Maganha, C. Silva, L. M. D. F. Ferreira. “Understanding reconfigurability of manufacturing systems: An empirical analysis“, Journal of Manufacturing Systems, vol. 48, part A, pp. 120-130, 2018.
  • [15] A. Manowska, K. Tobór Osadnik, M. Wyganowska. “Economic and social aspects of restructuring Polish coal mining: Focusing on Poland and the EU“, Resources Policy, vol. 52, pp. 192-200, 2017.
  • [16] MINTOS European Project: Improving Mining Transport Reliability. RFCS Coal RTD Programme, contract No. RCRCT-2007-00003, 2007÷2010.
  • [17] C. Newman, Z. Agioutantis, N. Schaefer. “Development of a web-platform for mining applications“, International Journal of Mining Science and Technology, vol. 28, issue 1, pp. 95-99, 2018.
  • [18] B. Polnik. “Tests of the HK-1 Module of the Mobile Mining Machine“, ECS Transactions, vol. 95, No 1, pp. 389-396, 2019.
  • [19] P. Bozek. Robot path optimization for spot welding applications in automotive industry. Tehnički Vjesnik - Technical Gazette. Vol. 20, No. 5, pp.913-917, 2013.
  • [20] D. Prostański, M. Vargová. “Installation optimization of airand-water sprinklers at belt conveyor transfer points in the aspect of ventilation air dust reduction efficiency“, Acta Montanistica Slovaca, vol. 23, issue 4, pp. 422-432, 2018.
  • [21] Regulation of the Minister of Energy. “On detailed requirements for conducting underground mining plant operations”, Journal of Laws of 2017, item 1118, 2016.
  • [22] K. Stankiewicz, D. Jasiulek, J. Rogala-Rojek, S. Bartoszek. “Selected, state-of-the art mechatronic systems in polish underground mining industry”, ISARC 2013-30th International Symposium on Automation and Robotics in Construction and Mining. Held in Conjunction with the 23rd World Mining Congress, 2013.
  • [23] J. Tokarczyk. “Method for virtual prototyping of cabins of mining machines operators“, Arch. Min. Sci., vol. 60, No 1, pp. 329-340, 2015.
  • [24] Baranov M., Bozek P., Prajova V., Ivanova T., Novokshonov D., Korshunov A. Constructing and calculating of multistage sucker rod string according to reduced stress. Acta Montanistica Slovaca. Vol. 22, no. 2,pp. 107-115, 2017.
  • [25] M. Windheim, N. Gebhardt, D. Krause. “Towards a Decision-Making Framework for Multi-Criteria Product Modularization in Cooperative Environments”, Procedia CIRP, vol. 70, pp. 380-385, 2018.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-63336ea9-b37b-4023-9405-2bab4fdaebbe
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