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2024 | Vol. 69, no. 2 | 289--302
Tytuł artykułu

The influence of rope guide sleeve clearance on the lateral oscillation of rope guided conveyance in mine hoist system caused by the aerodynamic force

Treść / Zawartość
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The lateral oscillation behaviour of rope guided conveyances was so complicated that the rope guided hoisting system hasn’t been understood thoroughly so far. In this study, the CFD tool was used to obtain the aerodynamic force acting on the conveyance by writing a user-defined function (UDF), and then the oscillation behaviour of rope guided conveyances was investigated numerically by Matlab with the variation clearance between the guide sleeve and the guide rope. A non-smooth oscillation model of the rope guided conveyance was established by considering the clearance between the guide sleeve and the guide rope. Results show that the aerodynamic buffeting forces had a notable influence on the oscillation behaviour of rope guided conveyances during the conveyances passing each other. The lateral acceleration of the rope guided conveyances showed a minor change with the increase of the clearance. However, the oscillation amplitude of the conveyances manifested a positive correlation with the rope guide sleeve clearance.
Wydawca

Rocznik
Strony
289--302
Opis fizyczny
Bibliogr. 20 poz., rys., tab., wykr.
Twórcy
autor
  • Anhui University of Science and Technology, Mechanical Industry Key Laborat ory of Intelligent Mining and Beneficiat ion Equipment, China
  • Anhui University of Science and Technology, School of Artificial Intelligence, China
  • Anhui University of Science and Technolog
  • Anhui University of Science and Technology, Mechanical Industry Key Laborat ory of Intelligent Mining and Beneficiat ion Equipment, China
  • Anhui University of Science and Technology, School of Artificial Intelligence, China
Bibliografia
  • [1] R.S. Hamilton, Rope-guided hoisting for 2000 and beyond-engineering rope guides for deep shafts. In: Proceedingsof Mine Hoisting 2000, Fifth International Conference, South African Institute of Mining and MetallurgySymposium Series S25, South African Institute of Mining and Metallurgy, Johannesburg (2000).
  • [2] W. Slonina, W. Stühler, Safety problems posed by rope shaft guides. Commission of the European Communities(Mines Safety and Health Commission), Luxembourg (1980).
  • [3] T.H. Han, K.H. Kim, U.C. Han, K.M. Li, Simulation for motion of platform during truck changing in truckliftslope hoisting system in open pit mines using adams and matlab/Simulink. Arch. Min. Sci. 66 (3), 393-406 (2021).DOI: https://doi.org/10.24425/ams.2021.138596.
  • [4] Y . Wang, W.D. Zhu, Z. Kou, Dynamic Simulation of a Dual-Cable Parallel Winding Hoisting System with FlexibleGuides. Int. J. Struct. Stab. Dy. 22 (02), 2250018-2250038 (2022).DOI: https://doi.org/10.1142/S0219455422500183.
  • [5] R. Wu, Z. Zhu, G. Cao, Influence of ventilation on flow-induced vibration of rope-guided conveyance. Journal ofVibroengineering 17 (2), 978-987 (2015).
  • [6] J . Wang, W.T.T. van Horssen, On resonances and transverse and longitudinal oscillations in a hoisting system dueto boundary excitations. Nonlinear Dynam. 111 (6), 5079-5106 (2023).DOI: https://doi.org/10.1007/s11071-022-08052-8.
  • [7] M.E. Greenway, The use of rope guides for deep shafts, in: B. Johansson (Eds.), Hoist & Haul 2015: Proceedingsof the International Conference on Hoisting and Haulage. The Society for Mining, Metallurgy and Exploration,Stockholm, Sweden (2015).
  • [8] K.W. Buchinski, Skip rotation: a collision course or controllable motion. In: 11th CIM Underground OperatorsConference, Saskatoon (1993).
  • [9] G .J. Krige, Guidelines for the design of rope guides, in: Hoist & Haul 2005: Proceedings of the InternationalConference on Hoisting and Haulage. Australasian Institute of Mining and Metallurgy, Perth (2005).
  • [10] M. Greenway, B. Jujnovich, S. Grobler, N. Baroni, Behaviour of rope guided conveyances. In: Proceedings ofMine Hoisting 2000, Fifth International Conference, South African Institute of Mining and Metallurgy SymposiumSeries S25, South African Institute of Mining and Metallurgy, Johannesburg (2000).
  • [11] Xu, C., Simulation and Computing of Lateral Aerodynamic Force on Hoisted Container with Rope Guide. Mod.Min. 50 (1), 138-142 (2019). [in Chinese]. DOI: https://doi.org/10.3969/j.issn.1674-6082.2019.01.034.
  • [12] S. Quan, T. Li, J. Butty, Investigation on Conveyance Motion Using CFD and Structural Analysis. In: B. Johansson(Eds.), Hoist & Haul 2015: Proceedings of the International Conference on Hoisting and Haulage, The Society forMining, Metallurgy and Exploration, Stockholm, Sweden (2015).
  • [13] G .J. Krige, Development of Design Guidelines for Rope Guided Hoisting Report 1: CFD Results. Anglo TechnicalDivision, Johannesburg (2001).
  • [14] R. Wu, Z. Zhu, G. Cao, Computational fluid dynamics modeling of rope-guided conveyances in two typical kindsof shaft layouts. PLoS One 10 (2), e118268 (2015). DOI: https://doi.org/10.1371/journal.pone.0118268.
  • [15] J .S. Haddad, O. Denyshchenko, D. Kolosov, S. Bartashevskyi, V. Rastsvietaiev, O. Cherniaiev, Reducing Wear ofthe Mine Ropeways Components Basing Upon the Studies. Arch. Min. Sci. 66 (4), 579-594 (2021).DOI: https://doi.org/10.24425/ams.2021.139598.
  • [16] R. Wu, Z. Zhu, G. Chen, G. Cao, W. Li, Simulation of the lateral oscillation of rope-guided conveyance based onfluid-structure interaction. J. Vibroeng. 16(3), 1555-1563 (2014).
  • [17] R.T. Ratan, Surface and Underground Excavations: Methods. Techniques and Equipment (2nd Edition), CRC Press(2013). ISBN 978-0-415-62119-9.
  • [18] S.S. Rao, Mechanical Vibrations (5th Edition). Prentice Hall (2011). ISBN 978-0-13212-819-3.
  • [19] J . Janus, Air flow modelling on the geometry reflecting the actual shape of the longwall area and goafs. Arch. Min.Sci. 66 (4), 495-509 (2021). DOI: https://doi.org/10.24425/ams.2021.139593.
  • [20] P . Darling, SME Mining Engineering Handbook (3rd Edition). Society for Mining, Metallurgy, and Exploration,Inc., Littleton (2011). ISBN 978-0-87335-264-2.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-9be617e0-7f3f-45ad-821d-076869622ffc
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