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Geometrization of a 3D numerical model of an underground facility based on the results of terrestrial laser scanning Cover

Geometrization of a 3D numerical model of an underground facility based on the results of terrestrial laser scanning

By: Maciej Bodlak  
Open Access
|Jul 2024

References

  1. Fuławka, K., Pytel, W., Szumny, M., Mertuszka, P., Pałac-Walko, B., Hartlieb, P., Jakić, M., Nöger, M., (2022). Prototype of Instrumented Rock Bolt for Continuous Monitoring of Roof Fall Hazard in Deep Underground Mines. Sensors, 23(1), 154. https://doi.org/10.3390/s23010154.
  2. Fuławka, K., Stolecki, L., Szumny, M., Pytel, W., Jaśkiewicz-Proć, I., Jakić, M., Nöger, M., Hartlieb, P., (2022). Roof Fall Hazard Monitoring and Evaluation—State-of-the-Art Review. Energies, 15(21), 8312. https://doi.org/10.3390/en15218312
  3. Mao, J.Z., Zuo, G., (2017). Modeling method of FLAC3D based on RHINO-KUBRIX and deformation analysis of tunnel lining structure. Advances in Engineering Research, 112, pp. 520–528. http://doi.org/10.2991/icreet-16.2017.87.
  4. Wang, S., Zhang, Q., (2010). A Coupling Modeling Method with MIDAS/GTS-FLAC 3D and Its Application. Journal of Civil, Architectural & Environmental Engineering, 32(1), pp. 12–17.
  5. Kajzar, V., Kukutsch, R., Heroldová, N., (2015). Verifying the possibilities of using a 3D laser scanner in the mining underground. Acta Geodynamica et Geomaterialia 12(1), 177. https://doi.org/10.13168/AGG.2015.0004
  6. Maciaszek, J., Gawałkiewicz, R., Gawałkiewicz, I., (2010). Od modelu do numerycznej mapy przestrzennej. Geologia, 36(3), pp. 331–344. (in polish)
  7. Janus, J., Ostrogórski, P. (2022). Underground Mine Tunnel Modelling Using Laser Scan Data in Relation to Manual Geometry Measurements. Energies 15(7), 2537. https://doi.org/10.3390/en15072537
  8. Fekete, S., Diederichs, M., Lato, M. (2010). Geotechnical and operational applications for 3-dimensional laser scanning in drill and blast tunnels. Tunnelling and Underground Space Technology 25(5), pp.614–628. https://doi.org/10.1016/j.tust.2010.04.008
  9. Cieślik, J., Flisiak, J., Tajduś, A., (2009). Analiza warunków stateczności wybranych komór KS „Wieliczka” na podstawie przestrzennych obliczeń numerycznych. Górnictwo i Geoinżynieria, 33(3/1), pp. 91–102 (in polish)
  10. D’Obryn, K., Hydzik-Wiśniewska, J., (2013). Selected aspects of numerical modelling of the salt rock mass: the case of the „Wieliczka” salt mine. Archives of Mining Sciences, Vol. 58 (2013), No 1, p. 73–88. DOI:10.2478/AMSC-2013-0005
  11. D’Obryn, K., Hydzik-Wiśniewska, J., (2017). Assessment of rock mass stability in the historic area of levels IV-V of the „Wieliczka” salt mine of the „Wieliczka” salt mine. Archives of Mining Sciences, Vol. 62, No 1, p. 189–202. DOI 10.1515/amsc-2017-0014
  12. Bock, S., (2015) New open-source ANSYS-SolidWorks-FLAC3D geometry conversion programs. Journal of sustainable mining, 14, pp. 124–132 https://doi.org/10.1016/j.jsm.2015.11.002
  13. Madziarz, M. (2012). Historical ore mining sites in Lower Silesia (Poland) as geo-tourism and industrial tourism attraction. International Twin Conference GEOTOUR & IRSE 2012 Geoparks, Geoheritage and Geoconservation IRSE: History of Central European Mining, Salgótarján, Hungary 04–06 October. https://doi.org/10.13140/RG.2.1.3702.4803
  14. Pytel, W., Fuławka, K., Pałac-Walko, B., Mertuszka, P., (2023). Numerical and Analytical Determination of Rockburst Characteristics: Case Study from Polish Deep Copper Mine. Applied Sciences, 13(21), 11881. https://doi.org/10.3390/app132111881
  15. CloudCompare - Open Source project. 3D point cloud and mesh processing software.
  16. FLAC (FLAC2D/FLAC3D) — Itasca Software 9.0 documentation (itascacg.com). Itasca Consulting Group
  17. Trimble Inc.: Laser scanner TX8 technical data sheet
  18. Trimble RealWorks - Trimble Geospatial. Point cloud processing and analysis software for 3D laser scanning professionals.
  19. Rhino - Rhinoceros 3D. Design, Model, Present, Analyze, Realize... (rhino3d.com)
DOI: https://doi.org/10.2478/sgem-2024-0012 | Journal eISSN: 2083-831X | Journal ISSN: 0137-6365
Language: English
Page range: 184 - 192
Submitted on: Apr 12, 2024
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Accepted on: Jun 3, 2024
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Published on: Jul 18, 2024
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2024 Maciej Bodlak, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution 4.0 License.