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Distinct Element Simulation of a Landslide Process

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Języki publikacji
EN
Abstrakty
EN
The paper presents a numerical simulation of the development of a catastrophic landslide in a sandstone quarry and methods of reconstructing the quarry to its previous condition from before the landslide. The important objective of the paper is to present the capabilities of the numerical method used in the analysis of the landslide process, namely the Distinct Element Method (DEM). This method is poorly known, though it is capable of solving important geotechnical problems in which massive displacements are modelled. The features of the method are presented on the basis of a case study. Therefore a numerical analysis is carried out to show the performance of DEM in generating a displacement of several dozen meters in the example of a catastrophic landslide that occurred some years ago in a sandstone quarry. This engineering problem makes it possible to describe and analyse the mechanisms, causes and consequences of the landslide.
Słowa kluczowe
Rocznik
Strony
3--16
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
  • Institute of Hydro-Engineering, Polish Academy of Sciences, 7 Kościerska, 80-328 Gdańsk, Poland
  • Institute of Hydro-Engineering, Polish Academy of Sciences, 7 Kościerska, 80-328 Gdańsk, Poland
Bibliografia
  • Bober L., Zabuski L. (1993) Flysch Slope Classification from Viewpoint of the Landslide Prediction, Proc. Int. Symp. “Geotechnical Engineering of Hard Soils-Soft Rocks”, Athens 1993, A.A. Balkema, Rotterdam – Brookfield, Vol. 2, 1065–1072.
  • Bober L., Thiel K., Zabuski L. (1997) Landslide Phenomena in the Polish Carpathian Flysch: Geological and Engineering Properties of Selected Landslides, IBW PAN, Gdansk (in Polish).
  • Borysławski A., Burtan J., Golonka J., Oszczypko N., Paul Z., Slaczka A., Ryłko W. (1981) Section of Geologic Map of Poland elaborated in 1979, Wydawnictwa Geologiczne, Warszawa.
  • Cundall P. (1971) A Computer Model for Simulating Progressive Large Movements in Blocky Rock Systems, Proc. Symp. ISRM, Nancy, Vol. I, pap. II-8.
  • Cundall P., Hart R. D. (1993) Numerical Modelling of Discontinua, [in:] J. A. Hudson, ed., Comprehensive Rock Engineering, Pergamon Press, Oxford-NY-Seoul-Tokyo, Vol. 2, 231–261.
  • Giani G. P. (1992) Rock Slope Stability Analysis, A.A. Balkema, Rotterdam/Brookfield.
  • Hoek E., Bray J. D. (1981) Rock Slope Engineering, 3rd edition. Taylor & Francis Group., London, New York.
  • Itasca Consulting Group, Inc. (2004) UDEC Manual, Itasca Consulting Group Inc.
  • Marcato G., Silvano S., Zabuski L. (2005) Modellazione di ammassi rocciosi instabili con il metodo degli elementi distinti, Giornale do Geologia Applicata, 2, 87–92.
  • Marcato G., Zabuski L., Silvano S. (2007) Capabilities of Continuous and Discontinuous Modelling of the Rock Slopes – a Landslide in the Carnian Alps (Italy) Using as an Example, Geophysical Research Abstracts, 9: 02371, European Geosciences Union.
  • Starfield A. M., Cundall P. A. (1988) Towards a Methodology for Rock Mechanics Modelling, International Journal of Rock Mechanics and Mining Sciences, 25, 99–106.
  • Zabuski L., Marcato G. (2005) Numerical Modelling of the Landslide Processes Using Discontinuous Approach, Proc. Int. Conf. “Mass Movement Hazard in Various Environments”, Polish Geological Institute Special Papers 20, Kraków, 119–124.
  • Zabuski L., Marcato G. (2014) Analysis of Deformation Processes of Slopes with Taking into Account Discontinuous Character of the Rock Mass (in Polish with an English summary), Przegląd Geologiczny, 62, 308–316.
  • Zabuski L. (2019) Three-Dimensional Analysis of a Landslide Process on a Slope in Carpathian Flysch, Archives of Hydro-Engineering and Environmental Mechanics, 66 (1–2), 27–45.
  • Zabuski L., Wójcik A., Gil E., Mrozek T., Raczkowski W. (2009) Landslide Process in a Flysch Massif – Case Study of the Kawiory Landslide, Beskid Niski Mts. (Carpathians, Poland), Geological Quarterly, 53 (3), PGI, Warsaw, 317–332.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bc1551f8-1b7c-4d29-9553-2687367d9cbe
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