КІНЕМАТИЧНІ ОСОБЛИВОСТІ НЕОБОРОТНИХ ЗРУШЕНЬ ҐРУНТУ ПІД ЧАС ЙОГО ЛОКАЛЬНОГО ЗСУВУ
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Sadovenko I.A.et al. Dynamics of loess mass deformation due to technogenic load. Вісник Національного університету водного господарства та природокористування. 2(66)2014: 164–171.
Choi, K. Y. and Cheung, R.W.M. : 2013, Landslide disaster prevention and mitigation through works in Hong Kong. Journal of Rock Mechanics and Geotechnical Engineering 5:354–365.
Amitrano, D., Gaffet, S., Malet, J-P., and Maquaire, O.: 2017, Understanding mudslides through micro-seismic monitoring: the Super-Sauze (South-East French Alps) case study. Bull. Soc. géol. Fr. 178:149–157.
Kondepudi, D. and Prigogin, I.: 2015, Modern thermodynamics: from heat engines to dissipative structures. Second edition. John Wiley & Sons; XXVI, 524.
Lia, X. Y., Zhang, L. M. and Jiang, S. H.: 2016, Updating performance of high rock slopes by combining incremental time-series monitoring data and three-dimensional numerical analysis. International Journal of Rock Mechanics and Mining Sciences 83: 252–261.
Cundall P. A. Explicit Finite Difference Methods in Geomechanics. Numerical Methods in Engineering (Proceedings of the EF Conference on Numerical Methods in Geomechanics, Blacksburg, Virginia, 1976), Vol. 1, pp. 132–150.
FLAC3D Fast Lagrangian Analysis of Continua in 3 Dimensions. Itasca. – 2015. 213 p.
Szafarczyk, A. and Gawalkiewicz, R.: 2015, Case study of the tensor analysis of ground deformations evaluated from geodetic measurements in landslide area. Acta Geodyn. Geomater., 13, No. 2 (182), 213–222.