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PROBABILISTIC MODEL OF LANDSLIDE PROCESSES BASED ON MARKOV CHAINS
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Leibman, M.O., Kizyakov, A.I.: Cryogenic Landslides of Yamal and Ugor Peninsula (Kriogennye opolzni Yamala i Ugorskogo poluostrova) PH IKZ CO RAN, Moscow, Russia, pp 206, 2007
Manconi, A., P. Allasia, D. Giordan, M. Baldo, G. Lollino and A. Corazza, Near-real-time 3D Surface Deformation Model obtained via RTS Measurements. Proceedings of World Landslide Forum 2, October 3-9, 2011, Rome, Italy, 2011
Kjuntsel V.V. Universal system of cycles in nature, Tsycly prirodnykh protsessov, opasnykh yavlenii I ekologitcheskoye prognozirovanie, issue 2, Moscow, Russia, pp. 92-96, 1992.
Van Den Eeckhaut, M., Hervs, J., Jaedicke, C., Malet, J.-P., Montanarella, L., Nadim, F.: Statistical Modelling of Europe-wide Landslide Susceptibility using Limited Landslide Inventory Data. Landslides, 9, pp. 357-369, 2012
Victorov, A.S. General Problems of the Mathematical Morphology of Landscape (Osnovnye problemy matematicheskoi morfologii landshafta), PH “Nauka, Moscow, Russia, pp. 252, 2006
Victorov A.S., Orlov T.V, Trapeznikova O.N. Landslide modeling basing on probability theory of renewal processes, Engineering Geology for Society and Territory, Volume 2,Springer International Publishing Switzerland, pp.1451- 1454, 2015
Osipov V.I. Kutepov V.M., Zverev V.P. at al Dangerous exogenous processes (Opasnye ekzogennye prosessy), Moscow, Russia, pp.290, 1999
Ibe Oliver C. Markov Processes for Stochastic Modeling, Newnes, pp.514, 2013
Spouge, John L.: Inequalities on the Overshoot beyond a Boundary for Independent Summands with Differing Distributions, Statistics & Probability Letters 77 (14), pp.1486–14 89, 2007. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org
Leibman, M.O., Kizyakov, A.I.: Cryogenic Landslides of Yamal and Ugor Peninsula (Kriogennye opolzni Yamala i Ugorskogo poluostrova) PH IKZ CO RAN, Moscow, Russia, pp 206, 2007
Manconi, A., P. Allasia, D. Giordan, M. Baldo, G. Lollino and A. Corazza, Near-real-time 3D Surface Deformation Model obtained via RTS Measurements. Proceedings of World Landslide Forum 2, October 3-9, 2011, Rome, Italy, 2011
Kjuntsel V.V. Universal system of cycles in nature, Tsycly prirodnykh protsessov, opasnykh yavlenii I ekologitcheskoye prognozirovanie, issue 2, Moscow, Russia, pp. 92-96, 1992.
Van Den Eeckhaut, M., Hervs, J., Jaedicke, C., Malet, J.-P., Montanarella, L., Nadim, F.: Statistical Modelling of Europe-wide Landslide Susceptibility using Limited Landslide Inventory Data. Landslides, 9, pp. 357-369, 2012
Victorov, A.S. General Problems of the Mathematical Morphology of Landscape (Osnovnye problemy matematicheskoi morfologii landshafta), PH “Nauka, Moscow, Russia, pp. 252, 2006
Victorov A.S., Orlov T.V, Trapeznikova O.N. Landslide modeling basing on probability theory of renewal processes, Engineering Geology for Society and Territory, Volume 2,Springer International Publishing Switzerland, pp.1451- 1454, 2015
Osipov V.I. Kutepov V.M., Zverev V.P. at al Dangerous exogenous processes (Opasnye ekzogennye prosessy), Moscow, Russia, pp.290, 1999
Ibe Oliver C. Markov Processes for Stochastic Modeling, Newnes, pp.514, 2013
Spouge, John L.: Inequalities on the Overshoot beyond a Boundary for Independent Summands with Differing Distributions, Statistics & Probability Letters 77 (14), pp.1486–14 89, 2007. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org
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