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Numerical analysis of road pavement thermal deformability, based on Biot viscoelastic model of porous medium


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[1] Gradkowski K., Load-bearing capacity of motor road pavements strengthened with geosynthetic materials, Warsaw University of Technology Publishing House, Warsaw, 2008, (in Polish).Search in Google Scholar

[2] Biot M.A., General theory of three-dimensional consolidation, J. Appl. Phys., 1941, No. 12, 155.10.1063/1.1712886Search in Google Scholar

[3] Biot M.A., General Solutions of the Equations of Elasticity and Consolidation of a Porous Material, J. Appl. Mech., 1956, 23.10.1115/1.4011213Search in Google Scholar

[4] Bartlewska-Urban M., Strzelecki T., Effect of variation of temperature field on the process of thermal consolidation of tailings pond “Żelazny Most”, Studia Geotechnica et Mechanica, 2014, 36(2).10.2478/sgem-2014-0021Search in Google Scholar

[5] Kondracki J., Geograficzna mapa Polski, Państ. Wydaw. Naukowe, 1978.Search in Google Scholar

[6] Bartlewska M., Determination of the effective parameters of cohesive soil rheological models, PhD thesis, Wrocław University of Technology, Faculty of Geoengineering, Mining and Geology, Wrocław, 2009, (in Polish).Search in Google Scholar

[7] Geological Survey Plan, 2011.Search in Google Scholar

[8] FlexPDE professional v 6.0 manual.Search in Google Scholar

[9] Bartlewska-Urban M., Strzelecki T., Urban R., Determination of effective parameters of Biot model with the Kelvin–Voight rheological skeleton, Archives of Civil and Mechanical Engineering 01/2015. DOI: 10.1016/j.acme.2014.12.007.10.1016/j.acme.2014.12.007Search in Google Scholar

[10] Bartlewska M., Strzelecki T., Equations of Biot consolidation with Kelvin–Voigt rheological frame, Studia Geotechnica et Mechanica, 2009, Vol. XXXI, No. 2, 3–15.Search in Google Scholar

[11] Bartlewska M., Strzelecki T., One-dimensional consolidation of the porous medium with the rheological Kelvin–Voight skeleton, Studia Geotechnica et Mechanica, 2008, Vol. XXX, No. 1–2.Search in Google Scholar

eISSN:
2083-831X
ISSN:
0137-6365
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Geowissenschaften, andere, Materialwissenschaft, Verbundwerkstoffe, Poröse Materialien, Physik, Mechanik und Fluiddynamik