Mots-clés : glaciation
@article{VSPUI_2018_14_3_a0,
author = {G. I. Kurbatova},
title = {On the calculation of surfaces glaciation in seawater},
journal = {Vestnik Sankt-Peterburgskogo universiteta. Prikladna\^a matematika, informatika, processy upravleni\^a},
pages = {186--199},
year = {2018},
volume = {14},
number = {3},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/VSPUI_2018_14_3_a0/}
}
TY - JOUR AU - G. I. Kurbatova TI - On the calculation of surfaces glaciation in seawater JO - Vestnik Sankt-Peterburgskogo universiteta. Prikladnaâ matematika, informatika, processy upravleniâ PY - 2018 SP - 186 EP - 199 VL - 14 IS - 3 UR - http://geodesic.mathdoc.fr/item/VSPUI_2018_14_3_a0/ LA - ru ID - VSPUI_2018_14_3_a0 ER -
%0 Journal Article %A G. I. Kurbatova %T On the calculation of surfaces glaciation in seawater %J Vestnik Sankt-Peterburgskogo universiteta. Prikladnaâ matematika, informatika, processy upravleniâ %D 2018 %P 186-199 %V 14 %N 3 %U http://geodesic.mathdoc.fr/item/VSPUI_2018_14_3_a0/ %G ru %F VSPUI_2018_14_3_a0
G. I. Kurbatova. On the calculation of surfaces glaciation in seawater. Vestnik Sankt-Peterburgskogo universiteta. Prikladnaâ matematika, informatika, processy upravleniâ, Tome 14 (2018) no. 3, pp. 186-199. http://geodesic.mathdoc.fr/item/VSPUI_2018_14_3_a0/
[1] Vasilev F. P., “On finite difference methods for the solution of Stefan's single-phase problem”, U.S.S.R. Comput. Math. Math. Phys., 3:5 (1963), 1175–1191 | DOI | MR
[2] Kurbatova G. I., Ermolaeva N. N., “Analysis of the cylinder glaciation models in seawater”, Applied Mathematics and Information Sciences, 11:3 (2017), 925–930 | DOI
[3] Samarskii A. A., Moiseyenko B. D., “An economic continuous calculation scheme for the Stefan multidimensional problem”, U.S.S.R. Comput. Math. Math. Phys., 5:5 (1965), 43–58 | DOI
[4] Budak B. M., Sobol'eva E. N., Uspenskii A. B., “A difference method with coefficient smoothing for the solution of Stefan problems”, U.S.S.R. Comput. Math. Math. Phys., 5:5 (1965), 59–76 | DOI
[5] Eyres N. R., Hartree D. R., Ingham J. et al., “The calculation of variable heat flow in solids”, Philosophical Transactions of the Royal Society. Series A, 240 (1946), 1–57 | DOI | MR | Zbl
[6] Ermolaeva N. N., Kurbatova G. I., “Nonstationary model of the sea ice growing”, Vestnik of Saint Petersburg University of Technology and Design. Series Natural and Technical Sciences, 2017, no. 1, 3–8 (In Russian)
[7] Tichonov A. N., Samarskii A. A., Equations of mathematical physics, Pergamon Press Ltd., New York et al., USA, 1963, 781 pp. | MR
[8] Oleinik O. A., “On one solution method of the general Stefan problem”, Paper of AN USSR, 135:5 (1960), 1054–1057 (In Russian)
[9] Budak B. M., Vasilev F. P., Uspenskii A. B., “Difference methods of the solution some boundary Stefan problems”, Numerical methods in gas-dynamics, Calculating Centre of Moscow State University Publ., M., 1965, 139–183 (In Russian)
[10] Krivovichev G. V., Ermolaeva N. N., Kurbatova G. I., Miheev S. A., “Mathematical modelling of the glaciation process”, International Journal of Pure and Applied Mathematics, 113:5 (2017), 609–616
[11] Shamsundar N., Sparrow E. M., “Analysis of multidimensional conduction phase change via the enthalpy model”, J. Heat Transfer, 97:3 (1975), 333–340 | DOI
[12] Vasilev V. I., Maksimov A. M., Petov E. E., Cipkin G. G., The heat and mass transfer in the freezing ground, Nauka, Physmatlit Publ., M., 1996, 224 pp. (In Russian)