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@article{IIMI_2015_46_2_a9, author = {S. P. Kopysov and L. E. Tonkov and A. A. Chernova}, title = {Application of {VOF} and {SPH} to solve problems with a developed free surface}, journal = {Izvestiya Instituta Matematiki i Informatiki Udmurtskogo Gosudarstvennogo Universiteta}, pages = {76--84}, publisher = {mathdoc}, volume = {46}, number = {2}, year = {2015}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/IIMI_2015_46_2_a9/} }
TY - JOUR AU - S. P. Kopysov AU - L. E. Tonkov AU - A. A. Chernova TI - Application of VOF and SPH to solve problems with a developed free surface JO - Izvestiya Instituta Matematiki i Informatiki Udmurtskogo Gosudarstvennogo Universiteta PY - 2015 SP - 76 EP - 84 VL - 46 IS - 2 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/IIMI_2015_46_2_a9/ LA - ru ID - IIMI_2015_46_2_a9 ER -
%0 Journal Article %A S. P. Kopysov %A L. E. Tonkov %A A. A. Chernova %T Application of VOF and SPH to solve problems with a developed free surface %J Izvestiya Instituta Matematiki i Informatiki Udmurtskogo Gosudarstvennogo Universiteta %D 2015 %P 76-84 %V 46 %N 2 %I mathdoc %U http://geodesic.mathdoc.fr/item/IIMI_2015_46_2_a9/ %G ru %F IIMI_2015_46_2_a9
S. P. Kopysov; L. E. Tonkov; A. A. Chernova. Application of VOF and SPH to solve problems with a developed free surface. Izvestiya Instituta Matematiki i Informatiki Udmurtskogo Gosudarstvennogo Universiteta, Tome 46 (2015) no. 2, pp. 76-84. http://geodesic.mathdoc.fr/item/IIMI_2015_46_2_a9/
[1] Osher S., Sethian J. A., “Fronts propagating with curvature-dependent speed: Algorithms based on Hamilton–Jacobi formulations”, Journal of Computational Physics, 79:1 (1988), 12–49 | DOI | MR | Zbl
[2] Hirt C. W., Nichols B. D., “Volume of fluid (VOF) method for the dynamics of free boundaries”, Journal of Computational Physics, 39:1 (1981), 201–225 | DOI | Zbl
[3] Sethian J. A., Level set methods and fast marching methods, Cambridge University Press, Cambridge, 1999, 404 pp. | MR | Zbl
[4] Tonkov L. E., “Computation of viscous drop dynamics with level set method”, Vestn. Udmurt. Univ. Mat. Mekh. Komp'yut. Nauki, 2010, no. 3, 134–140 (in Russian)
[5] Monaghan J. J., Thompson M. C., Hourigan K., “Simulation of free surface flows with SPH”, Journal of Computational Physics, 110:2 (1994), 399–406 | DOI | Zbl
[6] Kleefsman K. M. T., Fekken G., Veldman A. E. P., Iwanowski B., Buchner B., “A Volume-of-Fluid based simulation method for wave impact problems”, Journal of Computational Physics, 206:1 (2005), 363–393 | DOI | MR | Zbl
[7] Kopysov S. P., Tonkov L. E., Chernova A. A., “Numerical simulation of the interaction with the barrier of an incompressible fluid by SPH”, Mesh methods for boundary-value problems and applications, Proc. of the 10th Int. Conf., Kazan University, Kazan, 2014, 412–417 (in Russian)
[8] Loitsyanskii L. G., Mechanics of liquid and gas, Nauka, M., 1978, 736 pp.
[9] Issa R. I., “Solution of implicitly discretised fluid flow equations by operator-splitting”, Journal of Computational Physics, 62:1 (1986), 40–65 | DOI | MR | Zbl
[10] Violeau D., Fluid mechanics and the SPH Method, Oxford University Press, Oxford, 2012, 616 pp. | MR | Zbl
[11] Macia F., Leo M., Gonzalez L. M., Jose L., Cercos-Pita J. L., Souto-Iglesisas A., “A boundary integral SPH formulation: consistency and applications to ISPH and WCSPH”, Progress of Theoretical Physics, 128:3 (2012), 439–462 | DOI | Zbl
[12] Crespo A. C., Dominguez J. M., Barreiro A., Gomez-Gesteira M., Rogers B. D., “GPUs, a new tool of acceleration in CFD: efficiency and reliability on smoothed particle hydrodynamics methods”, PLoS ONE, 6:6 (2011), 1–13 | DOI