Keywords: Navier–Stokes equations, inverse boundary value problem, variational method, numerical simulation.
@article{VYURM_2019_11_4_a6,
author = {A. I. Korotkii and I. A. Tsepelev},
title = {Reconstruction of the inlet viscous fluid flow by velocity measurements on any observable part of the free moving surface},
journal = {Vestnik \^U\v{z}no-Uralʹskogo gosudarstvennogo universiteta. Seri\^a, Matematika, mehanika, fizika},
pages = {56--61},
year = {2019},
volume = {11},
number = {4},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/VYURM_2019_11_4_a6/}
}
TY - JOUR AU - A. I. Korotkii AU - I. A. Tsepelev TI - Reconstruction of the inlet viscous fluid flow by velocity measurements on any observable part of the free moving surface JO - Vestnik Ûžno-Uralʹskogo gosudarstvennogo universiteta. Seriâ, Matematika, mehanika, fizika PY - 2019 SP - 56 EP - 61 VL - 11 IS - 4 UR - http://geodesic.mathdoc.fr/item/VYURM_2019_11_4_a6/ LA - ru ID - VYURM_2019_11_4_a6 ER -
%0 Journal Article %A A. I. Korotkii %A I. A. Tsepelev %T Reconstruction of the inlet viscous fluid flow by velocity measurements on any observable part of the free moving surface %J Vestnik Ûžno-Uralʹskogo gosudarstvennogo universiteta. Seriâ, Matematika, mehanika, fizika %D 2019 %P 56-61 %V 11 %N 4 %U http://geodesic.mathdoc.fr/item/VYURM_2019_11_4_a6/ %G ru %F VYURM_2019_11_4_a6
A. I. Korotkii; I. A. Tsepelev. Reconstruction of the inlet viscous fluid flow by velocity measurements on any observable part of the free moving surface. Vestnik Ûžno-Uralʹskogo gosudarstvennogo universiteta. Seriâ, Matematika, mehanika, fizika, Tome 11 (2019) no. 4, pp. 56-61. http://geodesic.mathdoc.fr/item/VYURM_2019_11_4_a6/
[1] A. N. Tikhonov, V. Y. Arsenin, On the Solution of Ill-Posed Problems, John Wiley and Sons, New York, 1977, 258 pp. | MR
[2] V. K. Ivanov, V. V. Vasin, V. P. Tanana, Theory of Linear Ill-Posed Problems and its Applications, Nauka, M., 1978, 206 pp. (in Russ.)
[3] A. A. Samarskiy, P. N. Vabishchevich, Numerical Methods for Solving Inverse Problems of Mathematical Physics, URSS Publ., M., 2004, 480 pp. (in Russ.)
[4] Kabanikhin S. I., Inverse and Ill-Posed Problems, Sibirskoe nauchnoe izdatel'stvo Publ., Novosibirsk, 2009, 457 pp. (in Russ.)
[5] G. V. Alekseev, D. A. Tereshko, Analysis and Optimization in Viscous Fluid Hydrodynamics, Dal'nauka Publ., Vladivostok, 2008, 364 pp. (in Russ.)
[6] A. Ismail-Zadeh, A. Korotkii, I. Tsepelev, Data-Driven Numerical Modelling in Geodynamics: Methods and Applications, Springer International Publishing, Berlin, 2016, 105 pp. | DOI | MR
[7] A. I. Korotkiy, Yu. V. Starodubtseva, Modelling of Direct and Inverse Boundary Value Problems for Stationary Models of Heat and Mass Transfer, Izdatel'stvo Ural'skogo universiteta Publ., Ekaterinburg, 2015, 168 pp. (in Russ.)
[8] S. Chandrasekhar, Hydrodynamic and Hydromagnetic Stability, Clarendon Press, Oxford, 1961, 652 pp. | DOI | MR | Zbl
[9] L. D. Landau, E. M. Lifshitz, Fluid Mechanics, Pergamon, 1987, 554 pp. | MR | MR | Zbl
[10] J. Nocedal, S.J. Wright, Numerical Optimization, Springer, New York, 1999, 664 pp. | DOI | MR | Zbl
[12] https://www.ansys.com/products/fluids/ansys-fluent/
[13] A. Korotkii, D. Kovtunov, A. Ismail-Zadeh, I. Tsepelev, O. Melnik, “Quantitative reconstruction of thermal and dynamic characteristics of volcanic lava from surface thermal measurements”, Geophysical Journal International, 205:3 (2016), 1767–1779 | DOI