Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/131563
Title: THE NUMERICAL MODELING OF LAVA DOME EVOLUTION AT VOLCÁN DE COLIMA USING VOF AND SPH METHODS
Authors: Starodubtsev, I. S.
Tsepelev, I. A.
Issue Date: 2022
Publisher: Institute of Continuous Media Mechanics
Citation: Цепелев, ИА & Стародубцев, ИС 2022, 'ЧИСЛЕННОЕ МОДЕЛИРОВАНИЕ ЭВОЛЮЦИИ ЛАВОВОГО КУПОЛА НА ВУЛКАНЕ КОЛИМА VOF И SPH МЕТОДАМИ', Вычислительная механика сплошных сред, Том. 15, № 3, стр. 263-273. https://doi.org/10.7242/1999-6691/2022.15.3.20
Цепелев, И. А., & Стародубцев, И. С. (2022). ЧИСЛЕННОЕ МОДЕЛИРОВАНИЕ ЭВОЛЮЦИИ ЛАВОВОГО КУПОЛА НА ВУЛКАНЕ КОЛИМА VOF И SPH МЕТОДАМИ. Вычислительная механика сплошных сред, 15(3), 263-273. https://doi.org/10.7242/1999-6691/2022.15.3.20
Abstract: Lava flows from extrusive volcanic eruptions can have catastrophic consequences both for human life and the environment. Modeling such situations is an important scientific problem. The main driving forces in the evolution of the mentioned lava flows are gravitational forces, viscous friction forces on the surface of the spill, and the processes of crystallization of molten rocks into lava plateau, tubes, and domes. In this paper, the mathematical model of an extrusive volcanic eruption includes the Navier–Stokes equation, the incompressibility equation, the viscous phase transfer equation, as well as the corresponding initial and boundary conditions. Mathematical models of volcanic lava flows are considered and compared within the Euler (Volume Of Fluid – VOF) and Lagrange (Smooth Particle Hydrodynamic – SPH) formulations. ANSYS Fluent, OpenFOAM, and SPlisHSPlasH packages were used for computer simulation. Computer simulation algorithms for the problem are implemented in C++ language. Numerical modeling of the evolution of a real lava dome formed at the Colima volcano (Mexico) in February–March 2013 was carried out. For this experiment, information about the dynamics of lava dome growth, collected during the eruption, was used. It is shown how the computer simulation approach makes it possible to establish the dependence of the lava dome morphology on the rheology of a highly viscous fluid and the intensity of lava outflow. © 2022 Chinese Journal of Dermatology. All rights reserved.
Keywords: BOUNDARY VALUE PROBLEM
MULTIPHASE FLOW
NAVIER–STOKES EQUATIONS
NUMERICAL SIMULATION
SMOOTH PARTICLE HYDRODYNAMICS
VISCOUS FLOW
VOLCANIC ERUPTION
VOLCΆN DE COLIMA
URI: http://elar.urfu.ru/handle/10995/131563
Access: info:eu-repo/semantics/openAccess
cc-by-nc
License text: https://creativecommons.org/licenses/by-nc/4.0/
RSCI ID: 49714306
SCOPUS ID: 85143584749
PURE ID: 31798391
bcc3aac5-c5f7-49de-a8e4-80ec9f10d9e9
ISSN: 1999-6691
DOI: 10.7242/1999-6691/2022.15.3.20
Appears in Collections:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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