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Use of phenomenological model of turbulence to study the material separation effect under alternate acceleration
V. P. Statsenko, Yu. V. Yanilkin FSUE «Russian Federal Nuclear Center - All-Russian Research Institute of Experimental
Physics»
Abstract:
The paper describes the use of a phenomenological model of anisotropic turbulence for
studying the turbulence development in the gravity field on the plane interface between
two incompressible fluids (gases) with density ratio $\rho2/\rho1=3$. The case, when at some
time the acceleration changes its sign, is considered. The calculated results are compared
to the $\mathrm{3D}$ results of the direct numerical simulation with CFD code TREC and the corresponding experimental data.
Keywords:
turbulent mixing, Rayleigh-Taylor instability, alternate acceleration, numerical simulation, phenomenological model.
Received: 23.10.2023 Revised: 25.01.2024 Accepted: 26.02.2024
Citation:
V. P. Statsenko, Yu. V. Yanilkin, “Use of phenomenological model of turbulence to study the material separation effect under alternate acceleration”, Matem. Mod., 36:3 (2024), 162–180
Linking options:
https://www.mathnet.ru/eng/mm4548 https://www.mathnet.ru/eng/mm/v36/i3/p162
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Abstract page: | 71 | Full-text PDF : | 2 | References: | 18 | First page: | 10 |
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