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Prikladnaya Mekhanika i Tekhnicheskaya Fizika, 2024, Volume 65, Issue 1, Pages 91–103
DOI: https://doi.org/10.15372/PMTF202315348
(Mi pmtf4386)
 

Modeling of a turbulent droplet-laden flow behind an obstacle

M. A. Pakhomov

S.S. Kutateladze Institute of Thermophysics, Siberian Division of the Russian Academy of Sciences
References:
Abstract: The local flow structure in a turbulent gas-droplet flow behind a single obstacle has been studied numerically for different initial mass concentrations and diameters of dispersed particles. The effect of evaporating droplets flowing around a single square obstacle on the local averaged and pulsating flow structure and the dispersed phase propagation process has been analyzed. The profiles of averaged longitudinal velocity components of the gas and dispersed phases are similar to those for the single-phase flow regime. The gas velocity in the gas-droplet flow is insignificantly (less than 3%) higher than the corresponding value in the single-phase flow. The turbulence kinetic energy increases in approaching the obstacle. Maximum gas-phase turbulence was obtained on an obstacle of height $h$ at $x/h$ = -1 $\div$ 0, and it is more than 50% higher than the turbulence kinetic energy before and after the obstacle.
Keywords: numerical modeling, Reynolds stress transport model, turbulence, single obstacle, flow separation, flow structure.
Funding agency Grant number
Ministry of Science and Higher Education of the Russian Federation 121031800217-8
Received: 31.07.2023
Revised: 07.08.2023
Accepted: 01.09.2023
English version:
Journal of Applied Mechanics and Technical Physics, 2024, Volume 65, Issue 1, Pages 80–91
DOI: https://doi.org/10.1134/S0021894424010103
Bibliographic databases:
Document Type: Article
UDC: 536.24; 621.45.038; 532.529
Language: Russian
Citation: M. A. Pakhomov, “Modeling of a turbulent droplet-laden flow behind an obstacle”, Prikl. Mekh. Tekh. Fiz., 65:1 (2024), 91–103; J. Appl. Mech. Tech. Phys., 65:1 (2024), 80–91
Citation in format AMSBIB
\Bibitem{Pak24}
\by M.~A.~Pakhomov
\paper Modeling of a turbulent droplet-laden flow behind an obstacle
\jour Prikl. Mekh. Tekh. Fiz.
\yr 2024
\vol 65
\issue 1
\pages 91--103
\mathnet{http://mi.mathnet.ru/pmtf4386}
\crossref{https://doi.org/10.15372/PMTF202315348}
\elib{https://elibrary.ru/item.asp?id=54396860}
\transl
\jour J. Appl. Mech. Tech. Phys.
\yr 2024
\vol 65
\issue 1
\pages 80--91
\crossref{https://doi.org/10.1134/S0021894424010103}
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