Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/112042
Title: Conjugate Heat Transfer Numerical Study of the Ejector by Means of SU2 Solver
Authors: Brezgin, D. V.
Aronson, K. E.
Mazzelli, F.
Milazzo, A.
Issue Date: 2021
Publisher: IOP Publishing Ltd
IOP Publishing
Citation: Conjugate Heat Transfer Numerical Study of the Ejector by Means of SU2 Solver / D. V. Brezgin, K. E. Aronson, F. Mazzelli et al. // Journal of Physics: Conference Series. — 2021. — Vol. 2088. — Iss. 1. — 012004.
Abstract: In this paper, the test supersonic ejector with conjugate heat transfer in solid bodies has been studied numerically. An extensive numerical campaign by means of open-source SU2 solver is performed to analyze the fluid dynamics of the ejector flowfield accounting for the heat conduction in solids. The fluid domain simulation is carried out by employing compressible RANS treatment whilst the heat distribution in solids is predicted by simultaneous solving the steady heat conduction equation. The working fluid is R245fa and all simulations are performed accounting for real gas properties of the refrigerant. Experimental data against numerical results comparison showed close agreement both in terms mass flow rates and static pressure distribution along the walls. Within the CFD trials, the most valuable flow parameters at a wall vicinity are compared: distribution across the boundary layer of the temperature and the turbulent kinetic energy specific dissipation rate, boundary layer displacement and momentum thicknesses. A comprehensive analysis of the simulation results cases with adiabatic walls against cases with heat permeable walls revealed the actual differences of the flow properties in the wall vicinity. However, the ejector performance has not changed noticeably while accounting for the heat conduction in solids. © 2021 Institute of Physics Publishing. All rights reserved.
Keywords: BOUNDARY LAYERS
COMPUTATIONAL FLUID DYNAMICS
HEAT CONDUCTION
KINETIC ENERGY
KINETICS
CONJUGATE HEAT TRANSFER
FLUID DOMAIN
FLUID-DYNAMICS
HEAT CONDUCTION EQUATIONS
HEAT DISTRIBUTION
OPEN-SOURCE
REAL GAS
SOLID BODIES
SUPERSONIC EJECTOR
WORKING FLUID
EJECTORS (PUMPS)
URI: http://elar.urfu.ru/handle/10995/112042
Access: info:eu-repo/semantics/openAccess
Conference name: 8th International Conference on Heat and Mass Transfer and Hydrodynamics in Swirling Flows, HMTHSF 2021
Conference date: 18 October 2021 through 21 October 2021
SCOPUS ID: 85121562013
PURE ID: 29214114
ISSN: 1742-6588
DOI: 10.1088/1742-6596/2088/1/012004
Appears in Collections:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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