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Yann Bartosiewicz
Yann Bartosiewicz
Professor of Thermal hydraulics, University catholique de Louvain UCL
Bestätigte E-Mail-Adresse bei uclouvain.be
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Zitiert von
Jahr
Numerical and experimental investigations on supersonic ejectors
Y Bartosiewicz, Z Aidoun, P Desevaux, Y Mercadier
International Journal of Heat and Fluid Flow 26 (1), 56-70, 2005
5162005
CFD analysis of a supersonic air ejector. Part I: Experimental validation of single-phase and two-phase operation
A Hemidi, F Henry, S Leclaire, JM Seynhaeve, Y Bartosiewicz
Applied Thermal Engineering 29 (8-9), 1523-1531, 2009
3002009
Numerical assessment of ejector operation for refrigeration applications based on CFD
Y Bartosiewicz, Z Aidoun, Y Mercadier
Applied thermal engineering 26 (5-6), 604-612, 2006
2452006
A 1D model to predict ejector performance at critical and sub-critical operational regimes
WX Chen, M Liu, DT Chong, JJ Yan, AB Little, Y Bartosiewicz
International journal of refrigeration 36 (6), 1750-1761, 2013
1502013
Computational and experimental analysis of supersonic air ejector: Turbulence modeling and assessment of 3D effects
F Mazzelli, AB Little, S Garimella, Y Bartosiewicz
International Journal of Heat and Fluid Flow 56, 305-316, 2015
1462015
CFD analysis of a supersonic air ejector. Part II: Relation between global operation and local flow features
A Hemidi, F Henry, S Leclaire, JM Seynhaeve, Y Bartosiewicz
Applied Thermal Engineering 29 (14-15), 2990-2998, 2009
1422009
Assessment of RANS and improved near-wall modeling for forced convection at low Prandtl numbers based on LES up to Reτ= 2000
M Duponcheel, L Bricteux, M Manconi, G Winckelmans, Y Bartosiewicz
International Journal of Heat and Mass Transfer 75, 470-482, 2014
1062014
CFD-experiments integration in the evaluation of six turbulence models for supersonic ejectors modeling
Y Bartosiewicz, Z Aidoun, P Desevaux, Y Mercadier
Integrating CFD and Experiments Conference, Glasgow, UK, 2003
932003
Homogeneous two-phase flow models and accurate steam-water table look-up method for fast transient simulations
M De Lorenzo, P Lafon, M Di Matteo, M Pelanti, JM Seynhaeve, ...
International journal of multiphase flow 95, 199-219, 2017
852017
1-D modeling of supersonic carbon dioxide two-phase flow through ejector motive nozzle
W Angielczyk, Y Bartosiewicz, D Butrymowicz, JM Seynhaeve
842010
Drop-in replacement in a R134 ejector refrigeration cycle by HFO refrigerants
Y Fang, S Croquer, S Poncet, Z Aidoun, Y Bartosiewicz
international journal of refrigeration 77, 87-98, 2017
782017
Status and perspective of turbulence heat transfer modelling for the industrial application of liquid metal flows
F Roelofs, A Shams, I Otic, M Böttcher, M Duponcheel, Y Bartosiewicz, ...
Nuclear Engineering and Design 290, 99-106, 2015
762015
Direct and large eddy simulation of turbulent heat transfer at very low Prandtl number: Application to lead–bismuth flows
L Bricteux, M Duponcheel, G Winckelmans, I Tiselj, Y Bartosiewicz
Nuclear engineering and design 246, 91-97, 2012
742012
Benchmark of Delayed Equilibrium Model (DEM) and classic two-phase critical flow models against experimental data
M De Lorenzo, P Lafon, JM Seynhaeve, Y Bartosiewicz
International Journal of Multiphase Flow 92, 112-130, 2017
672017
A first assessment of the NEPTUNE_CFD code: Instabilities in a stratified flow comparison between the VOF method and a two-field approach
Y Bartosiewicz, J Laviéville, JM Seynhaeve
International Journal of Heat and Fluid Flow 29 (2), 460-478, 2008
642008
Numerical and experimental evidence of the Fabri-choking in a supersonic ejector
O Lamberts, P Chatelain, Y Bartosiewicz
International Journal of Heat and Fluid Flow 69, 194-209, 2018
622018
The compound-choking theory as an explanation of the entrainment limitation in supersonic ejectors
O Lamberts, P Chatelain, N Bourgeois, Y Bartosiewicz
Energy 158, 524-536, 2018
522018
New methods for analyzing transport phenomena in supersonic ejectors
O Lamberts, P Chatelain, Y Bartosiewicz
International Journal of Heat and Fluid Flow 64, 23-40, 2017
512017
A self-consistent two-temperature model for the computation of supersonic argon plasma jets
Y Bartosiewicz, P Proulx, Y Mercadier
Journal of Physics D: Applied Physics 35 (17), 2139, 2002
492002
Modeling free surface flows relevant to a PTS scenario: Comparison between experimental data and three RANS based CFD-codes. Comments on the CFD-experiment integration and best …
Y Bartosiewicz, JM Seynhaeve, C Vallée, T Höhne, JM Laviéville
Nuclear Engineering and Design 240 (9), 2375-2381, 2010
432010
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