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Olof Grundestam
Olof Grundestam
Institutet för Rymdfysik
Email verificata su irf.se
Titolo
Citata da
Citata da
Anno
Direct numerical simulations of rotating turbulent channel flow
O Grundestam, S Wallin, AV Johansson
Journal of Fluid Mechanics 598, 177-199, 2008
1562008
Explicit algebraic subgrid stress models with application to rotating channel flow
L Marstorp, G Brethouwer, O Grundestam, AV Johansson
Journal of Fluid Mechanics 639, 403-432, 2009
762009
Laminarization mechanisms and extreme-amplitude states in rapidly rotating plane channel flow
S Wallin, O Grundestam, AV Johansson
Journal of Fluid Mechanics 730, 193-219, 2013
342013
Surface integral analogy approaches for predicting noise from 3D high-lift low-noise wings
HD Yao, L Davidson, LE Eriksson, SH Peng, O Grundestam, PE Eliasson
Acta Mechanica Sinica 30, 326-338, 2014
242014
An explicit algebraic Reynolds stress model based on a nonlinear pressure strain rate model
O Grundestam, S Wallin, AV Johansson
International journal of heat and fluid flow 26 (5), 732-745, 2005
212005
Observations on the predictions of fully developed rotating pipe flow using differential and explicit algebraic Reynolds stress models
O Grundestam, S Wallin, AV Johansson
European Journal of Mechanics-B/Fluids 25 (1), 95-112, 2006
142006
Airframe noise reduction technologies applied to high-lift devices of future green regional aircraft
M Barbarino, I Dimino, A Carozza, C Nae, C Stoica, V Pricop, SH Peng, ...
3AF/CEAS Conference" Greener Aviation: Clean Sky breakthroughs and worldwide …, 2014
122014
Surface integral analogy approaches to computing noise generated by a 3D high-lift wing configuration
H Yao, L Davidson, LE Eriksson, O Grundestam, SH Peng, P Eliasson
50th AIAA Aerospace Sciences Meeting including the New Horizons Forum and …, 2012
112012
Techniques for deriving explicit algebraic Reynolds stress models based on incomplete sets of basis tensors and predictions of fully developed rotating pipe flow
O Grundestam, S Wallin, AV Johansson
Physics of fluids 17 (11), 2005
102005
Algebraic Reynolds stress modeling of turbulence subject to rapid homogeneous and non-homogeneous compression or expansion
IA Grigoriev, S Wallin, G Brethouwer, O Grundestam, AV Johansson
Physics of fluids 28 (2), 2016
72016
Assessment of High-lift Concepts for a Regional Aircraft in the ALONOCO Project
P Eliasson, O Grundestam, SH Peng, H Yao, L Davidson, LE Eriksson
50th AIAA Aerospace Sciences Meeting including the New Horizons Forum and …, 2012
72012
Aeroacoustic assessment of conceptual low-noise high-lift wing configurations
H Yao, LE Eriksson, L Davidson, O Grundestam, SH Peng, P Eliasson
50th AIAA Aerospace Sciences Meeting including the New Horizons Forum and …, 2012
62012
A priori evaluations and least-squares optimizations of turbulence models for fully developed rotating turbulent channel flow
O Grundestam, S Wallin, AV Johansson
European Journal of Mechanics-B/Fluids 27 (2), 75-95, 2008
52008
A generalized EARSM based on a nonlinear pressure strain rate model
O Grundestam, S Wallin, AV Johansson
Third Symposium on Turbulence and Shear Flow Phenomena, 2003
52003
Modelling and simulation of turbulence subject to system rotation
O Grundestam
KTH, 2006
42006
Direct numerical simulations of rotating channel flow
O Grundestam, S Wallin, AV Johansson
42006
Implementation and verification of computational aerodynamics for manoeuvring air vehicles
SH Peng, O Grundestam, L Tysell
AIAA Aviation 2019 Forum, 3607, 2019
32019
Development and analysis of turbulence models for flows with strong curvature and rotation
O Grundestam
Mekanik, 2004
32004
Local flow properties in relation to noise generation for low-noise high-lift configurations
O Grundestam, SH Peng, P Eliasson, H Yao, L Davidson, LE Eriksson
50th AIAA Aerospace Sciences Meeting including the New Horizons Forum and …, 2012
22012
Application of Reynolds Stress Models to High-Lift Aerodynamics Applications
O Grundestam, S Wallin, P Eliasson, AV Johansson
Engineering Turbulence Modelling and Experiments 6, 607-616, 2005
12005
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
Articoli 1–20