Numerical and experimental analysis of the wake behavior of a generic submarine propeller F Di Felice, M Felli, M Liefvendahl, U Svennberg Prism 1 (8), 158, 2009 | 111 | 2009 |
A library for wall-modelled large-eddy simulation based on OpenFOAM technology T Mukha, S Rezaeiravesh, M Liefvendahl Computer Physics Communications 239, 204-224, 2019 | 85 | 2019 |
An acoustic analogy and scale-resolving flow simulation methodology for the prediction of propeller radiated noise R Bensow, M Liefvendahl 31st Symposium on Naval Hydrodynamics, 11-16, 2016 | 65 | 2016 |
Numerical investigation of the flow over an axisymmetric hill using LES, DES, and RANS T Persson, M Liefvendahl, RE Bensow, C Fureby Journal of Turbulence, N4, 2006 | 64 | 2006 |
Effect of grid resolution on large eddy simulation of wall-bounded turbulence S Rezaeiravesh, M Liefvendahl Physics of Fluids 30 (5), 2018 | 57 | 2018 |
Computation of cycle-to-cycle variation in blade load for a submarine propeller using LES M Liefvendahl, C Troëng Proc Second International Symposium on Marine Propulsors, 2011 | 53 | 2011 |
Modelling of ships as a source of underwater noise JP Jalkanen, L Johansson, M Liefvendahl, R Bensow, P Sigray, ... Ocean Science 14 (6), 1373-1383, 2018 | 51 | 2018 |
Numerics for ILES: limiting algorithms D Drikakis, M Hahn, FF Grinstein, CR De Vore, C Fureby, M Liefvendahl, ... Cambridge University Press, 2007 | 50 | 2007 |
Implicit and explicit subgrid modeling in les applied to a marine propeller R Bensow, M Liefvendahl 38th fluid dynamics conference and exhibit, 4144, 2008 | 49 | 2008 |
Grid requirements for LES of ship hydrodynamics in model and full scale M Liefvendahl, C Fureby Ocean Engineering 143, 259-268, 2017 | 46 | 2017 |
Assessment of uncertainties in hot-wire anemometry and oil-film interferometry measurements for wall-bounded turbulent flows S Rezaeiravesh, R Vinuesa, M Liefvendahl, P Schlatter European Journal of Mechanics-B/Fluids 72, 57-73, 2018 | 42 | 2018 |
Systematic study of accuracy of wall-modeled large eddy simulation using uncertainty quantification techniques S Rezaeiravesh, T Mukha, M Liefvendahl Computers & Fluids 185, 34-58, 2019 | 40 | 2019 |
Experimental and computational investigation of a generic conventional submarine hull form B Anderson, M Chapuis, L Erm, C Fureby, M Giacobello, S Henbest, ... 29th Symposium on Naval Hydrodynamics, 2012 | 32 | 2012 |
Bounds for the threshold amplitude for plane Couette flow M Liefvendahl, G Kreiss Journal of Nonlinear Mathematical Physics 9 (3), 311-324, 2002 | 27 | 2002 |
RANS simulations using OpenFOAM software DA Jones, M Chapuis, M Liefvendahl, D Norrison, R Widjaja Defence Science and Technology Group, 139-151, 2016 | 23 | 2016 |
Ship and propulsor hydrodynamics M Liefvendahl, N Alin, M Chapuis, C Fureby, U Svennberg, C Troëng V European Conference on Comput. Fluid Dynamics, 2010 | 22 | 2010 |
Estimates of source spectra of ships from long term recordings in the Baltic Sea I Karasalo, M Östberg, P Sigray, JP Jalkanen, L Johansson, ... Frontiers in Marine Science 4, 164, 2017 | 21 | 2017 |
Large-eddy simulation of turbulent channel flow Y Doi, T Kimura Journal of the Society of Naval Architects of Japan 1988 (163), 23-30, 1988 | 21 | 1988 |
A numerical study of submarine propeller-hull Interactions N Alin, M Chapuis, C Fureby, M Liefvendahl, U Svennberg, C Troeng Proceedings of the 28th Symposium on Naval Hydrodynamics, Pasadena, California, 2010 | 20 | 2010 |
On grid resolution requirements for LES of wall-bounded flows S Rezaeiravesh, M Liefvendahl, C Fureby ECCOMAS Congress 2016, June 5–10, Crete, Greece, 7454-7465, 2016 | 19 | 2016 |