AbstractThe aim of this research is to develop hydrodynamic models to enhance the knowledge of the propulsion efficiency in rowing. The flow around a rowing blade is a complex phenomenon characterised by an unsteady 3D behaviour, with violent free surface deformation including breakup and with a flexible shaft driven by a 6-DOF movement. The study uses experimental results obtained on an instrumented boat to perform CFD computations. All parameters are considered except the minor role played by the spin rotation of the shaft. The numerical results fit fairly well with experimental data given a high number of uncertainties. Once CFD computations fully validated, more accurate parametric models could be built and integrated in a rowing simula...
The aim of this thesis is to analyse the hydrodynamics of rowing propulsion and to enhance this prop...
The aim of this study was to validate the use of computational fluid dynamics (CFD) to determine oar...
Rower biomechanics, stroke style, and hydrodynamic of the blade are among the important factors whic...
AbstractThe aim of this research is to develop hydrodynamic models to enhance the knowledge of the p...
International audienceThis article deals with the validation of the modelling and numerical simulati...
International audienceThis article deals with the validation of the modelling and numerical simulati...
International audienceThis article deals with the validation of the modelling and numerical simulati...
This paper presents the results of the time resolved flow field measurements around a realistic rowi...
AbstractA hydrodynamics-based model of the highly complex flow around a rowing oar blade during a ro...
How water and air ow around a rowing blade during a rowing stroke is poorly understood by the scient...
This thesis describes the application of computational fluid dynamics (CFD) to model the flow regime...
This paper presents the results of the time resolved flow field measurements around a realistic rowi...
This thesis describes the application of computational fluid dynamics (CFD) to model the flow regime...
The aim of this study was to validate the use of computational fluid dynamics (CFD) to determine oar...
The aim of this study was to validate the use of computational fluid dynamics (CFD) to determine oar...
The aim of this thesis is to analyse the hydrodynamics of rowing propulsion and to enhance this prop...
The aim of this study was to validate the use of computational fluid dynamics (CFD) to determine oar...
Rower biomechanics, stroke style, and hydrodynamic of the blade are among the important factors whic...
AbstractThe aim of this research is to develop hydrodynamic models to enhance the knowledge of the p...
International audienceThis article deals with the validation of the modelling and numerical simulati...
International audienceThis article deals with the validation of the modelling and numerical simulati...
International audienceThis article deals with the validation of the modelling and numerical simulati...
This paper presents the results of the time resolved flow field measurements around a realistic rowi...
AbstractA hydrodynamics-based model of the highly complex flow around a rowing oar blade during a ro...
How water and air ow around a rowing blade during a rowing stroke is poorly understood by the scient...
This thesis describes the application of computational fluid dynamics (CFD) to model the flow regime...
This paper presents the results of the time resolved flow field measurements around a realistic rowi...
This thesis describes the application of computational fluid dynamics (CFD) to model the flow regime...
The aim of this study was to validate the use of computational fluid dynamics (CFD) to determine oar...
The aim of this study was to validate the use of computational fluid dynamics (CFD) to determine oar...
The aim of this thesis is to analyse the hydrodynamics of rowing propulsion and to enhance this prop...
The aim of this study was to validate the use of computational fluid dynamics (CFD) to determine oar...
Rower biomechanics, stroke style, and hydrodynamic of the blade are among the important factors whic...