Three different cyclist positions were evaluated with Computational Fluid Dynamics (CFD) and wind-tunnel experiments were used to provide reliable data to evaluate the accuracy of the CFD simulations. Specific features of this study are: (1) both steady Reynolds-averaged Navier-Stokes (RANS) and unsteady flow modelling, with more advanced turbulence modelling techniques (Large-Eddy Simulation - LES), were evaluated; (2) the boundary layer on the cyclist's surface was resolved entirely with low-Reynolds number modelling, instead of modelling it with wall functions; (3) apart from drag measurements, also surface pressure measurements on the cyclist's body were performed in the wind-tunnel experiment, which provided the basis for a more detail...
The importance of aerodynamics in cycling has been recognised by both cyclists and engineers for man...
Resistance acting on a cyclist is a major concern among the cycling fraternity. Most of the testing ...
This study aims at investigating drag and convective heat transfer for cyclists at a high spatial re...
Three different cyclist positions were evaluated with Computational Fluid Dynamics (CFD) and wind-tu...
This study aims at assessing the accuracy of computational fluid dynamics (CFD) for applications in ...
This study aims at assessing the accuracy of Computational Fluid Dynamics (CFD) for applications in ...
An experimental and numerical analysis of cycling aerodynamics is presented. The cyclist is modeled ...
The aerodynamic drag of two drafting cyclists in upright position (UP), dropped position (DP) and ti...
Research highlights: • High-resolution grids with wall-adjacent cell centres at 15 micrometer from t...
An experimental and numerical study of the aerodynamics of a cyclist in a typical racing position is...
Aerodynamic resistance is one of the leading challenges to overcome in elite cycling. To optimize cy...
Computational fluid dynamics (CFD) is a branch of fluid mechanics that uses numerical analysis and d...
A few riders have adopted a rather exceptional and more aerodynamic sprint position where the torso ...
The importance of drag reduction in elite cycling has been recognised by cyclists and engineers for ...
The importance of aerodynamics in cycling has been recognised by both cyclists and engineers for man...
Resistance acting on a cyclist is a major concern among the cycling fraternity. Most of the testing ...
This study aims at investigating drag and convective heat transfer for cyclists at a high spatial re...
Three different cyclist positions were evaluated with Computational Fluid Dynamics (CFD) and wind-tu...
This study aims at assessing the accuracy of computational fluid dynamics (CFD) for applications in ...
This study aims at assessing the accuracy of Computational Fluid Dynamics (CFD) for applications in ...
An experimental and numerical analysis of cycling aerodynamics is presented. The cyclist is modeled ...
The aerodynamic drag of two drafting cyclists in upright position (UP), dropped position (DP) and ti...
Research highlights: • High-resolution grids with wall-adjacent cell centres at 15 micrometer from t...
An experimental and numerical study of the aerodynamics of a cyclist in a typical racing position is...
Aerodynamic resistance is one of the leading challenges to overcome in elite cycling. To optimize cy...
Computational fluid dynamics (CFD) is a branch of fluid mechanics that uses numerical analysis and d...
A few riders have adopted a rather exceptional and more aerodynamic sprint position where the torso ...
The importance of drag reduction in elite cycling has been recognised by cyclists and engineers for ...
The importance of aerodynamics in cycling has been recognised by both cyclists and engineers for man...
Resistance acting on a cyclist is a major concern among the cycling fraternity. Most of the testing ...
This study aims at investigating drag and convective heat transfer for cyclists at a high spatial re...