A few riders have adopted a rather exceptional and more aerodynamic sprint position where the torso is held low and nearly horizontal and close to the handle bar to reduce the frontal area. The question arises how much aerodynamic benefit can be gained by such a position. This paper presents an aerodynamic analysis of both the regular and the low sprint position in comparison to three more common cycling positions. Computational fluid dynamics simulations are performed with the 3D RANS simulations and the transition SST k–ω model, validated with wind-tunnel measurements. The results are analyzed in terms of frontal area, drag coefficient, drag area, air speed and static pressure distribution, and static pressure coefficient and skin frictio...
This paper presents finite-volume-based scale-adaptive simulations of single paceline configurations...
An experimental and numerical study of the aerodynamics of a cyclist in a typical racing position is...
This study aims at investigating drag and convective heat transfer for cyclists at a high spatial re...
A few riders have adopted a rather exceptional and more aerodynamic sprint position where the torso ...
Three different cyclist positions were evaluated with Computational Fluid Dynamics (CFD) and wind-tu...
Three different cyclist positions were evaluated with Computational Fluid Dynamics (CFD) and wind-tu...
An experimental and numerical analysis of cycling aerodynamics is presented. The cyclist is modeled ...
Different professional cyclists use very different hill descent positions, which indicates that prio...
The aerodynamic drag of two drafting cyclists in upright position (UP), dropped position (DP) and ti...
Aerodynamics is an important factor affecting cyclist performance, as at the elite level 90% of ride...
In professional cycling, even small adjustments in position could mean that valuable seconds are gai...
An approach to aerodynamically optimizing cycling posture and reducing drag in an Ironman (IM) event...
This paper presents finite-volume-based scale-adaptive simulations of single paceline configurations...
An experimental and numerical study of the aerodynamics of a cyclist in a typical racing position is...
This study aims at investigating drag and convective heat transfer for cyclists at a high spatial re...
A few riders have adopted a rather exceptional and more aerodynamic sprint position where the torso ...
Three different cyclist positions were evaluated with Computational Fluid Dynamics (CFD) and wind-tu...
Three different cyclist positions were evaluated with Computational Fluid Dynamics (CFD) and wind-tu...
An experimental and numerical analysis of cycling aerodynamics is presented. The cyclist is modeled ...
Different professional cyclists use very different hill descent positions, which indicates that prio...
The aerodynamic drag of two drafting cyclists in upright position (UP), dropped position (DP) and ti...
Aerodynamics is an important factor affecting cyclist performance, as at the elite level 90% of ride...
In professional cycling, even small adjustments in position could mean that valuable seconds are gai...
An approach to aerodynamically optimizing cycling posture and reducing drag in an Ironman (IM) event...
This paper presents finite-volume-based scale-adaptive simulations of single paceline configurations...
An experimental and numerical study of the aerodynamics of a cyclist in a typical racing position is...
This study aims at investigating drag and convective heat transfer for cyclists at a high spatial re...