Nothing Special   »   [go: up one dir, main page]

Spoelstra et al., 2019 - Google Patents

On-site cycling drag analysis with the Ring of Fire

Spoelstra et al., 2019

View HTML
Document ID
16825753510434222551
Author
Spoelstra A
de Martino Norante L
Terra W
Sciacchitano A
Scarano F
Publication year
Publication venue
Experiments in Fluids

External Links

Snippet

Abstract The Ring of Fire (RoF) measurement concept, introduced by Terra et al.(Exp Fluids 58: 83. https://doi. org/10.1007/s00348-017-2331-0, 2017; Experiments in Fluids 59: 120, 2018), is applied to real cyclists to enable the aerodynamic drag determination during sport …
Continue reading at link.springer.com (HTML) (other versions)

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING; COUNTING
    • G06FELECTRICAL DIGITAL DATA PROCESSING
    • G06F17/00Digital computing or data processing equipment or methods, specially adapted for specific functions
    • G06F17/50Computer-aided design
    • G06F17/5009Computer-aided design using simulation

Similar Documents

Publication Publication Date Title
Spoelstra et al. On-site cycling drag analysis with the Ring of Fire
Crouch et al. Flow topology in the wake of a cyclist and its effect on aerodynamic drag
Blocken et al. CFD simulations of the aerodynamic drag of two drafting cyclists
Defraeye et al. Aerodynamic study of different cyclist positions: CFD analysis and full-scale wind-tunnel tests
Blocken et al. Aerodynamic analysis of different cyclist hill descent positions
Blocken et al. A following car influences cyclist drag: CFD simulations and wind tunnel measurements
Barry et al. Aerodynamic performance and riding posture in road cycling and triathlon
Defraeye et al. Computational fluid dynamics analysis of cyclist aerodynamics: Performance of different turbulence-modelling and boundary-layer modelling approaches
Blocken et al. Aerodynamic benefit for a cyclist by a following motorcycle
Coletti et al. Flow field investigation in rotating rib-roughened channel by means of particle image velocimetry
Blocken et al. CFD analysis of an exceptional cyclist sprint position
Crouch et al. Dynamic leg-motion and its effect on the aerodynamic performance of cyclists
Mannion et al. Aerodynamic drag in competitive tandem para-cycling: road race versus time-trial positions
Defraeye et al. Cyclist drag in team pursuit: influence of cyclist sequence, stature, and arm spacing
Tao et al. Dynamic meshing modelling for particle resuspension caused by swinging manikin motion
Terra et al. Aerodynamic drag determination of a full-scale cyclist mannequin from large-scale PTV measurements
Barry et al. Flow field interactions between two tandem cyclists
Fitzgerald et al. Observations of the flow experienced by a track cyclist using velodrome, wind tunnel, and potential flow investigations with an instrumented bicycle
Terra et al. Drag analysis from PIV data in speed sports
Brown et al. The influence of turbulence on cycling aerodynamics
O'Regan et al. A vorticity confinement model applied to URANS and LES simulations of a wing-tip vortex in the near-field
Terra et al. Aerodynamic benefits of drafting in speed skating: Estimates from in-field skater's wakes and wind tunnel measurements
Javadi Aerodynamic Study of the Pedalling of a Cyclist with a Transitional Hybrid RANS–LES Turbulence model
Miau et al. On the aerodynamic flow around a cyclist model at the hoods position
Ghasemi et al. The effect of different aero handlebar positions on aerodynamic and gas exchange variables