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Effect of panel shape of soccer ball on its flight characteristics

Sungchan Hong, Takeshi Asai

Year
2014
Citations
46
Access
Open access

Abstract

Soccer balls are typically constructed from 32 pentagonal and hexagonal panels. Recently, however, newer balls named Cafusa, Teamgeist 2, and Jabulani were respectively produced from 32, 14, and 8 panels with shapes and designs dramatically different from those of conventional balls. The newest type of ball, named Brazuca, was produced from six panels and will be used in the 2014 FIFA World Cup in Brazil. There have, however, been few studies on the aerodynamic properties of balls constructed from different numbers and shapes of panels. Hence, we used wind tunnel tests and a kick-robot to examine the relationship between the panel shape and orientation of modern soccer balls and their aerodynamic and flight characteristics. We observed a correlation between the wind tunnel test results and the actual ball trajectories, and also clarified how the panel characteristics affected the flight of the ball, which enabled prediction of the trajectory.

Keywords

Ball (mathematics)AerodynamicsWind tunnelHexagonal crystal systemFlat panelStructural engineeringComputer scienceAerospace engineeringMathematicsGeometry

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