Investigation of toppling ball flight in American football with a mechanical field-goal kicker
Autor: | Chase M. Pfeifer, Timothy J. Gay, Jeff A. Hawks, Shane M. Farritor, Judith M. Burnfield |
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Rok vydání: | 2017 |
Předmět: |
Drag coefficient
Projectile business.industry Mechanical Engineering 0206 medical engineering Biomedical Engineering Projectile motion American football Physical Therapy Sports Therapy and Rehabilitation 030229 sport sciences 02 engineering and technology Kinematics Football 020601 biomedical engineering 03 medical and health sciences 0302 clinical medicine Mechanics of Materials Drag Modeling and Simulation Orthopedics and Sports Medicine Aerospace engineering business Launch angle Geology |
Zdroj: | Sports Engineering. 21:95-102 |
ISSN: | 1460-2687 1369-7072 |
DOI: | 10.1007/s12283-017-0254-x |
Popis: | A mechanical field-goal kicking machine was used to investigate toppling ball flight in American football place-kicking, eliminating a number of uncontrollable impact variables present with a human kicker. Ball flight trajectories were recorded using a triangulation-based projectile tracking system to account for the football’s 3-dimensional position during flight as well as initial launch conditions. The football flights were described using kinematic equations relating to projectile motion including stagnant air drag and were compared to measured trajectories as well as projectile motion equations that exclude stagnant air drag. Measured football flight range deviations from the non-drag equations of projectile motion corresponded to deficits between 9 and 31%, which is described by a football toppling compound drag coefficient of 0.007 ± 0.003 kg/m. Independent variables including impact location and impact angle orientation resulted in 15 impact conditions. We found that an impact location of 5.5 cm from the bottom of the ball maximized trajectory height and distance. At the 5.5-cm impact location, alterations in impact angle produced minimal change in football trajectory, including launch angle (range = 1.96 deg), launch speed (range = 1.06 m/s), and range (range = 0.94 m). |
Databáze: | OpenAIRE |
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