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Effect of acceleration on optimization of Adidas Bounce shoes

conference contribution
posted on 2024-10-31, 16:20 authored by Mathew Dickson, Franz Fuss
Directional energy transfer is a term used to describe the phenomenon where energy is returned as force acting in a direction other than the direction in which energy was put into the system. Directional energy transfer in running shoes increases athletic performance as running speed by transferring energy to the direction of locomotion. The concept can be applied to the Adidas Bounce style shoe. The shoe uses tubes with a ?-shaped cross section incorporated into the shoe sole. Directional energy transfer can be optimized if the Bounce tubes of Adidas shoes are rotated and the overall stiffness changed (by altering the tube length). There are a number of parameters that relate to directional energy transfer. These parameters are: energy transferred (as a percentage of vertical input energy); energy transferred (absolute quantity); energy returned in the horizontal direction and total system energy. The aim of this paper was to investigate whether the optimum solution changed if the runner accelerated during a stride. The simulations showed that there is very little change in optimum design angle and that if additional rearward deflection of the bounce tube is permissible performance (energy transferred and returned) actually improves when the runner accelerates.

History

Start page

107

End page

112

Total pages

6

Outlet

Procedia Engineering

Editors

Aleksandar Subic, Franz Konstantin Fuss, Firoz Alam, Patrick Clifton

Name of conference

APCST 2011: 5th Asia-Pacific Congress on Sports Technology

Publisher

Elsevier

Place published

Amsterdam, The Netherlands

Start date

2011-08-28

End date

2011-08-31

Language

English

Copyright

© 2011 Published by Elsevier Ltd.

Former Identifier

2006031894

Esploro creation date

2020-06-22

Fedora creation date

2012-05-11

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