Sprint Performance in Arms-Only Front Crawl Swimming Is Strongly Associated With the Power-To-Drag Ratio

Sander Schreven*, Jeroen B.J. Smeets, Peter J. Beek

*Corresponding author for this work

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

To date, optimal propulsion in swimming has been studied predominantly using physical or computational models of the arm and seldom during real-life swimming. In the present study we examined the contributions of selected power, technique and anthropometric measures on sprint performance during arms-only front crawl swimming. To this end, 25 male adult competitive swimmers, equipped with markers on their arms and hands, performed four 25-m sprint trials, which were recorded on video. For the fastest trial of each swimmer, we determined the average swim speed as well as two technique variables: the average stroke width and average horizontal acceleration. Each participant also swam 10–12 trials over a custom-made system for measuring active drag, the MAD system. Since the propelling efficiency is 100% while swimming over the MAD system, the power output of the swimmer is fully used to overcome the drag acting on the body. The resulting speed thus represents the ratio between power output and drag. We included this power-to-drag ratio, the power output and the drag coefficient of the fastest trial on the MAD system in the analysis. Finally, the body height and hand surface area of each swimmer were determined as anthropometric variables. A model selection procedure was conducted to predict the swim speed from the two technique variables, three power variables and the two anthropometric variables. The ratio between power output and the drag was the only significant predictor of the maximal swimming speed (v = 0.86·power/drag). The variations in this ratio explained 65% of the variance in swimming performance. This indicates that sprint performance in arms-only front crawl swimming is strongly associated with the power-to-drag ratio and not with the isolated power variables and the anthropometric and technique variables selected in the present study.

Original languageEnglish
Article number758095
Pages (from-to)1-10
Number of pages10
JournalFrontiers in Sports and Active Living
Volume4
Issue numberMarch
Early online date1 Mar 2022
DOIs
Publication statusPublished - Mar 2022

Bibliographical note

Funding Information:
The authors would like to thank Roald van der Vliet, Hans de Koning, Bert Coolen, Peter Verdijk, Brenda Merks, Kim Rooijmans, and Hilde van der Aa for their technical support and help in organizing the measurements. We also would like to thank Carlo van der Heijden, Sjoerd Vennema and the team of InnoSportLab De Tongelreep for their assistance in the analysis of the data.

Publisher Copyright:
Copyright © 2022 Schreven, Smeets and Beek.

Funding

The authors would like to thank Roald van der Vliet, Hans de Koning, Bert Coolen, Peter Verdijk, Brenda Merks, Kim Rooijmans, and Hilde van der Aa for their technical support and help in organizing the measurements. We also would like to thank Carlo van der Heijden, Sjoerd Vennema and the team of InnoSportLab De Tongelreep for their assistance in the analysis of the data.

Keywords

  • 3d hand kinematics
  • anthropometrics
  • front crawl
  • MAD system
  • power
  • swimming technique

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