Measurement of the active drag coefficient in front-crawl: A stroke-by-stroke analysis.

Morais, Jorge E; Marinho, Daniel A; Barbosa, Tiago M · J Biomech · 2024

biomechanical · Level V

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Abstract

The purpose of this study was to understand the change in active drag coefficient (C<sub>DA</sub>) over successive stroke cycles in front-crawl and the relationship between swimming speed and C<sub>DA</sub>. Eighteen national competitive swimmers (nine girls and nine boys with a mean age of 14.91 ± 0.59 years) were recruited. Swimming speed, propulsion (F<sub>total</sub>) and frontal surface area were measured to calculate the C<sub>DA</sub>. Swimming speed (F = 1.790, p = 0.182, η<sup>2</sup> = 0.07) and C<sub>DA</sub> (F = 0.907, p = 0.413, η<sup>2</sup> = 0.06) did not change significantly over time, but swimming speed showed a decrease between the second and third stroke cycle. On the other hand, the F<sub>total</sub> changed significantly over time (F = 4.437, p = 0.019, η<sup>2</sup> = 0.21). Swimming speed and C<sub>DA</sub> showed a linear and strong relationship (R<sup>2</sup> = 63.8 %). A stroke-by-stroke analysis showed that national level swimmers were able to maintain their hydrodynamic profile during a front-crawl maximal trial. Thus, it can be argued that a decrease in swimming speed can be related to a decrease in F<sub>total</sub>. Swimming speed and C<sub>DA</sub> showed an inverse and significant relationship, with lower values of C<sub>DA</sub> resulting in faster swimming speeds.

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