Development of the technology to measure active drag ofswimmers by the method of small perturbations.
biomechanical · Level V
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- Record sourced from PubMed, PMID 36780732.
- Also identified by DOI 10.1016/j.jbiomech.2023.111486.
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Abstract
The research aimed at further improvement of the technology of measuring swimmers' active drag by the small perturbation method (SPM) at the average maximal swimming velocity (v<sub>0max</sub>). For better reliability and accuracy of measurements, a standard variant of SPM was developed to measure automatically active drag (F<sub>r</sub><sub>(ad)</sub>), dimensionless coefficient of hydrodynamic force (C<sub>x</sub>) and total external mechanical power P<sub>to</sub> in different competitive swimming techniques during a single 50 m trial. The study involved twelve elite swimmers who specialized in front crawl at the distances of 100 and 200 m (780-850 FINA Points). From our measurements, in front crawl the results are following: v<sub>0max</sub> = 1.909 ± 0.017 m·s<sup>-</sup><sup>1</sup>, F<sub>r</sub><sub>(ad)</sub> = 106.892 ± 7.276 N, C<sub>x</sub> = 0.311 ± 0.028 and P<sub>to</sub> = 204.033 ± 13.221 W. For objective estimation of the results, a verification variant of SPM was applied: v<sub>0max</sub> = 1.911 ± 0.018 m·s<sup>-</sup><sup>1</sup>, F<sub>r</sub><sub>(ad)</sub> = 107.033 ± 7.232 N, C<sub>x</sub> = 0.311 ± 0.030 and P<sub>to</sub> = 204.467 ± 12.982 W. The correlation analysis of the results obtained by the standard and verification variants of SPM confirms high accuracy and reliability of the method used (r = 0.988 for v<sub>0max</sub>; r = 0.979 for F<sub>r</sub><sub>(ad)</sub>; r = 0.988 for C<sub>x</sub><sub>(ad)</sub>; r = 0.979 for P<sub>to</sub>). The measurement error, including the method error and the devices error, does not exceed 2.4 %. This method has also a systematic error that reduces the measured data in the same direction from the actual values (min = -2.1 %; max = -2.9 %). This error should be taken into account when analyzing and evaluating the measured hydrodynamic characteristics of swimmers.
Medical subject headings
- Swimming
- Hydrodynamics