DOI QR코드

DOI QR Code

골프 드라이버 스윙 시 스윙 플레인에 따른 클럽 헤드 및 골프볼의 운동학적 변인과 신체 정렬 변인의 비교 분석

Comparison of Kinematic Variables of the Club Head, Golf Ball and Body Alignment according to Swing Plane during Golf Driver Swing

  • Young-Tae, Lim (College of Biomedical & Health Science, Golf Industry Major, Konkuk University) ;
  • Moon-Seok, Kwon (Sports Convergence Institute, Konkuk University) ;
  • Jae-Woo, Lee (Department of Sports Science, Graduate School of Konkuk University)
  • 투고 : 2022.12.23
  • 심사 : 2022.12.28
  • 발행 : 2022.12.31

초록

Objective: The purpose of this study was to analyze the effects of club head and golf ball kinematics and body alignment according to the swing plane during golf driver swing. Method: Sixteen college golfers participated in this study. Kinematic data of the club head and golf ball were collected using golf swing analysis system (Trackman Ver. 3e). The body alignment variables were collected using 8 motion capture system. An Independent samples t-test was used for comparison between the Out-to-In group and In-to-Out group, and the statistical significance level was set at .05. Results: For the club head related variables, club path and club face angle showed higher values in Out-to-In swing plane than In-to-Out swing plane. For the kinematic variables of the golf ball, the total distance showed a higher value in the In-to-Out swing plane than that of the Out-to-In swing plane. For the body alignment, the In-to-Out swing plane showed higher values than the Out-to-In swing plane for the pelvis rotation angle and trunk rotation angle. Conclusion: This study suggest that it would be more effective to use the In-to-Out swing plane for increasing the total distance during the golf driver swing.

키워드

과제정보

This paper was supported by Konkuk University in 2021.

참고문헌

  1. Collinson, A., Wood, P., Mullineaux, D. R. & Willmott, A. P. (2012). The clubhead swing plane in golf draw and fade shots.
  2. Hong, S., So, J. & Kim, Y. (2012). Kinematic analysis according to the intentional curve ball at golf driver swing. Korean Journal of Sport Biomechanics, 22(3), 269-276. https://doi.org/10.5103/KJSB.2012.22.3.269
  3. Hume, P. A., Keogh, J. & Reid, D. (2005). The role of biomechanics in maximising distance and accuracy of golf shots. Sports Medicine, 35(5), 429-449. https://doi.org/10.2165/00007256-200535050-00005
  4. Jang, J. K. & Ryu, J. K. (2011). A Study of the Club Head's Planar Movement in the Golf Swing. The Korean Society of Sports Science, 20(5), 1353-1363.
  5. Jang, J. K. & Ryu, J. K. (2014). A Study on the Professional Golfer's Swing Plane on the downswing. The Korean Society of Sports Science, 23(6), 1481-1490.
  6. Johansson, U., Konig, R., Brattberg, P., Dahlbom, A. & Riveiro, M. (2015). Mining trackman golf data. Paper presented at the 2015 International Conference on Computational Science and Computational Intelligence (CSCI), 380-385.
  7. Kim, S. E., Lee, J., Lee, S. Y., Lee, H., Shim, J. K. & Lee, S. (2021). Small changes in ball position at address cause a chain effect in golf swing. Scientific Reports, 11(1), 1-10. https://doi.org/10.1038/s41598-020-79139-8
  8. Kwon, Y., Como, C. S., Singhal, K., Lee, S. & Han, K. H. (2012). Assessment of planarity of the golf swing based on the functional swing plane of the clubhead and motion planes of the body points. Sports Biomechanics, 11(2), 127-148. https://doi.org/10.1080/14763141.2012.660799
  9. Latella, F. S., Yungchien, C., Yung-Shen, T., Sell, T. C. & Lephart, S. (2008). A method of golf specific proprioception to address physical limitations of the golf swing. Paper presented at the Science and Golf V: Proceedings of the World Scientific Congress of Golf, 112-119.
  10. Lim, Y. (2004). Categorization of two different swing styles using weight transfer patterns of golf swing. Korean Journal of Sport Biomechanics, 14(2), 179-186.
  11. Lim, Y. T. & Kwon, M. S. (2017). The effect of stance type on the club head speed and center of pressure and center of mass patterns during the driver swing. Journal of Golf Studies, 11(1), 203-215.
  12. Morrison, A., McGrath, D. & Wallace, E. (2014). Changes in club head trajectory and planarity throughout the golf swing. Procedia Engineering, 72, 144-149.
  13. Morrison, A., McGrath, D. & Wallace, E. S. (2018). Analysis of the delivery plane in the golf swing using principal components. Proceedings of the Institution of Mechanical Engineers, Part P: Journal of Sports Engineering and Technology, 232(4), 295-304. https://doi.org/10.1177/1754337117751729
  14. Nesbit, S. M. & McGinnis, R. (2009). Kinematic analyses of the golf swing hub path and its role in golfer/club kinetic transfers. Journal of Sports Science & Medicine, 8(2), 235-246.
  15. Shin, S., Casebolt, J., Lambert, C., Kim, J. & Kwon, Y. (2008). A 3-D determination and analysis of the swing plane in golf. Paper presented at the ISBS-Conference Proceedings Archive.
  16. Sim, T., Seung-eel, O., Bae, J., Lee, S. & Mun, J. H. (2007). The effect of swing plane area with respect to swing velocity in golf swing.  Paper presented at the World Congress on Medical Physics and Biomedical Engineering, 2006, 2905-2908.
  17. Smith, A., Roberts, J., Wallace, E. & Forrester, S. (2012). Professional golf coaches' perceptions of the key technical parameters in the golf swing. Procedia Engineering, 34, 224-229. https://doi.org/10.1016/j.proeng.2012.04.039
  18. Sohn, J., Ryue, J., Lee, K. & Lim, Y. (2010). Effect of intentional draw & fade shots on golf swing mechanics. Korean Journal of Sport Biomechanics, 20(2), 149-154. https://doi.org/10.5103/KJSB.2010.20.2.149
  19. Williams, K. & Sih, B. (2002). Changes in golf clubface orientation following impact with the ball. Sports Engineering, 5(2), 65-80. https://doi.org/10.1046/j.1460-2687.2002.00093.x
  20. Williams, K. & Sih, B. (2007). Three dimensional analyses of club movement and clubhead orientation at impact during the golf swing. Journal of Biomechanics, 40(2), S317.