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The Differences in the Ski Carving Turn Motion According to Level of Exper tise

스키 카빙턴 동작 시 기술 수준에 따른 동작의 차이 연구

  • Eun, Seon-Deok (Research Institute of Sports Science, College of Natural Science, Hallym University) ;
  • Hyun, Moo-Sung (Department of Sports and Leisure Studies, College of Fineart and Physical Education, Kangnam University)
  • 은선덕 (한림대학교 자연과학대학 체육과학연구소) ;
  • 현무성 (강남대학교 예체능대학 사회체육학과)
  • Received : 2010.07.31
  • Accepted : 2010.09.15
  • Published : 2010.09.30

Abstract

The purpose of this research was to investigate the differences in the ski carving turn motion according to level of expertise. The posture and movement of 6 skiers nearby the fall-line was evaluated with a biomechanical approach focusing the rotational mechanics. The slope was at an angle of $9^{\circ}$ and the following variables were measured and calculated: tangential velocity, change of COM height after passing fall-line, width between feet, angle between upper body and thigh, trunk angle, average radius of curvature and average centripetal force. The expert skiers minimized their center of mass height movement and maintained the width of between their feet after the passing the fall-line in comparison with the beginners and intermediate skiers. The experts restrained themselves from pushing their upper body downward after the turn to maximize the centripetal force. The experts in comparison with the beginners and intermediate skiers during the turn didn't have to reduce their radius of curvature to maintain a high centripetal force. It was concluded, that the most important factor affecting the centripetal force, was for the beginners and intermediate skiers, to minimize their movement while using the appropriate amount of edging.

Keywords

References

  1. 김혜영(2000). 역학적 모형을 이용한 스키 속도 경기(speed skiing)의 운동학적 분석. 한국체육학회지, 39(2), 190-498.
  2. 이계산, 현무성(2003). 스키 카빙 롱 턴 동작의 운동학적 분석. 체육과학연구, 14(1), 36-45.
  3. 현무성(2003). 스키 카빙 숏 턴 동작의 운동학적 분석. 한국체육학회지, 42(6), 995-1003.
  4. Evans, H., Jackman, B., & Otlaway, M.(1974). We Learned to Ski. New York: St. Martin's Press.
  5. Heinrich, D., Mössner, M., Kaps, P., & Nachbauer, W.(2010). Calculation of the contact pressure between ski and snow during a carved turn in Alpine skiing. Scandinavian Journal of Medicine & Science in Sports, 20, 485-492.
  6. Ichino, S.(1999). Revolution in ski: carving technique. Ski Journal, Ski Journal Co., Ltd., Tokyo, Japan.
  7. Lind, D., & Sanders, S. P.(1996). The Physics of Sking. New York, Springer-Verlag New York.
  8. Maruyama, S., Okuda, E., Watanabe, S., Hirakawa, H., Masuda, C., Murasato, T., & Suzuki, S.(1994). Japan Ski Kyotei(The Text of Ski Association of Japan). Ski Journal, Ski Journa Co., Ltd., Tokyo, Japan.
  9. Miura, M., Ikegami, Y., Kitamura, K., Matsui, H., & Sodeyama, H.(1979). International Symposium on Science of Skiing, (Zao yamagata prefecture in Japan), 59-69.
  10. Mote, C. D., & Kuo, C. Y.(1989). Identification of knee joint models for valgus and internal-external rotations. Snow Skiing Experiments, Journal of Biomechanics, 22, 245-259. https://doi.org/10.1016/0021-9290(89)90092-4
  11. Sahashi, T., Ichino, S.(1990). Experimental study of the mechanism of skiing turns. Ⅱ. Measurement of edging angles. Japanese Journal of applied physics, 29, 1203-1208. https://doi.org/10.1143/JJAP.29.1203
  12. Sahashi, T., & Ichino, S.(1998). Coefficient of kinetic friction of snow skis during turning descents. Japanese Journal of Applied Physics, 37, 720-727. https://doi.org/10.1143/JJAP.37.720
  13. Sahashi, T., & Ichino, S.(2001). Carving-turn and edging angle of skis. Sports Engineering. 4, 135-145. https://doi.org/10.1046/j.1460-2687.2001.00079.x
  14. Sodeyama, H., Miura, M., Kitamura, K., Matsui, H.(1976) Study of the Displacement of a Skier's Center of Gravity during a Ski Turn, in. Biomechanics VS(eds. R. C. Nelson, C. A. Morehouse), University Park Press, Baltimore, pp. 271-276.
  15. Stenmark, I.(1990). Ski techanique in the 1990s. Snow country, 18.
  16. Yoneyama, T., Kagawa, H., Okamoto, A., & Sawada, M.(2000). Joint motion nd reacting force in the carving ski turn compared with the conventional ski turn. Sports Engineering, 3, 161-176. https://doi.org/10.1046/j.1460-2687.2000.00060.x

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