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Dynamics model of the float-type wave energy converter considering tension force of the float cable

  • Hadano, Kesayoshi (Graduate School of Science and Eng, Yamaguchi University) ;
  • Lee, Sung-Bum (Department of Naval Architecture, Kunsan National University) ;
  • Moon, Byung-Young (Department of Naval Architecture, Kunsan National University)
  • 투고 : 2013.11.20
  • 심사 : 2014.02.11
  • 발행 : 2014.02.28

초록

We have developed the novel device that can extract energy from ocean waves utilizing the heaving motion of a floating mass. The major components of the energy converter are: a floater, a counterweight, a cable, a driving pulley, two idler pulleys, a ratchet, and a generator. The device generates power through the tension force in the cable and the weight difference between the floater and the counterweight. When the system is at static free condition, the tension in the cable is equal to the weight of the counterweight which is minimum. Therefore it is desirable to keep the counterweight lighter than the floater. However, experiments show that during the rise of the water level, the torque generated by weight of the counterweight is insufficient to rotate the driving pulley which causes the cable on the floater side to slack. The proposed application of the tension pulley rectifies these problems by preventing the cable from becoming slack when the water level rises. In this paper, the dynamics model is modified to incorporate the dynamics of the tension pulley. This has been achieved by first writing the dynamical equations for the tension pulley and the energy converter separately and combining them later. This paper investigates numerically the effect of the tension pulley on various physical quantities such as the cable tension, the floater displacement, and the floater velocity. Results obtained indicate that this application is successful in suppressing large fluctuations of the cable tension.

키워드

참고문헌

  1. K. Hadano, K. Taneura, M. Watanabe, K. Nakano, T. Saito, and M. Matsuura, "On the dynamics of the float type wave energy conversion", Japan Society of Civil Engineers Journal B, vol 62, no. 3, pp 270-383, 2006.
  2. J. R. Morison, M. P. O'Brien, J. W. Johnson, and S. A. Schaaf, "The forces exerted by surface waves on piles", Journal of Petroleum Technology, American Institute of Mining Engineers, vol. 2, no. 5, pp 149-154, 1950.
  3. B. H. Spring and P. L. Monkmeyer, "Interaction of plane waves with vertical cylinders", Proceedings of 14th International Conference on Coastal Engineering, American Society of Civil Engineers, pp 1828-1847, 1974.
  4. S. K. Chakrabarti, "Wave forces on multiple vertical cylinders", Journal of the Waterway, Port, Coastal and Ocean Division, American Society of Civil Engineers, vol. 104, no. 2, pp147-161, 1978.

피인용 문헌

  1. Component structural analysis on 15kW class wave energy converter vol.39, pp.8, 2015, https://doi.org/10.5916/jkosme.2015.39.8.821
  2. 부유체-균형추 파력발전장치의 전력에 대한 이론적 연구 vol.18, pp.3, 2014, https://doi.org/10.5293/kfma.2015.18.3.026