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묘박 중 외력에 의한 선체의 운동 특성

Characteristic of hull motion due to external forces at anchor

  • 이창헌 (제주대학교 해양과학대학 실습선)
  • Chang-Heon LEE (College of Ocean Sciences, Jeju National University)
  • 투고 : 2023.03.03
  • 심사 : 2023.05.08
  • 발행 : 2023.05.31

초록

In order to provide basic data to increase the efficiency and stability of seamanship at anchoring, the characteristics of the hull motion including dragging anchor due to external forces were observed at Mokpo and Jinhae anchorage for the avoidance of the typhoon. As a result, it is necessary to check the embedding motion and holding power of the anchor according to at initial position to decrease dragging anchor. Dragging anchor at anchorage seems to have been easily caused according to discrepancy between embedded anchor flukes and the towing direction due to the change in wind direction, rather than the wind speed. This discrepancy, thus, should be considered when anchoring. This test vessel with a small radius of curvature of the stem is relatively vulnerable to the influence of wind direction and wind speed, so it is easy to cause a decrease in the holding power due to an increase in the rate of turn. When the current speed is greater than or equal to 1 knot, the range of the rate of turn is reduced resulting in a relatively increased holding power. In addition, during the swing, the tension of the chain was high according to the angular velocity change of heading at three-quarters of the swing length rather than the left and right ends.

키워드

과제정보

이 논문은 2022학년도 제주대학교 교원성과지원사업에 의하여 연구되었음.

참고문헌

  1. Jung CH and Kong GY. 2009. A study for the evaluation of the force by the wind on the ship at anchoring. Journal of the Korean Society of Marine Environment & Safety 15, 223-228.
  2. Jung CH, Kong GY, Bae BD and Lee YS. 2009. Analysis on the Pattern of Dragging Anchor in Actual Ship. J Navig Port Res 33, 505-511. https://doi.org/10.5394/KINPR.2009.33.8.505.
  3. Kang BS, Jung CH Park YS and Kong GY. 2021. Minimum wind speed of dragging anchor for ships in Jinhae Bay typhoon refuge. Journal of the Korean Society of Marine Environment & Safety 27, 474-482. https://doi.org/10.7837/kosomes.2021.27.4.474.
  4. Kim BY, Kim KI, Kim MS, Kimura N and Lee CH. 2022. Characteristic of holding power due to nature of seabed at anchor. J Korean Soc Fish Ocean Technol 58, 230-240. https://doi.org/10.3796/KSFOT.2022.58.3.230.
  5. Kim MS, Ahn JY and Lee CH. 2021. Evaluation of Holding Power by Tension Meter for Anchoring. JFM SE 31, 682-692. https://doi.org/10.13000/JFMSE.2019.6.31.3.682.
  6.  Kinzo I. 2019. Theory and Practice of ship Handling. Sang Hak Dang, 227-228.
  7. Lee SM and Lee JA. 2014. Experimental investigation on the embedding motion and holding power of anchor according to initial position. J Navig Port Res 38, 683-688. https://doi.org/10.5394/KINPR.2014.38.6.683.
  8. Lee YS, Jung YC, Kim SW, Yun JH, Bae SH and Nguyen PH. 2005. A Study on the limit of anchor dragging for ship at anchor(I). J Navig Port Res 29, 357-363. https://doi.org/10.5394/KINPR.2005.29.5.357.
  9. Yoon JD. 2014. The theory and executive ability of ship control. Se-jong Publisher, 1-15.