• Title/Summary/Keyword: 선미 플랩

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An Experimental Study on the System Identification and Anti-Rolling System Design for a Ship with Flaps (선미측에 플랩을 갖는 선박의 동특성 규명과 횡동요 제어계 설계)

  • 김영복;강귀봉;채규훈
    • Journal of Ocean Engineering and Technology
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    • v.18 no.2
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    • pp.39-45
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    • 2004
  • We have investigated the usefulness of an active stabilizing system to reduce ship rolling under disturbances, using varying reaction of the flaps. In the proposed anti-rolling system for a ship, the flaps, as the actuator, are installed on the stern, in order to reject the rolling motion induced by disturbances, such as waves. The action induced by the flaps, which is dependent upon the power of the disturbances, can keep the ship in balance. In this study, we define the system parameters under the given system structure, using spectral analysis and experimental studies. Based on this information, we design the controller to evaluate the usefulness of the proposed system.

Stability Analysis of a Small Racing Boat in Steady Wind and Wave Impact (바람과 파랑충격을 고려한 소형경주정의 안정성해석)

  • S.H. Chun;H.H. Chun;M.K. Ha;M. Nakato
    • Journal of the Society of Naval Architects of Korea
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    • v.36 no.1
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    • pp.1-14
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    • 1999
  • The simulation results of a small racing boat racing in steady wind and encountering waves are investigated by Nakato & Ha. The simulation of the race running is realized by referring the measured data of boats and the motions are described by a set of equations of motion in six degree of freedom as generals used in the aerodynamics. In this report, Nakato & Ha's motion equations are modified by equipping the flaps to generate the lift. The flaps of the racing boat could restrain considerably the boat from capsizing caused by superposed external disturbances, wind and encountering waves.

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An Experimental Study on Resistance decrease Due to the Stern Flap of a Large Warship (대형 함정에 부착된 flap의 저항감소 효과에 대한 실험적 고찰)

  • 허재경;이정관
    • Journal of the Society of Naval Architects of Korea
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    • v.41 no.1
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    • pp.70-74
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    • 2004
  • Model tests for a stern flap have been performed to decrease the resistance of a large warship and to optimize the flap. Stern flaps and wedges of fast crafts are studied to apply to a large vessel in terms of speed-length ratio. The model tests of the flap has been carried out to find the effects of the design parameters, i.e. length and angie on resistance decrease. This work concludes that the optimized stern flap reduced resistance not only at the high speed by 9% but also at the cruising speed.

A Study on Development of an Anti-Rolling System for the Ship Stability Improvement (선박안정성 향상을 위한 횡동요 방지 장치 개발에 관한 연구)

  • Kim, Young-Bok;Lee, Kwon-Soon;Kim, Jun-Hyo;Chae, Gyu-Hoon
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.11 no.1 s.22
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    • pp.23-28
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    • 2005
  • We have investigated the usefulness cf active stabilizing system to reduce ship rolling under disturbances, using varying reaction cf the flaps. In the proposed anti-rolling system for a ship, the flaps as the actuator are installed on the stem to reject rolling motion induced by disturbances like wave. The action induced by flaps which depends on power of disturbances am take the ship balance. Especially, in this study we identify the controlled system under the undefined system structure using spectral analysis and experimental studies. Based on these informations, we design the controller to evaluate the usefulness of the proposed system.

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An Experimental Study on the Optimization of Stern Appendix for New Generation Korean Fishing Vessels (차세대 한국형 어선의 저항성능 최적화를 위한 수조모형시험 연구)

  • Lee, Min Kyung;Kim, Su Jin;Yu, Jin-Won;Lee, Inwon
    • Journal of the Society of Naval Architects of Korea
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    • v.58 no.1
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    • pp.32-39
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    • 2021
  • Korean coastal fishery suffers from profitability degradation due to a decrease in fisheries resources, pollution in coastal waters, fuel coast increase, and market opening for aquaculture products. The next generation Korean fishing vessel aims at the improvement of energy efficiency, enhancement of crew welfare, and safety. These purposes can be accomplished by adopting a new standard hull form with improved resistance performance and a modernized residence facility on the deck. In order to improve resistance performance, this study attempts to optimize design variables for stern flaps for three kinds of fishing vessels - coastal multi-purpose, coastal trap, and dredged nets. A series of model tests for these fishing vessels was carried out in the towing tank of Pusan National University. The results indicate that for some cases, the stern flap caused the stern trim of the vessel to decrease, leading to the resistance reduction.

An Experimental Study on the Effect of Adoption of Special Rudders on Course Stability of a Ship (특수타의 채택이 침로 안정성에 미치는 영향에 관한 실험적 연구)

  • Sohn, K.H.;Kim, J.H.;Kim, H.S.;Kim, Y.S.;Ha, M.K.
    • Journal of the Society of Naval Architects of Korea
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    • v.34 no.3
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    • pp.27-37
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    • 1997
  • The paper deals with the effectiveness of various special rudders on course stability of a ship. We adopted five types of rudder, such as one normal rudder and four special rudders, which contain two rudders with concave and convex strips on sides respectively, one flapped rudder, and one rudder with end plates on tips. In the circulating water channel, model test was carried out for measuring lift characteristics of the rudders in open water. And various captive model tests were also carried out for measuring the experimental constants related with helm angle and steering in hull-propeller-rudder system. From the test results, the changes in manoeuvring hydrodynamic derivatives due to adoption of normal and special rudders were predicted. Then course stability performances of a ship with normal and special rudders were evaluated and discussed. As a result, it is clarified that the rudder with concave or convex strips and flapped rudder have no effect on course stability, while the rudder with end plates improves course stability with effect. The result in this study is expected to be used usefully when the course stability is in issue and has to be improved without amendment of hull design at initial design phase or after construction of a ship.

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