• 제목/요약/키워드: 선수갑판

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전산유체역학을 이용한 컨테이너 선수갑판 쇄파판에 작용하는 충격하중 계산 (Numerical Computations of Impact Forces Acting on Breakwater Plate of Bow Deck of Container Carrier)

  • 이서현;류재문
    • 대한조선학회논문집
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    • 제52권3호
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    • pp.198-205
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    • 2015
  • In this study, numerical studies using a Computational Fluid Dynamics(CFD) method were carried out to estimate the green water load acting on the breakwater plate of bow deck of container carrier, KCS. For the green load water load analysis, a full load condition was considered. The relative motions at bow deck were calculated from the seakeepig analysis. Statistical analysis were carried out to estimate the long term response of the relative motions with the North Atlantic wave scatter diagram. The equivalent design wave was determined from the RAO of the relative motions at bow and the long term responses. CFD geometry modeling with three different locations and simulations for the green water loads were carried out in the equivalent design waves. A commercial CFD program, STAR-CCM+ Ver. 8.04, was used and the green water pressures on the breakwater plate were calculated successfully. The CFD analysis for green water loads can be used as a useful design tool for the evaluation of the breakwater plate of the container vessel.

Green Water 충격에 대비한 선수갑판 설계압력의 산출 (Computation of the Bow Deck Design Pressure against the Green Water Impact)

  • 김용직;신기석;이승철;하영록;홍사영
    • 대한조선학회논문집
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    • 제56권4호
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    • pp.343-351
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    • 2019
  • Green water impact may sometimes cause some structure damages on ship's bow deck. Prediction of proper design pressure against the green water impact is an essential task to prevent the possible damages on bow deck. This paper presents a computational method of the bow deck's design pressure against the green water impact. Large heave and pitch motions of ship are calculated by the time domain nonlinear strip method. Green water flow and pressure on bow deck are simulated by the predictor-corrector second kind upstream finite difference method. This green water simulation method is based on the shallow water wave equations expanded for moving bottom conditions. For various kind of ships such as container ship, VLCC, oil tanker and bulk carrier, the green water design pressures on bow deck are computed and discussed. Also, the obtained results of design pressure on bow deck are compared with those of the classification society rules and discussed.

규칙파 중 갑판침입수에 미치는 선수 플레어 각도의 영향에 관한 실험적 연구 (An Experimental Study on the Effects of Bow Flare Angle about Green Water in Regular Waves)

  • 하윤진;이영길;정광열
    • 대한조선학회논문집
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    • 제49권1호
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    • pp.79-86
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    • 2012
  • It is very important to investigate and understand the motion of a FPSO on waves because green water phenomenon occurs owing to the relative motions between incident waves and a ship on them. In this research, both experimental and some numerical approaches have been performed in head sea conditions with regular waves. As an object model of this research, a FPSO model is set free to heave and pitch during the experiments. Also, the motions of the FPSO model which are the results of the experiments are used for the corresponding numerical computations. The purpose of this study is to clarify the effect of bow flare on green water load. In this research, it is found that the amount of green water entered from the side of bow is decreased by the increase of bow flare angle. Moreover, the relation between the green water on the bow upper deck and the impact load on the vertical wall located at turrethead is investigated. The results of this research could be used as one of the fundamental data to design bow flares. Also, an optimized bow flare angle is proposed in this study.

반전형 선수부 형상을 갖는 고속 쌍동선의 부가물이 주행성능에 미치는 영향에 관한 연구 (A Study on the Effect of Hull Appendages of High-Speed Catamarans with Modified-reverse bow on the Running Performance)

  • 김도정;나현호;김정은;오도원;최홍식
    • 해양환경안전학회지
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    • 제25권5호
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    • pp.601-608
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    • 2019
  • 본 연구에서는 선수 돌출의 반전형 선수 형상을 가진 고속 쌍동선의 선체부착 부가물에 의한 주행성능 영향에 대하여 수치해석과 회류수조 모형시험을 통하여 비교분석하였다. 반전형 선수 형상은 재래식 선수 형상보다 선수 발산파 파정의 생성위치를 선미방향으로 이동시켜 개선된 조파형상을 보이며, 저항 및 안정된 항주자세에 효과적임을 보였다(Kim et al., 2019). 본 연구에서의 반전형 선수 내측에 부착된 핀과 선미단 인터셉터(Interceptor)에 의한 파형과 항주자세 변화 등 주행성능에 대한 모형시험 결과에서는, 1) 반전형 선수의 Trim 특성 2) Fin에 의한 내측 파의 중첩 개선 3) Fin과 Interceptor에 의한 자세제어는 두 선체 연결갑판(Wetdeck) 충격을 줄이는데 효과적인 것으로 판단된다.

여객선 외관 디자인의 특징에 관한 연구 (A Study on Characteristics of Exterior Design in Passenger Ships)

  • 변량선;박재희
    • 디자인학연구
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    • 제18권4호
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    • pp.65-72
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    • 2005
  • 여객선(passenger ships)은 항로와 운쏭 목적에 따라 서로 다른 마켓(markets)을 가지고 있다. 승객파 선주의 다양한 요구와 시장 경쟁에서 우위를 선점하기 위해 선박 규모와 종류(categories) 따라 독자적인 디자인 스타일을 나타내며 서로 다른 디자인 해결책과 변화를 보이고 있다. 특히 여객선의 외관디자인 스타일은 인테리어 디자인과 함께 선사의 고유한 아이덴티티를 구축하고 있으며, 이를 통해 선사의 차별화 되는 디자인과 품질보증에 주력하고 있다. 여객선 외관 입면은 크게 하부(선각, hull)와 상부(superstructure) 그리고 선수 선미부의 디자인으로 구분될 수 있으며, 각창 환창, 발코니, 퍼널(funnel), 선수 선미부, 노출갑판 그리고 글라스 파사드(glass passed)등은 갑판과 주 수직구획에 의한 공간의 구성 요소에 따라 외관 입면의 구획과 형태가 구별되어 진다. 선박 최상부의 퍼널은 선사만의 독특한 아이콘의 역할로 외관형태와 브랜드 이미지가 잘 결합되어진 총체적인 브랜드 아이덴티티를 보여주며 기능과 형태 그리고 측면에서의 디자인 밸런스 역할을 나타낸다. 해상과 선박기능으로 인한 단조로움과 폐쇄성에 대항하여 외부(바다)로의 개방성, 확장성을 가지며 새로운 개념의 외관스타일로 발전하여야 할 것이다. 이러한 외관 스타일은 기능과 공간계획과 연관되어 새로운 디자인(피부와 접하는 오픈형 공간, 전면글라스 파사드 등)과 구조형태(초대형 상부구조, 플랫폼, 유선형 선박외형, 여객과 화물의 이동 적재성 기능을 갖춘 해양 건축 구조물 등)로 발전될 수 있을 것이다.

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선수부 갑판침입수의 수치시뮬레이션에 대한 기초연구 (A Fundamental Study for the Numerical Simulation Method of Green Water Occurrence on Bow Deck)

  • 정광열;이영길;김남철
    • 대한조선학회논문집
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    • 제47권2호
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    • pp.188-195
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    • 2010
  • Green water load is an important parameter to be considered in designing a modern ship or offshore structures like FPSO and FSRU. In this research, a numerical simulation method for green water phenomenon is introduced. The Navier-Stokes equations and the continuity equation are used as governing equations. The equations are calculated using Finite Difference Method(FDM) in rectangular staggered grid system. To increase the numerical accuracy near the body, the Cartesian cut cell method is employed. The nonlinear free-surface during green water incident is defined by Marker-density method. The green waters on a box in regular waves are simulated. The simulation results are compared with other experimental and computational results for verification. To check the applicability to moving ship, the green water of the ship which is towed by uniform force in regular wave, is simulated. The ship is set free to heave and to surge.

입자영상유속계를 이용한 대형수송함(LPH) 갑판 상부의 유동장 측정 연구 (A Research of the Flow-Field Measurement Above the Flight Deck on LHP by PIV System)

  • 심호준;정진덕;조태환;이승훈;송지수
    • 대한조선학회논문집
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    • 제59권4호
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    • pp.225-234
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    • 2022
  • The flow field measurement above whole area of the flight deck on 'Landing Platform Helicopter (LPH)' was performed by using PIV system in wind tunnel. In various heading angle conditions (0deg, -30deg, -45deg, -60deg, -75deg and ±90deg), the velocity fields such as U velocity & V velocity were measured at three different height above flight deck. Due to the geometrical characteristics of several bodies like deck, crane and super-structure, various vortex were generated. When the heading angle is 0deg, the deck edge vortex by flight deck and massive separation by super-structure were clearly observed by visualization with smoke and PIV, respectively. In other heading angles, the acceleration of flow in space between crane and super-structure were detected. And area with flow separation by super-structure is directly related to the heading angle of vessel.

B-Spline을 이용한 어선의 선수미부 초기 선형 설계 (Computer Aided Design of the Fore and After Body of Fishing Vessel by Using B-Spline)

  • 김동준;홍봉기
    • 수산해양기술연구
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    • 제27권1호
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    • pp.75-82
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    • 1991
  • 어선의 초기 설계 단계에서 필요한 초기선형의 선수미부 생성을 위하여 B-spline 곡선과 형상계수를 결합한 방법을 적용하였다. 선수미부의 각부분에 대하여 선형별로 형상계수를 선정한 뒤 이를 이용하여 B-spline 곡선의 정점을 구하도록 하였다. 선수부분의 경우 bulbous bow를 가지는 경우와 그렇지 않는 것으로 크게 분류한 뒤 bulbous bow를 가지는 경우는 수선면 근처의 형상에 따라 2가지로 분류하였다. 수선면보다 윗부분에 대해서는 bulbuos bow와는 무관하므로 이의 유무에 상관없이 직선으로 갑판까지 가는 경우와 곡선을 가지는 경우로 분류하여 다루었다. 선미부분의 경우는 수선면 윗부분은 transom stern과 cruiser stern으로 분류하였으며 수선면이하의 부분은 선미 bulb를 가진 선형과 shoe piece를 가진 선형으로 분류하여 다루었다. 형상계수는 각 경우에 따라 반드시 지켜야 할 점의 좌표와 기울기 등이 우선 선정되었으며 곡선부의 볼록한 정도를 조절해 주는 계수들이 선정되었다. 형상계수를 이용하여 곡선을 생성시킬 기법으로는 다항식, cubic spline, parabolic blending, bezier curve, non-algebraic function 등이 있으나 연속성이 충분히 보장되고, 국부적으로 변형이 가능하며, 불연속점이 정의 및 직선의 표현이 가능한 B-spline을 선택하였다

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POST PANAMAX급 6,200 TEU CONTAINER선박의 선수부 BREAKWATER 구조 강도 평가 (Strength Assessment for Fore-Body Breakwater Structure of Postpanamax Class 6,200 Teu Container Carrier)

  • 김영남;김경래;유종근
    • 대한조선학회 특별논문집
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    • 대한조선학회 2006년도 특별논문집
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    • pp.97-105
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    • 2006
  • Until now, we are designing the breakwater of container vessel as cantilever structure ypically. Recently, we have designed "side shell touch type breakwater" for the first time to 6,200TEU Class Container Carrier registered on Lloyd Classification. The Lloyd Rule does not provide requirements for breakwater scantling but only recommend breakwater wave load and Lloyd Class requests for submitting the calculation results. At early design step, we had reviewed the breakwater structure through the calculation of simple beam theory with wave load recommended by Lloyd and referring to already built same size of container vessel. At the same time we had carried out F.E.M analysis of breakwater structure and had updated design, so we could verify the strength of side shell touch type breakwater at final step.

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고속선박의 선수부 상자형 구조물에 작용하는 Green Water 설계 충격하중의 산출 (Computation of the Green Water Design Impact Loads Acting on the Box-Type Structure of a High-Speed Ship's Bow)

  • 김용직;김인철;신상묵
    • 대한조선학회논문집
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    • 제54권1호
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    • pp.34-42
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    • 2017
  • In rough seas, green water shipped on board may impose quite large impact loads on the structures on deck and sometimes result in structure damages. One of the essential tasks of the naval fluid engineers is to provide the design impact loads which are needed for proper design of the structure strength against the green water impacts. Computation of the design impact load due to green water needs first a process to find the sea condition and the ship cruising condition which cause maximum green water impacts on structures as well as other succeeding processes to compute ship motion responses, green water flows and impact loads. Also, as a bold and practical process, it is needed that the irregular real seas are to be substituted by design regular waves which are equivalent in view points of green water impacts. In this paper, the whole processes to compute the design green water loads acting on bow structure are set up creatively. And the green water design impact loads acting on the box-type structure of a high-speed ship's bow are computed and discussed.