• 제목/요약/키워드: External lashing

검색결과 6건 처리시간 0.017초

대형 컨테이너선의 컨테이너 고박 프로그램 개발 (Development of the Container Securing Program for Large Container Carriers)

  • 신상훈;황규현
    • 대한조선학회논문집
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    • 제51권5호
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    • pp.362-368
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    • 2014
  • Container vessel sizes have constantly increased over the past two decades. With increasing ship sizes and higher container loading capacities, the adoption of lashing bridges has also increased. Today's lashing bridge designs range from 1st tier to 3rd tier lashing bridges. Container securing program of the past which is based on two lashing rods and 1st tier lashing bridge has to be improved to be suitable for the present time. The equilibrium equations in this study are established to cover the application of 3~4 lashing rods and 2nd~3rd tier lashing bridges. In addition developed program is improved to be able to calculate the reaction forces and optimum arrangement under the external lashing. An optimization algorithm which is suitable for the container securing problems involved the equality constraint has been also adopted in this study.

국내 연안 카페리 차량 고박 장치 안전성에 관한 연구: 제2부 가속도 예측 방법에 따른 고박 안전도 비교 연구 (Study on Structural Safety of Car Securing Equipment of Coastal Carferry: Part II Assessment of Lashing Safety according to Acceleration Prediction Approaches)

  • 정준모;조희상;이경훈;이영우
    • 한국해양공학회지
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    • 제30권6호
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    • pp.451-457
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    • 2016
  • For a carferry with a displacement of 1,633 tonf, a seakeeping analysis-based direct load approach (DLA) was used in Part I of these series, where the final deliverable was the long-term probabilistic acceleration components. In Part II of these series, the tangential acceleration components are explained based on two approaches: a standard called the IMO CSS code and simple formulas with the probable maximum roll and pitch rotations. The subsequent tangential acceleration-induced external force components are also introduced for these two approaches. The lashing strength components were selected from the IMO CSS code. It was assumed that two different vehicles (a car and a truck) were stowed at the most distant locations on the main deck to assume the largest tangential acceleration components and were secured with four steel wires with longitudinal and transverse lashing angles of $45^{\circ}$. Four cases were considered, with different methods for predicting the acceleration components and different tools for the external loads and lashing strengths involved: cases Rule-LS (rule-based maximum probable roll and pitch angles for predicting the acceleration components in conjunction with LashingSafety), DLA-LS (seakeeping-based long-term acceleration components with LashingSafety), CSS-LC (IMO CSS code-based acceleration components using LashCon), and CSS-LS (IMO CSS code-based acceleration components using LashingSafety). In terms of the acceleration and external force components, the CSS-LC and CSS-LS results are more than two times the results of Rule-LS. Thus, when the external forces and lashing strengths are evaluated using CSS-LC and CSS-LS, the truck needs more lashing wires, while Rule-LS and DLA-LS predict that the present lashing configuration is on the safe side.

평수구역을 운항하는 여객선의 차량고박 기준에 관한 연구 (A Study on Lashing Standards for Car Ferry Ships Sailing in Smooth Sea Areas)

  • 강병선;정창현;김득봉
    • 해양환경안전학회지
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    • 제26권1호
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    • pp.1-7
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    • 2020
  • 차량 및 화물 고박불량과 횡경사에 따른 화물의 이동으로 인한 여객선 침몰사고 이후 화물 고박의 중요성이 제기되었고 카페리선박의 구조 및 설비 등에 관한 기준이 개정되어 풍속 7 m/sec, 파고 1.5미터를 초과하는 해상상태에서는 평수구역을 운항하는 카페리여객선에 적재된 모든 차량은 고박을 실시해야 한다. 본 연구에서는 평수구역을 운항하는 여객선의 해상상태에 따른 선체운동을 계측하고 NSM(New Strip Method) 계산 결과와 비교 하였으며, 대상선박은 풍속 6 ~ 8 m/s, 파고 0.5 ~ 1.0미터의 해상상태에서 최대 1.41° 및 1.37°의 종 동요와 횡 동요를 하였고, 풍속 10 ~ 12 m/s, 파고 1.0 ~ 1.5미터의 해상상태에는 최대 1.49° 및 2.43°의 종 동요와 횡 동요를 하였다. 선체운동 결과를 반영하여 외력과 지지력을 비교해 본 결과 고박하지 않은 상태의 지지력이 더 강한 것으로 평가되어 해당 기상조건에서는 고박을 하지 않아도 차량이 미끄러지거나 전도되지 않는 것으로 평가되었다. 향후 다양한 선박의 선체운동 측정, 외력 및 지지력 비교를 통해 보다 합리적인 차량고박 기준 개정이 요구된다.

컨테이너선 라싱 브릿지 구조 강도 평가에 영향을 미치는 주요 변수의 구조해석 (Structural Analysis of the Governing Variables Affecting the Structural Strength Evaluation of the Lashing Bridges in Container Vessels)

  • 이명수;박주신
    • 해양환경안전학회지
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    • 제29권2호
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    • pp.230-237
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    • 2023
  • 코로나 19 팬데믹 및 기후 변화 등으로 전 세계적으로 필수적인 생필품과 자원의 품귀 이슈가 지속해서 발생하고 있다. 이러한 현상을 극복하고자 교역량의 수요가 갑자기 증가하였으며 이 결과 컨테이너선의 운임이 대폭 상승하였다. 컨테이너선의 크기 변화는 1960년대 1,500TEU(twenty-foot equivalent unit)를 시작으로 2021년에는 24,400TEU로 대형화가 진행되고 있다. 컨테이너 적재 능력의 향상은 라싱브릿지 구조의 대형화와 긴밀하게 연관되어 있고, 안전한 컨테이너 고박 및 항해 시 발생하는 다양한 외력 하중에 안전한 구조설계를 해야 한다. 현재 주요 선급에서는 라싱브릿지 구조 안전성을 평가할 수 있는 구조해석 기반의 지침서를 배포하고 있으나, 허용기준 및 평가 방법이 달라서 설계 시 엔지니어들에게 혼선을 주고 있다. 본 연구에서는 결과에 영향을 줄 가능성이 큰 주요 변수들(모델링 범위, 오프닝 고려 여부, 메쉬 크기) 변화에 따른 강도 변화 특성을 정리하였다. 이 결과를 바탕으로 저자들은 합리적인 구조해석 기반 평가에 대한 검토사항을 제안하였고, 추후 선급 기준 개정 시 참고가 될 수 있을 것으로 기대한다.

모달시험을 통한 국부 구조물 방진대책 수립 (Vibration measures for local structures through modal tests)

  • 권종현;김문수;양성붕;이원석;이봉민
    • 대한조선학회 특별논문집
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    • 대한조선학회 2017년도 특별논문집
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    • pp.14-18
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    • 2017
  • The Lashing bridge and radar mast of ship are upright structures so they are generally exposed to excessive vibration. Recently, the use of low speed main engines for improving fuel efficiency has been increasing, and the excitation frequencies of the main engine are moving to the low frequency band. If the excitation frequencies are coincident with the natural frequencies of the local structure, excessive vibration occurs during main engine operating condition. The modal test is to experimentally determine resonance frequency, mode shape, and damping, which are vibration characteristics of a mechanical structure under dynamic external force. Through this study, the vibration characteristics of the structure are obtained by modal tests and the low vibration measure is applied to the local structures.

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선박용 감요장치에 대한 고찰 (A Study on the Anti-Rolling Systems for Vessels)

  • 권순영;홍봉기
    • 수산해양교육연구
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    • 제9권2호
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    • pp.167-178
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    • 1997
  • It has been expected not only for crew but also for passengers to realize a ship whose rolling and other motions are small as much as possible. Restricting our consideration to the roll reduction, the conventional roll stabilization system, fins or anti-rolling tanks hve been utiized as the actuator. Excessive motions would interfere with the recreational activities of passengers on a cruise ship. Often more than half of the load of a containership is stowed above deck where it is subjected to large acclerations due to rolling. In some situations this may cause some internal damage to the contents of the containers; in more severe situations failure of the lashing can occur and containers may be lost over-board. Underdeck cargo in ordinary cargo ships and bulk commodities in colliers, ore ships and grain ships can shift if the motions become too severe. The purpose of this study is to concentrate on the additions. either internal or external to the hull, that reduce or otherwise improve the motion responses of the hull. It is assumed that the additions are such that their benefit to the motions of the ship outweights any impact on the ability of the ship to perform its assigned task. It is particularly challenging to obtain large improvements in the motion characteristics of existing ships that are being rebuilt or modified for some task not anticipated in their original design. Further the authors will statistically analyze the influence of ruder-roll-yaw coupling motion in the case of application of this advanced control method to various kinds of ship.

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