• Title/Summary/Keyword: 선체구조

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Approximate Analysis of Shock Response for Ship Hull Girder (선체거더 충격응답의 근사해석)

  • Song, C.T.;Park, B.W.;An, C.W.;Cho, Y.S.
    • Journal of the Society of Naval Architects of Korea
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    • v.33 no.2
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    • pp.75-84
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    • 1996
  • The structural response of naval surface ships subjected to underwater shock loadings is a very important problem in viewpoint ship survivability. In practice, among others the case of noncontact underwater explosions is the only one shock loading considered in designing naval surface ships to resist underwater explosions. In orator to efficiently design naval surface ships and their equipment to resist such shock loadings it seems necessary to prepare theoretical analysis tools and/or empirical design criteria which can predict the three dimensional transmission of shock waves. This paper describes a simplified method to analyse shock responses for ship hull girder, which uses a loading function to approximate the shock loadings on ship structures due to noncontact underwater explosions. A couple of examples to apply this method are provided.

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A Study on the Elasto-Plasticity Behaviour According to the Yield Strength of a Ship's Plate (항복강도에 따른 선체판의 탄소성거동에 관한 연구)

  • 고재용;박주신
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2003.05a
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    • pp.27-31
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    • 2003
  • Recently, buckling is easy to happen as that High tensile steel that is the thin plate absence is used comprehensively for the structure. Specially, buckling is getting into important design standard in hull construction which use High tensile steel. Therefore, that grasp conduct exactly after buckling is important in stability of hull structure. In this study, examined closely about conduct and secondary buckling after initial buckling of thin plate structure which receive compressive load according to various kinds yield strength under simply supported condition that make by buckling strength formula standard in each payment in advance rule to place that is representative construction of hull in this research. Analysis method is F.E.M by ANSYS and complicated nonlinear behaviour to analyze such as secondary buckling in used arc-length method.

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선체구조설계 해석 및 진동소음해석 시스템

  • 나승수;정태영;신종계;김재승;송재영
    • Bulletin of the Society of Naval Architects of Korea
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    • v.30 no.4
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    • pp.20-26
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    • 1993
  • 본 연구는 CSDP-선체 CAD 시스템 개발'4' 세부과제의 일환으로 수행되었으며 세부과제는 선체 구조 설계 기능을 전산화하기 위한 목표를 설정하고 CSDP 연구사업의 첫해년도부터 지금까지 4년간 수행하였다. 1차년도('88년∼'89년)에는 그 당시까지 단편적으로 개발된 구조설계 프로그 램을 통합하여 살물선 중앙부에 대해 선급규정에 의한 종강도 부재의 배치 및 치수결정 프로그 램을 개발하였다. 2차년도('89년∼'90년)에는 1차년도의 연구결과를 힁부재 및 힁격벽 부재까지 확장하여 살물선 중앙부의 종강도 부재, 힁격벽 부재의 배치 및 치수결정 프로그램을 개발하여 살물선 중앙부의 구조설계를 지원하는 프로그램을 완성하였다. 3차년도('91년∼'92년)에는, 이 중선각 유조선에 대한 관심이 고조되고 있는 바, 동 세부과제에서도 조선소의 요구에 따라 대상 선박을 살물선에서 이중선각 유조선으로 확장하고, 기존의batch방식을 대화식으로 교체하여 선급규정(DnV, L1oyd)에 의한 종강도 부재의 설계 기능과, 간이 해석에 의한 대화식 이중선각 유조선 중앙부의 구조배치 및 치수결정 기능을 갖는 프로그램(ISSMID_T)을 개발하였다. 당해 연도인 4차년도에는, 3차년도까지 개발한 프로그램의 기능, 성능을 보완 확장하였고, 또한 조선 전용 선체 CAD시스템(AUTOKON)과의 Interface도 삼성중공업과 공동으로 개발하였다.

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An analytic study on the hull characteristics of ship accidents at low capsizing speeds (저속으로 전복되는 선박사고의 선체 특성에 대한 해석적 연구)

  • Choi, Soon-Man
    • Journal of Advanced Marine Engineering and Technology
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    • v.40 no.3
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    • pp.235-239
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    • 2016
  • The capsizing speed of an unstable vessel with a lost restoring moment can be understood as a unique response to an accident situation, and is naturally affected by such parameters as moment of inertia, metacentric height, and transverse damping coefficient of the hull in the case of free roll motion. Additionally, it is supposed that the analysis of capsize accidents can be further simplified when a vessel's leaning velocity is shown to be quite low. Therefore, capsize accidents with low leaning speeds are desirably categorized in view of rescuing strategies, as opposed to fast capsize accidents, since the attitude of the declining hull can be properly estimated, which allows rescuers to have more time for helping accident cases. This study focuses on deriving some analytical equations based on the roll decay ratio parameter, which describes how a hull under a low-speed capsize is related to the situational hull characteristics. The suggested equations are applied to a particular ship to disclose the analytical responses from the model ship. It was confirmed that the results show the general characteristics of slow capsizing ships.

Minimum Weight Design of Ship Structure by Reanalysis Technique (재해석기법에 의한 선체 최소중량설계)

  • S.W.,Park;J.K.,Paik;I.S.,Nho;H.S.,Lee
    • Bulletin of the Society of Naval Architects of Korea
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    • v.26 no.3
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    • pp.62-70
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    • 1989
  • For the conduct of optimum design for such complicated and large structures as ship structure by direct structural analysis such as finite element method, it is very important problem that the process needs much computational efforts due to the repeated structural analysis. In this study, the reanalysis technique based on the modified reduced basis method is applied in the process to reduce the computing time required in repeated structural analysis. Numerical examples to simple grillage and actual ship structure are performed and applicability of reanalysis technique to structural optimization process is discussed.

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A study of the analysis of shaft alignment considering hull deflections for 50,000 DWT oil/chemical tankers (5만 DWT 석유화학제품운반선의 선체변형을 고려한 추진축계 정렬해석 연구)

  • Lee, Jae-Ung
    • Journal of Advanced Marine Engineering and Technology
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    • v.40 no.3
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    • pp.191-197
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    • 2016
  • The shaft system of a vessel becomes stiffer because of larger engine power, whereas the hull structure becomes more flexible because of scantling optimization conducted by using high-tensile thick steel plates. The draught-dependent deformation of the hull affects each bearing offset and reaction force comprising the subsequent shaft system. This is the reason that more sophisticated shaft alignments are required. In this study, an FE analysis performed under the expected operating conditions of two (2) vessels, as maximum draught change and to analyze the shaft alignment using the relative bearing offset change, which was derived from an FE analysis of the 50,000 DWT oil/chemical tanker, which has become an eco-friendly vessel in recent years. Based on this, the influence of the hull deflection on the bearing offset was reviewed against results for shaft alignment conditions.

선체 구조 설계 분야의 최적화 기술 적용 현황 및 전망

  • 나승수;김외현;엄항섭;윤장호
    • Bulletin of the Society of Naval Architects of Korea
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    • v.31 no.1
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    • pp.13-21
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    • 1994
  • 본 연구에서는 지금까지 개발된 주요 최적화 기법의 현황을 살펴보고, 국내 조선소에서의 선체 구조설계시 최적화 기술의 적용 현황 및 적용예를 살펴보고자 하며, 또한 지금까지 국내에서 수행된 최적화 기술에 대한 연구를 토대로 향후 나아가야 할 최적화 기술에 대한 연구 방향을 모색하고자 한다.

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선체에 작용하는 비선형 파랑하중

  • 윤범상
    • Bulletin of the Society of Naval Architects of Korea
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    • v.32 no.4
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    • pp.68-72
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    • 1995
  • 파랑하중은 선체의 구조해석을 위해 필수적인 입력자료로서 이의 정확한 추정이 매우 중요하다는 사실은 누구도 인정하지만, 이는 기본적으로 구조역학의 문제가 아니며 또한 내항성 분야의 기본관심 항목도 아니기 때문에 적어도 국내에서는 양분야로부터 경원시되어 온 것이 사실이다. 최근 ITTC와 ISSC가 이의 중요성을 새삼스레 인식하고 이에 관한 산하기구를 두어 공동으로 운영하고자 하는 노력은 매우 고무적인 일이라 할 수 있다.

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A Study on the Characteristics of FRP Composites and Structural Adhesives (FRP선체 복합재료와 구조용 접착제의 실험적 연구)

  • Choi, Han-Kyu
    • Journal of Korea Ship Safrty Technology Authority
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    • s.26
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    • pp.4-23
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    • 2009
  • 선체용 복합재료 및 구조용 접착제와 신공법인 진공 성형법으로 건조한 레저선박에 강화플라스틱 구조기준을 그대로 적용하기에는 무리가 있으며, 따라서 복합재료, 수지, 접착제 및 진공 성형법 등 현장조사를 토대로 복합소재 및 접착제를 이용한 시험편을 제작하여 복합재료의 기계적 특성, 구조용 접착제에 대한 신뢰성 평가 및 국내외 기준 비교 검토를 통한 국내 실정에 적합한 검사기준을 제안하고자 한다.

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Calculation of the Dynamic Contact Force between a Shipbuilding Block and Wire Ropes of a Goliath Crane for the Optimal Lug Arrangement (최적 러그 배치를 위한 골리앗 크레인의 와이어 로프와 선체 블록간의 동적 접촉력 계산)

  • Ku, Nam-Kug;Roh, Myung-Il;Cha, Ju-Hwan
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.25 no.5
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    • pp.375-380
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    • 2012
  • In this study, dynamic load and dynamic contact force between a building block and wire ropes of a goliath crane are calculated during lifting or turn-over of a building block for the design of an optimal lug arrangement system. In addition, a multibody dynamics kernel for implementing the system were developed. In the multibody dynamics kernel, the equations of motion are constructed using recursive formulation. To evaluate the applicability of the developed kernels, the interferences and dynamic contact force between the building block and wire ropes were calculated and then the hull structural analysis for the block was performed using the calculation result.