• 제목/요약/키워드: Tank Container

검색결과 92건 처리시간 0.036초

LNG 연료 추진선의 연료 탱크로서 탱크컨테이너의 적용성 연구 및 구조설계 (A Study and Design on Tank Container for Fuel Tank of LNG Fueled Ship)

  • 김태우;서용석;장기복;전민성;이강대;차경호
    • 대한조선학회논문집
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    • 제49권6호
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    • pp.504-511
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    • 2012
  • The objective of this study is to investigate tank container to be used as fuel tank for LNG fueled ship. Feasibility of tank container to the fuel tank of LNG fueled ship is addressed and the advantage of tank container as fuel tank of ship is investigated. Conceptual configuration of the tank container is designed as well as structural analyses based on finite element method are carried out to meet the design regulation suggested by shipping register. Static loading is considered by structural analysis and impact test is performed. It is necessary to require SRS(shock response spectrum) in order to investigate structural safety which can meet.

LNG 탱크 컨테이너의 내부압력 변화 분석 및 실제 홀딩타임 측정 (Internal Pressure Variation Analysis and Actual Holding Time Test on ISO LNG Tank Container)

  • 류영돈;이진한;조영도;오영삼;차경호
    • 한국가스학회지
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    • 제17권6호
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    • pp.1-7
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    • 2013
  • 이 논문에서는 특례기준에 따라 국내에서 최초로 제작하고 검사한 LNG 탱크 컨테이너를 이용하여 육상 및 해상 운송 시연사업을 하고, 탱크 컨테이너를 운송할 때 탱크 컨테이너 내부에 충전된 LNG의 압력변화와 탱크 컨테이너의 실제 압력유지기간을 측정하였다. 탱크 컨테이너 내부의 압력은 충전 직후에는 급속하게 상승하고, 탱크 컨테이너를 이동할 때 급속히 하강하나, 일정시간이 경과한 후에는 기액평형상태 그래프의 온도-압력 변화와 일치함을 확인하였다. 또한, 탱크 컨테이너의 실제 압력유지기간은 특례기준에서 규정한 20일 이상을 만족함을 확인하였다.

Tank 컨테이너 운영프로세스 및 관리방안 개선에 관한 연구 (A Study on Improvement of Operation Process and Management Plan for Tank Container)

  • 박동진;김환성
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2019년도 추계학술대회
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    • pp.191-192
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    • 2019
  • 운송 시장은 각 화물별 수요에 맞는 서비스를 제공하기 위해 계속해서 변화해 왔다. 현재 액체류의 운송에는 탱크 컨테이너가 많이 활용되고 있는데, 이 탱크 컨테이너 운송 시장은 지속적으로 성장하는 추세에 있다. 이에 따라 탱크 컨테이너에 맞는 핸들링 수요 역시 늘어나고 있다. 본 연구에서는 현재 탱크 컨테이너 운송 시장의 전반에 대한 사례분석을 토대로, 운송 프로세스 및 관리 방안에 있어서의 개선점을 제시하고자 한다. 이에 본 논문에서는 정보 단절이 생기는 구간을 없애고 정보의 연속성 확보 및 위험물 관리 효율성 제고를 위해 통합 시스템이 필요함을 시사하고 있다.

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2,600 TEU Container Vessel 의 Fresh Water Tank 구조손상 사례 고찰 (Consideration of Structural Damage of Fresh Water Tank for 2,600 TEU Container Vessel)

  • 신성광;안형준;최의걸;고명섭;임효관
    • 대한조선학회 특별논문집
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    • 대한조선학회 2005년도 특별논문집
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    • pp.216-221
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    • 2005
  • Many tanks such as a fresh water tank, an aft peak tank and oil tanks are arranged in the engine room and aft part areas of the ship. By added mass effect of the fluid inside the tanks, the natural frequency will be changed according to filling height of the tank. For this reason, there is possibility of occurrence of excessive vibration by resonance between natural frequencies of local structure and excitation frequencies of the propeller or main engine. Therefore, calculation of natural frequencies is required for structure for many types of tank which are contacting with water or oil to consider added mass effect for anti-resonance design at design stage. In this study, a case of structure damage on the fresh water tank for 2600 TEU container vessel is introduced. In addition, natural frequency analysis and vibration measurement have been performed to investigate vibration characteristics for excessive vibration control.

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회전익항공기 외부 보조연료탱크용 복합재 컨테이너 조류충돌 수치모사 연구 (Study on the numerical simulation of bird strike for composite container of external auxiliary fuel tank for rotorcraft)

  • 김현기;김성찬
    • 한국산학기술학회논문지
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    • 제18권7호
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    • pp.709-713
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    • 2017
  • 일반적으로 항공기용 연료탱크는 평상시에는 연료 보관이 주요 기능이지만, 추락과 같은 긴급한 상황에서는 연료탱크의 건전성은 승무원의 생존 가능 여부와 직결된다. 특히, 항공기의 외부 보조 연료탱크가 조류충돌(bird strike)에 의한 파손으로 누유가 발생하게 되면 승무원의 생존성에 큰 위협이 될 수 있다. 이 때문에 항속거리 확장을 위한 보조연료탱크가 항공기 외부에 설치되는 경우에는 조류충돌에 대한 연료탱크의 건전성 입증이 요구된다. 본 연구에서는 외부 보조연료탱크용 복합재 컨테이너의 조류충돌 상황에 대한 영향성 분석을 위해 충돌해석 전용 소프트웨어를 사용하여 수치해석을 수행하였다. 수치모사를 위해 컨테이너 구조물은 쉘 유한요소를 사용하여 유한요소로 모델링하고 유체와 조류는 입자법을 사용하여 모델링 하였다. 수치해석 결과로 조류충돌에 의한 내부 유체의 거동을 살펴보고 구조물의 최대 변형량과 변형률을 계산하였으며 보조연료탱크 장착용 복합재 컨테이너의 최대응력 수준을 파악하여 외부 보조연료탱크 개발 초기 단계에서 조류충돌 영향성을 반영하기 위한 데이터 확보 가능성을 타진하였다.

플라스틱 세포치료제 보관용기의 극저온 환경 노출 시 구조적 변화에 대한 해석적 비교 (Analytical comparison of structural changes of plastic cell-based therapeutic drug storage containers when exposed to cryogenic environments)

  • 박정연;이동목;;이순례;윤길상
    • Design & Manufacturing
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    • 제14권2호
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    • pp.1-6
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    • 2020
  • Recently, research and commercialization related to the field of cell-based therapeutic drug development has been actively conducted. In order to maintain cell viability and prevent contamination, refrigeration preservation devices, such as CRF (controlled rate freezer) or vapor type LN2 tanks have been developed. On the other hand, the storage container for liquid nitrogen tanks currently on sale minimizes the flow structure to prevent structural defects when stored in a liquid nitrogen tank having a high thermal conductivity than vapor nitrogen. If the cell-based treatment drug is stored in the gaseous LN2 tank as it is, the cell survival after thawing is greatly reduced. It was estimated that the existing storage container structure was a factor that prevented the rapid entry and circulation of gaseous nitrogen into the container. Therefore, this study intends to propose a new supercellular storage container model that can maintain the mechanical strength while maximizing the fluid flow structure. To this end, we estimated that the structural change of the storage container effects on the equivalent stress formed around the through-holes of them when exposed to a cryogenic environment using thermal-structural coupled field analysis. As a result of storage experiments in the gas phase tank of the cell-based therapeutic agent using the developed storage container, it was confirmed that the cell growth rate was improved from 66% to 77%, which satisfied the transportation standards of the FDA(Food and Drug Administration) cell-based therapeutic agent.

53ft 액화천연가스 탱크 컨테이너의 정적 구조 강도 평가에 관한 연구 (A Study on the Static Structural Strength Evaluation of 53ft Liquefied Natural Gas Tank Container)

  • 심천식;김호경;정다슬;이덕연;김강호;김민석;위성국;노희창;권영빈;홍창석;김병화;김청학
    • 대한조선학회논문집
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    • 제60권4호
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    • pp.278-287
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    • 2023
  • This study aims to analyze and evaluate the structural strength of a 53ft Liquefied Natural Gas (LNG) tank container according to International Organization for Standardization (ISO) 1496-3, amidst growing global demand for LNG transportation. The research was conducted in two main stages: structural analysis using Finite Element Analysis (FEA) under various load conditions, and structural strength tests following ISO 1496-3 test procedures. The structural analysis was performed considering different loading conditions to assess the structural safety of the tank container. Calculated stresses were compared with allowable stress under specified load conditions. The structural strength tests were conducted at Mokpo National University's Subsea Umbilical cable Riser Flowline R&D Center, which provided a suitable testing environment. The study found that calculated stresses met the allowable stress under specified load conditions, confirming the structural safety of the tank container. Additionally, the maximum deformation and permanent deformation satisfied the design criteria for all test cases, indicating the container's structural strength meets requirements. The research also contributed valuable data for future structural strength tests of similar products and facilitated the development of safe and efficient LNG transportation solutions by developing effective test procedures in accordance with ISO 1496-3 standards.

20피트 콘테이너형 압축천연가스탱크의 개념설계 및 구조효율성 평가 (A Conceptual Design and Structural Efficiency Evaluation of 20ft Container Shape CNG Tank)

  • 김영훈;김중엽;이재욱;송재영
    • 대한조선학회논문집
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    • 제42권2호
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    • pp.142-150
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    • 2005
  • Recently, the gas transportation system for CNG(Compressed Natural Gas) has been developed and several innovative approaches are presented from the aspects of commercial demand. In this study, a new type of 20ft container shape CNG tank with two and four cylinder intersections by using the intersecting spheres has been proposed. And the structural analysis of CNG tank with Mildsteel, API High Tensile Steel, Al-alloy and FRP has been carried out to compare the different types of pressure vessels of materials used. The analysis result shows that the proposed intersectional cylindrical type of CNG tank can be applied to the gas transportation system. And further study on the commercial analysis and associated equipments should be carried out for the practical applications.

Designing a Hydro-Structural Ship Model to Experimentally Measure its Vertical Bending and Torsional Vibrations

  • Houtani, Hidetaka;Komoriyama, Yusuke;Matsui, Sadaoki;Oka, Masayoshi;Sawada, Hiroshi;Tanaka, Yoshiteru;Tanizawa, Katsuji
    • Journal of Advanced Research in Ocean Engineering
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    • 제4권4호
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    • pp.174-184
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    • 2018
  • We herein propose a new design procedure of a flexible container ship model where the vertical bending and torsional vibration modes are similar to its prototype. To achieve similarity in torsional vibration mode shapes, the height of the shear center of the model must be located below the bottom hull, similar to an actual container ship with large opening decks. Therefore, we designed a ship model by imparting appropriate stiffness to the hull, using urethane foam without a backbone. We built a container ship model according to this design strategy and validated its dynamic elastic properties using a decay test. We measured wave-induced structural vibrations and present the results of tank experiments in regular and freak waves.

컨테이너/로로 선 종격벽의 트레일러 충돌해석 (Collision Analysis of Longitudinal Bulkhead of Container/RO-RO Ship with Trailer)

  • 강명훈;송인;이상균;김상곤;조상래
    • 대한조선학회 특별논문집
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    • 대한조선학회 2013년도 특별논문집
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    • pp.13-20
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    • 2013
  • In this paper, a collision accident of a container/Ro-Ro ship was numerically analyzed. A container trailer collided with a longitudinal bulkhead of the ship in the accident, which constituted a longitudinal wall of a heavy fuel oil tank. Due to the accident, the bulkhead plate was ruptured and the heavy fuel oil spilled out of the tank. The detailed information regarding the collision velocity and the mass of the trailer was not provided. Therefore, several collision accident scenarios were constructed based upon the arrangement of the ramp way. Each collision accident scenario was analyzed to predict the extents of damage using a commercial numerical package, ABAQUS. Based on the analysis results it is proposed how to minimize the extents of damage. Through the investigations performed in this study it was found that the understandings of various damages due to collision accidents and the developments of structural design guidance against collision are necessary for the betterment of Container/RO-RO ships' performance.

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