• 제목/요약/키워드: container handling

검색결과 280건 처리시간 0.024초

컨테이너터미널에서의 시간-동인활동기준원가의 분석 (Analysis of Time-Driven ABC in Container Terminal)

  • 이채민;신재영
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2014년도 추계학술대회
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    • pp.7-8
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    • 2014
  • 선사가 기항노선의 주요 선정요인으로 컨테이너터미널 하역비를 들 수 있으므로, 하역비의 원가를 산정하는 것은 매우 중요하지만 컨테이너터미널을 대상으로 한 활동기준원가분석의 연구는 미미한 실정이다. 본 연구는 시간을 고려하여 개선된 시간-동인활동기준원가계산을 바탕으로 컨테이너터미널에서 적용 가능한 Conceptual Framework과 원가관리모델을 제시한다.

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무한경쟁시대의 컨테이너부두 운영전략 (Operation Strategy of Container Terminal in the Era of Unlimited Competition)

    • 한국항만학회지
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    • 제12권2호
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    • pp.195-206
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    • 1998
  • By the rapid expansion of containerization and intermodal transportation in international shipping since the 1970's, the larger containerships have emerged and concentrated their calls at a limited number of ports. Moreover, large-scale container terminals have been built to accommodate the ever-larger containerships, and the mordernization of terminal facilities and many developments in information technology etc. have been brought out. Thus, unlimited competition has been imposed on every terminal with neighbouring ports in Japan, Singapore, Hongkong and Taiwan etc. The purpose of this study is to suggest how the container terminal operators cope with unlimited competition between local or foreign terminals. The results are suggested as follows: First, transshipment cargoes, which the added value is high, is to be induced. Second, the function of storage is given on On-Dock Yard. Third, Berth Pool Operation System is to be introduced, especially in Gamman Container Terminal and Kwangyang Container Terminal. Fourth, the cargo handling charges is to be decided by terminal operator.

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부산항 컨테이너 물류 시스템 분석에 관하여 (On the Analysis of Container Physical Distribution System in Pusan Port)

  • 박창호;이철영
    • 한국항만학회지
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    • 제5권1호
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    • pp.55-69
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    • 1991
  • A Container terminal is a physical link between the ocean and land modes of transport and a major component of the container physical distribution system. A number of projects to increase terminal productivity in the world were found to be tied directly to increasing the efficiency of the intermodal activities, that is, to improving the physical distribution process. This is an indication that the productivity of container terminal is being considered withing a system prospective. The purpose of this study is to establish a model of the container physical distribution system for Pusan port linked with 4 sub-systems including Navigational aids system, Cargo handling/transfer/storage system on dock, Off-dock CY system and In-land transport connection system. and to analyze the system. From this analysis, we found that the system had three bottlenecks on the container physical distribution process in Pusan port : a) cargo handling b) storage and c) inland transport, and showed a way to improve the system.

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국내 컨테이너 부두시설 확보제도 개선방향 연구 (A study on the estimation of container terminal capacity and its implication to port development planning of Korea)

  • 양창호
    • 한국항만경제학회지
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    • 제26권3호
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    • pp.198-220
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    • 2010
  • 본고에서는 컨테이너 선석 당 적정처리능력 40만 TEU로 설정하고 컨테이너항만을 40만 TEU에 맞는 선석 개수로 개발하는 현재의 우리나라 항만기본계획의 문제점을 분석하였다. 선사가 요구하는 고 생산성의 터미널을 건설하여 선사의 물동량을 유치하고, 이를 통해 그 항만 배후지에서 고 부가가치 생산활동을 가능케 하려면, 40만 TEU 표준하역능력 같은 항만개발 제약요인을 두어서는 초대형선 부두 이용자의 요구를 충족시키기 어려울 것으로 판단된다. 10,000 TEU 이상 초대형 컨테이너선 기항 시 선사가 요구하는 서비스 수준은 항만대기시간과 항만 내 체류시간으로 나누어 설문조사를 실시한 결과 초대형 컨테이너선에 대해서 대기가 발생하지 않는 수준의 서비스를 제공해야 함을 확인할 수 있었다. 그리고 10,000 TEU급 이상 초대형 컨테이너선 기항시 선사가 요구하는 총 재항시간은 대부분24시간 이었다. 이를 바탕으로 12,000 TEU 급 초대형선이 24시간 이내에 서비스를 완료할 수 있는 항만의 하역능력을 산정해본 결과 초대형선 선석 400미터 2선석, 피더선 250미터 2선석의 1,400m 컨테이너 터미널의 연간 요구 처리능력은 약 300만 TEU가 되었다. 이를 실현할 수 있도록 하는 시뮬레이션 분석을 한 결과 주 선석 2개(900미터)와 피더선석 2개(500미터)의 1400미터 선석에서 300만 TEU를 처리해도 선석점유율, 선박대기시간이나, 서비스 면에서 기존의 항만보다 오히려 우수한 결과를 보이고 있다. 이를 장비가격으로만 비교할 때 기존터미널에 비해 700억원 정도(28%)를 더 투자하면 연간 처리능력이 160만 TEU에서 300만 TEU로 88%이상 증가할 수 있음을 보여준다. 따라서 전국항만 기본계획에서는 기존의 선석 수 개발방향에서, 항별로 미래 일정기간 동안 건설 필요 처리능력 한도를 실제 건설되는 처리능력의 누계를 관리해 나가는 정책으로 전환해야 할 것이다.

컨테이너 항만경쟁력 결정요인 분석 (The Analysis on the Determinations Factors of Container Port Competitiveness)

  • 이기태;백인흠
    • 수산해양교육연구
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    • 제27권1호
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    • pp.262-272
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    • 2015
  • The aim of this study is to analysis factors that determine the competitiveness of container ports using the KJ and AHP methods. For this, 54 detailed attributing factors were identified both by previous studies and port users. 24 attributing factors were identified by a group of port experts. also, These were grouped 18 detailed attributing factors into 6 attributing factors by a group of port experts using the KJ method. These were made into a model of hierarchical structure with 3 levels, taking 1 goal factor, 6 evaluation factors and 18 detailed evaluation factors. The collected date of questionnaires were analyzed by a group of port experts using the AHP method. The analysis result of the evaluation factors in container port shows that port cargo volume is the most important factor, followed by port location, port cost, port service, port facility and port management. The analysis results of detailed evaluation factors in container port shows that import and export cargo volume is the most important factor, followed by transshipment cargo volume, distance from main trunk, cargo handling cost, distance from the point of importing and exporting, speediness of cargo handling, stability of cargo handling, vessel/cargo cost in port entry and leaving, punctuality in port entry and leaving, number and length of berth, collateral service cost, terminal area, hinterland accessibility, ability of terminal operation company, front depth of berth, etc.

UGC 모델링에 관한 연구(I) (A Study on Modeling of Unmanned Gantry Crane (1))

  • 박경택;김두형;신영재;박찬훈;김용선
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 1999년도 추계학술대회논문집
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    • pp.333-344
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    • 1999
  • Currently many studies on the unmanned gantry crane for the automated container terminal are accomplished. This is needed for the development of large scale, automation, high speed, unmanned system and information system in port facility. In order to do efficient container handling job in port yard, the automated handling system is well adapted to the job environments and all-season weather, In order to realize the automatic and unmanned system for container handling job, the required functions and main structure system are studied. The major problems of operation of the conventional gantry crane are that the vibration of gantry structure body is occurred by operation and that high-speed and precision position-velocity control and the capability to dope to the external disturbances caused by the wind, rain, fog and job environments. In this paper, the fundamental study for establishment of the concept and the dynamic modelling of the major sub system of the unmanned gantry crane is presented. These studies are useful for design and manufacturing of the new concept model of the unmanned gantry crane for efficient operation of the automated container terminal.

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컨테이너 3차원 적재문제 (Three-Dimensional Container Packing Problem)

  • 배민주;최세경;김환성
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2003년도 춘계공동학술대회논문집
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    • pp.242-248
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    • 2003
  • 본 논문에서는 다양한 종류와 다양한 크기의 화물에 대해 3차원 적재하는 방법으로서 휴리스틱 기법을 이용한 해법을 제안하였다. 먼저, 컨테이너 비용을 적재비용, 수송비용 및 처리비용의 합으로 나타내며. 화물간 우선순위 및 화물 내에서의 개수 간 우선순위를 적용하였다. 주어진 화물을 적재 공간 및 중량을 만족하면서 위의 컨테이너 비용을 최소화하는 컨테이너 종류 및 개수를 산출하였으며, 적재 시 화물의 팔레타이져 및 디팔레타이져로서 컨테이너 내의 공간 이용률을 극대화시켰다. 마지막으로 화물의 무게 균등화를 고려하여 취급중의 화물의 손상방지를 행하였다.

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시스템적 접근에 의한 자동화컨테이너터미널 개발 과제 도출 (Finding Subjects for Automated Container Terminal Development by Systems Approach)

  • 박창호;노홍승;정희균
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 1998년도 추계학술대회논문집:21세기에 대비한 지능형 통합항만관리
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    • pp.51-58
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    • 1998
  • This study is to define the Automated Container Terminal(ACT) and container terminal system. Also, we analyze the present condition of the container terminal system in Pusan port and its automation level by systems approach. And this paper aims at evaluating on the priority of R&D investment until the beginning of the second stage of New Pusan Port Project(2006). In this process we have considered 8 factors (cost, labor, area, time volume, reliability, safety, convenience) to analyze 6 subsystems. The priority order of R&D until target year by sub-systems is as follow : Cargo Handling System〉Transfer System〉Port Entry System〉Storage System(Distribution&Manufacturing System included)〉Inland Transport System〉Port Information System.

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하역효율 향상을 위한 컨테이너 크레인의 제어기 설계 (Design of a Container Crane Controller for High Efficiency in Cargo Handling)

  • 신선근;최재준;소명옥;한국해
    • Journal of Advanced Marine Engineering and Technology
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    • 제24권4호
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    • pp.502-508
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    • 2000
  • The amount of container freight is continuously increasing recently, but freight congestion problem frequently occurs at ports due to low efficiency of container crane in transportation and cargo handling. In this paper, a method for designing a fuzzy controller of the container crane system is presented. In this scheme a mathematical model for the system is obtained in state space representation. The response of the proposed fuzzy controller is compared with that of the optimal controller at the same condition. Through the simulation results, the performance of the fuzzy controller was observed better than that of optimal controller in respect of reference change, disturbances and parameter change. The fuzzy controller was also more stable and robust than the optimal controller.

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컨테이너 적재 시스템의 구조 모델링 및 특성 해석 (Structural Modeling and Characteristic Analysis of Container Handling System)

  • 김영상;맹희영
    • 한국생산제조학회지
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    • 제20권4호
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    • pp.458-463
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    • 2011
  • A CHS(Container Handling System) is a system to load and to unload ISO 2000 or ISO 4000 standard containers which is widely used for various industrial transport purpose. A new light type of CHS is introduced in this paper, in order to reduce weight of cargos and to give the convenience in cargo loading and unloading without additional lifting equipments. The structural models of this system are created to assemble the smooth integration of system and to interface the each composing units with the specification of truck chassis to be mounted. These models are applied to find the suitable design parameters under the condition of force restrictions of each units. Finally, the stability of this system are investigated by analyzing the dynamic simulation using Visual NASTRAN 4D, and it could be recommend the good design parameters for the manufacturing purpose.