• 제목/요약/키워드: container loading

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스마트냉동컨테이너의 적재부 온도 편차 최적화에 관한 연구 (A Study on the Optimization of Temperature Deviation of Loads in Smart Reefer Container)

  • 박상원;김태훈;박도명;한동섭
    • 한국산업정보학회논문지
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    • 제28권6호
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    • pp.83-90
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    • 2023
  • 냉동컨테이너는 외부 환경에 의해 냉동기가 있는 적재부의 전면과 컨테이너 문이 있는 적재부의 후면부 사이에 온도 편차가 발생한다. 특히, 신선화물 운송에서 이러한 온도 편차는 화물의 신선도에 큰 영향을 미치게 된다. 본 연구에서는 온도 편차를 줄이기 위해 T-Floor를 부분적으로 차폐하고, T-Floor 차폐율이 냉동컨테이너 적재부 온도 변화에 미치는 영향을 평가하여 온도 편차를 최소화하는 방법을 제안한다. 실험 대상은 40 feet 스마트 냉동컨테이너로 T-Floor 차폐율은 0%, 50%, 60%, 70%, 80%로 설계 변수를 설정하였다. 실험 결과, 차폐율에 따라 냉동컨테이너 적재부의 온도 편차가 다르게 발생하였으며, 차폐율 60%인 경우 온도 편차가 가장 균일한 것을 확인했다. 이러한 적재부 온도 편차 최소화를 통해 스마트 냉동컨테이너를 이용하여 신선 화물의 운송 시 화물의 부패 및 냉해를 예방할 수 있다.

정규 분포 모델을 이용한 화물 적재 문제의 이론적 해법 도출 및 활용 (On the Theoretical Solution and Application to Container Loading Problem using Normal Distribution Based Model)

  • 정승환
    • 산업경영시스템학회지
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    • 제45권4호
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    • pp.240-246
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    • 2022
  • This paper introduces a container loading problem and proposes a theoretical approach that efficiently solves it. The problem is to determine a proper weight of products loaded on a container that is delivered by third party logistics (3PL) providers. When the company pre-loads products into a container, typically one or two days in advance of its delivery date, various truck weights of 3PL providers and unpredictability of the randomness make it difficult for the company to meet the total weight regulation. Such a randomness is mainly due to physical difference of trucks, fuel level, and personalized equipment/belongings, etc. This paper provides a theoretical methodology that uses historical shipping data to deal with the randomness. The problem is formulated as a stochastic optimization where the truck randomness is reflected by a theoretical distribution. The data analytics solution of the problem is derived, which can be easily applied in practice. Experiments using practical data reveal that the suggested approach results in a significant cost reduction, compared to a simple average heuristic method. This study provides new aspects of the container loading problem and the efficient solving approach, which can be widely applied in diverse industries using 3PL providers.

모의 수송 환경에서의 청과물 골판지 상자의 진동 피로에 따른 내구성 (Durability of Corrugated Fiberboard Container for Fruit and Vegetables by Vibration Fatigue at Simulated Transportation Environment)

  • 김만수;정현모;김기복
    • Journal of Biosystems Engineering
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    • 제30권2호
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    • pp.89-94
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    • 2005
  • The compression strength of corrugated fiberboard container for packaging the agricultural products rapidly decreases because of various environmental conditions during distribution of unitized products. Among various environmental conditions, the main factors affecting the compression strength of corrugated fiberboard are absorption of moisture, long-term accumulative load, and fatigue caused by shock and vibration. An estimated rate of damage for fruit during distribution is about from 30 to 40 percent owing to the shock and vibration. This study was carried out to characterize the durability of corrugated fiberboard container for packaging the fruit and vegetables under simulated transportation environment. The vibration test system was constructed to simulate the land transportation using truck. After the package with corrugated fiberboard container was vibrated by vibration test system at various experimental conditions, the compression test for the package was performed. The compression strength of corrugated fiberboard container decreased with loading weight and vibrating time. The multiple nonlinear regression equation for predicting the decreasing rate of compression strength of corrugated fiberboard containers were developed using four independent variables such as input acceleration level, input frequency, loading weight and vibrating time. The influence of loading weight on the decreasing rate of corrugated fiberboard container was larger than other variables.

3차원 컨테이너 적재 문제를 위한 발견적 해법 (A Heuristic for the Container Loading Problem)

  • 장창식;강맹규
    • 산업경영시스템학회지
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    • 제28권3호
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    • pp.156-165
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    • 2005
  • A new heuristic algorithm for the heterogeneous single container loading problem is proposed in this paper, This algorithm fills empty spaces with the homogeneous load-blocks of identically oriented boxes and splits residual space into three sub spaces starting with an empty container. An initial loading pattern is built by applying this approach recursively until all boxes are exhausted or no empty spaces are left. In order to generate alternative loading patterns, the load-blocks of pattern determining spaces are replaced with the alternatives that were generated on determining the load-blocks. An improvement algorithm compares these alternatives with the initial pattern to find improved one. Numerical experiments with 715 test cases show the good performance of this new algorithm, above all for problems with strongly heterogeneous boxes.

Assessment of whipping and springing on a large container vessel

  • Barhoumi, Mondher;Storhaug, Gaute
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제6권2호
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    • pp.442-458
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    • 2014
  • Wave induced vibrations increase the fatigue and extreme loading, but this is normally neglected in design. The industry view on this is changing. Wave induced vibrations are often divided into springing and whipping, and their relative contribution to fatigue and extreme loading varies depending on ship design. When it comes to displacement vessels, the contribution from whipping on fatigue and extreme loading is particularly high for certain container vessels. A large modern design container vessel with high bow flare angle and high service speed has been considered. The container vessel was equipped with a hull monitoring system from a recognized supplier of HMON systems. The vessel has been operating between Asia and Europe for a few years and valuable data has been collected. Also model tests have been carried out of this vessel to investigate fatigue and extreme loading, but model tests are often limited to head seas. For the full scale measurements, the correlation between stress data and wind data has been investigated. The wave and vibration damage are shown versus heading and Beaufort strength to indicate general trends. The wind data has also been compared to North Atlantic design environment. Even though it has been shown that the encountered wind data has been much less severe than in North Atlantic, the extreme loading defined by IACS URS11 is significantly exceeded when whipping is included. If whipping may contribute to collapse, then proper seamanship may be useful in order to limit the extreme loading. The vibration damage is also observed to be high from head to beam seas, and even present in stern seas, but fatigue damage in general is low on this East Asia to Europe trade.

컨테이너와 팔레트 적재패턴에 대한 마이크로 컴퓨터 프로그램 (A Microcomputer Program for Loading Pattern of Pallet and Container)

  • 황학;임준묵
    • 산업공학
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    • 제5권2호
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    • pp.75-85
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    • 1992
  • A common problem for manufacturing industries, especially consumer goods industries, is how to establish standardized procedures for loading finished goods onto pallets or containers for subsequent storage and distribution. Utilizing previous research results on the palletizing problem, this paper develops micro-computer based programs which generate an optimum loading pattern leading to the minimum amount of unused pallet or container space. Development of pallet layout chart is also included in the computer programs. The results are displayed by computer-graphic. For the users who are unfamiliar with pallet loading problem and computer system, pull-down menu and user-computer interactive data input procedures are adopted.

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컨테이너 터미널에서 베이 내 컨테이너의 최적 재정돈을 위한 A* 알고리즘 (A* Algorithm for Optimal Intra-bay Container Pre-marshalling Plan)

  • 하병현;김상수
    • 대한산업공학회지
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    • 제38권2호
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    • pp.157-172
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    • 2012
  • In most container terminals, containers are piled up and stored in a yard in order to utilize the space efficiently. Hence, it requires unproductive container-handling operations to retrieve a container that is not placed on the top of a container stack. As a result, to streamline container-loading operations by which containers are transferred from a yard to a vessel, it is necessary to pre-marshal (i.e., shuffle in advance) containers in accordance with container-loading plan. We propose $A^*$ algorithm to find the optimal container-relocation sequence for the intra-bay container pre-marshalling problem. To work out the heuristic estimate for the proposed $A^*$ algorithm, we introduce the container rearrangement problem and obtain the lower bound of the length of the optimal relocation sequence. The performance of the algorithm is validated extensively by the numerical experiments on the problem instances that are given in the previous studies and generated randomly with various parameters.

The measured contribution of whipping and springing on the fatigue and extreme loading of container vessels

  • Storhaug, Gaute
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제6권4호
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    • pp.1096-1110
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    • 2014
  • Whipping/springing research started in the 50'ies. In the 60'ies inland water vessels design rules became stricter due to whipping/springing. The research during the 70-90'ies may be regarded as academic. In 2000 a large ore carrier was strengthened due to severe cracking from North Atlantic operation, and whipping/springing contributed to half of the fatigue damage. Measurement campaigns on blunt and slender vessels were initiated. A few blunt ships were designed to account for whipping/springing. Based on the measurements, the focus shifted from fatigue to extreme loading. In 2005 model tests of a 4,400 TEU container vessel included extreme whipping scenarios. In 2007 the 4400 TEU vessel MSC Napoli broke in two under similar conditions. In 2009 model tests of an 8,600 TEU container vessel container vessel included extreme whipping scenarios. In 2013 the 8,100 TEU vessel MOL COMFORT broke in two under similar conditions. Several classification societies have published voluntary guidelines, which have been used to include whipping/springing in the design of several container vessels. This paper covers results from model tests and full scale measurements used as background for the DNV Legacy guideline. Uncertainties are discussed and recommendations are given in order to obtain useful data. Whipping/springing is no longer academic.

컨테이너선의 적재계량에 관한 연구 (On the Loading Plan of Container Ship)

  • 강기중;이철영
    • 한국항해학회지
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    • 제14권4호
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    • pp.1-15
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    • 1990
  • With increasing ship's speed turnround and port time becomes a large percentage of total roundtrip time and this causes to accelerate the introduction of the various kind of modern handling equipment, the standardization of cargoes, and the improvement of the ship. However, it is still a drag on efficient operation of ship. Similarly, the turnround time at the container port is very important as a measure for the decision of the efficiency of port. To decrease operating coasts, the minimization of the time need to cargo handling at the ports of call must be achieved. Thus the optimization of the time need to cargo handling at the ports of call must be achieved. Thus the optimized Container Loading Plan is necessary, especially under the rapid speed of container operations. For the container loading plan, in this thesis, we use the hungarian method and the branch and bound method to get the initial disposition of both maximization of ship's GM and minimization of shift number to the obstructive container in a yard area. We apply the dynamic programming algorithm to get the final disposition for minimizing total turnroudn time and finally we analyzed the results to check whether the initial disposition is proper or not.

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컨테이너 스프레더의 자동 랜딩 시스템 (Automatic Landing System of Container Spreader)

  • 박경택;박찬훈;박영근
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2003년도 춘계학술대회 논문집
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    • pp.1688-1692
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    • 2003
  • The automatic Landing system is used for the automatic functions of automatic transfer crane in the automated container terminal. It confirms and adjusts the alignment and pose between spreader and container and accomplishes the automatic loading/unloading job of containers in yard. Specially, it is required in the automated container terminal and is well adapted under the coarse external environments. This system used the laser sensors to recognize the alignment between spreader and container. In this paper the algorithm of recognition of the alignment and pose is presented and the result of its simulation is shown.

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