• Title/Summary/Keyword: The Productivity of Container Terminal

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Performance Analysis of a Combination of Carry-in and Remarshalling Algorithms

  • PARK, Young-Kyu;UM, Kyung-Ho
    • The Journal of Industrial Distribution & Business
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    • v.11 no.10
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    • pp.75-89
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    • 2020
  • Purpose: The container terminal is an area that plays an important role in the country's import and export. As the volume of containers increased worldwide, competition between terminals became fiercer, and increasing the productivity of terminals became more important. Re-handling is a serious obstacle that lowers the productivity of terminal. There are two ways to reduce re-handling in the terminal yard. The first method is to load containers in terminal yards using effective carry-in algorithms that reduce re-handling. The second method is to carry out effective remarshalling. In this paper, the performance of various carry-in algorithms and various remarshalling algorithms are reviewed. Next, we try to find the most effective combination of carry-in algorithm and remarshalling algorithm. Research design, data and methodology: In this paper, we analyze the performance of the four carry-in algorithms, AP, MDF, LVF, RP and the four remarshalling algorithms, ASI, ASI+, ASO, ASO+. And after making all the combinations of carry-in algorithms and remarshalling algorithms, we compare their performance to find the best combination. To that end, many experiments are conducted with eight types of 100 bays through simulation. Results: The results of experiments showed that AP was effective among the carry-in algorithms and ASO+ was effective among remarshalling algorithms. In the case of the LVF algorithm, the effect of carrying in was bad, but it was found to be effective in finding remarshalling solution. And we could see that ASI+ and ASO+, algorithms that carry out remarshalling even if they fail to find remarshalling solution, are also more effective than ASI and ASO. And among the combinations of carry-in algorithms and remarshalling algorithms, we could see that the combination of AP algorithm and ASO+ algorithm was the most effective combination. Conclusion: We compared the performance of the carry-in algorithms and the remarshalling algorithms and the performance of their combination. Since the performance of the container yard has a significant effect on the performance of the entire container terminal, it is believed that the results of this experiment will be effective in improving the performance of the container terminal when carrying-in or when remarshalling.

A Study On Operation Method of Handling Equipments in Automated Container Terminals (자동화 컨테이너터미널에서 운송장비의 운영방안에 관한 연구)

  • Choi, Hyung-Rim;Park, Nam-Kyu;Park, Byung-Joo;Kwon, Hae-Kyung;Yoo, Dong-Ho
    • IE interfaces
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    • v.17 no.2
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    • pp.233-241
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    • 2004
  • The main subject to become a hub port is automation. The automated container terminal has already operated in advanced ports and it has been planned for the basic planning and operation design in domestic case. The key of automated container terminal is effective operation of both ATC(automated transfer crane) and AGV(automated guided vehicle) which is automated handling equipments. This is essential to productivity of automated container terminal. This study suggests the most optimal method of equipment operation in order to minimize loading time using each three types of effective ATC operation methods and AGV dispatching rules in automated container terminals. As the automated equipment operation causes unexpected deadlocks or interferences, it should be proceeded on event-based real time. Therefore we propose the most effective ATC operation methods and AGV dispatching rules in this paper. The various states occurred in real automated container terminals are simulated to evaluate these methods. This experiment will show the most robust automated equipment operation method on various parameters(the degree of yard re-marshaling, the number of containers and AGV)

On Improving the Productivity of Busan Container Terminal (부산 컨테이너 부두의 효율적인 운영방안에 관하여)

  • 이병국;이철영
    • Journal of the Korean Institute of Navigation
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    • v.11 no.1
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    • pp.39-65
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    • 1987
  • Since the middle of 1950's, containerization has been rapidly spread over the world in virtue of great merits providing to interensts, and the fundamental changes in port management and prot operations are resulted. As the container terminal is a complex system which is consisted of various subsystems, the treatment for improving the productivity is required in a comprehensive fashion, both in each of its parts and as an integrated system. This paper aims to make an intensive analysis of the Busan Container Terminal system, especially focusing on its subsystems such as ship operation system, storage system and transfer system. First of all, the intrinsic capacity of various subsystems is calculated and it is checked whether the current operation is being performed effectively through the formal analysis. Secondly, the suggestion is presented to improve the operation by considering the throughput that the port of Busan will have to accept in the near future. The results are as follows; 1) As the inefficiency is due to the imbalance between various subsystems at Busan terminal, transfer equipment level must be up to 31% for straddle carrier and 67% transfer crane above all. 2) The yard capacity must be increased by reducing the free dwell time of containers in order to accept the traffic volume smoothly in the near future. 3) The better way to reduce the port congestion is to change berthing rule from the FIFP to the Pre-allocated system by considering the ship arrival pattern.

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A Study on the Non-Productive Movement in Container Terminal (컨테이너 터미널의 비생산적인 활동에 관한 연구)

  • Shin, Seong-Hyeon;Kim, In-Young;Kim, Hwan-Seong
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2018.11a
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    • pp.239-240
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    • 2018
  • In order to improve the productivity and continuous competitiveness of container terminals, it is necessary to make efforts to reduce operational losses at each terminal. As a study on this, it is necessary to study the non-productivity movement based on the shuffle(re-handling) in the yard analysis is needed. In this study, non - productive activity factors were classified by prefecture, transporter, shippers and terminal based on operation data of domestic A terminal. As a result, 14.7% is due to the causes of shipping companies and shipping companies, and in addition, 85.3% of the respondents indicated that they were responsible for the terminal operation. In order to minimize the above factors, it is necessary to reduce the non-productive activity through rapid information processing and pre-information acquisition from shipping companies, and minimize the influence of bulge-out through installation of concrete blocks in the equipment field.

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The Impacts of Job Stress and Job Embeddedness on Presenteeism among Container Terminal Workers (항만하역 근로자의 직무 스트레스와 직무 착근도가 프리젠티즘에 미치는 영향)

  • Lee, Ji Hyun;Choi, Eun Kyung;Oh, Hyang Ok;Moon, Hye Kyung;Lee, Sang Min
    • Research in Community and Public Health Nursing
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    • v.27 no.1
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    • pp.31-42
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    • 2016
  • Purpose: The purpose of this study was to identify the impacts of job stress and job embeddedness on presenteeism among container terminal workers. Methods: The participants were 299 workers at the S Harbor in P City. Data were collected from April 22 to June 5, 2015. The data were analyzed using t-test, ANOVA, $Scheff{\acute{e}}^{\prime}s$ test, Pearson's correlation coefficients, and logistic regression. Results: These workers on presenteeism were affected by the department of work, annual pay, and exercise of more than 30 minutes per day, revealing a statistically significant difference according to these variables. In other words, when job stress was high, job embeddedness was less, the extent of work impairment was higher, and in turn perceived productivity was lower. Work impairment was 3.11 times higher in workers with above-average job stress than those with lower job stress. Perceived productivity was 2.31 times higher in workers with above-average job embeddedness than those with lower job embeddedness. Conclusion: To reduce work impairment and increase productivity among container terminal workers, it is necessary to decrease their job stress, to increase their job embeddedness, and especially to do exercise for more than 30 minutes a day.

A Study on Acceleration Characteristics for Automated Rail Mounted Crane (자동화크레인의 가속도 특성에 관한 연구)

  • Kim, Hwan-Seong;Kim, Myeong-Kyu;Tran Ngoc, Hoang Son
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2009.10a
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    • pp.215-216
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    • 2009
  • By growing the capacity of container in the world, main container terminal in countries introduces the automated container equipments and try to improve the productivity for handling the container. ARMC(Automated Rail Mounted Crane) is installed in automated container terminal and expected the high efficiency of productivity by using minimum-time control method. However recently by the GREEN Port policy, high energy efficiency method for container equipments is importance issue in ports. In this paper, the 3-dimensional modelling of AMRC is discussed and the acceleration characteristics for ARMC is analyzed By using the results of this paper, the advanced controller for the crane will be developed in future.

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New Conceptual Handling Systems in Container Terminals

  • Kim, Kap Hwan;Phan, Mai-Ha Thi;Woo, Youn Ju
    • Industrial Engineering and Management Systems
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    • v.11 no.4
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    • pp.299-309
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    • 2012
  • This paper introduces some of the developments related to the handling equipment in container terminals and various new conceptual handling systems that have been proposed during the last several decades. The basic ideas behind the previous equipment improvements are analyzed to identify future directions that can be used for devising new handling systems. The handling systems in the container terminals include a quayside handling system, transport system, and yard system. In response to the deployment of mega-sized vessels for container transportation systems, productivity improvement has become one of the most urgent issues in the container terminals. This paper analyzes the previous improvements made for achieving higher productivity in the three subsystems of container handling. Some conceptual handling systems are introduced including the linear motor conveyance system (LMCS), automated storage and retrieval systems (AR/RS), overhead grid rail (GRAIL), SPEEDPORT, SuperDock, the automated container system by ZPMC (ACS-ZPMC), and AUTOCON.

A Study on the Improvement of Safety Management on Container Terminal -Using Hazard Identification and Bow-tie Method- (컨테이너 터미널 안전관리 개선방안에 관한 연구 - 위험성 평가 및 보우타이기법이용 -)

  • Park, Sunghun;You, Ji-Won;Kim, Yul-Seong
    • Journal of Navigation and Port Research
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    • v.43 no.1
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    • pp.57-63
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    • 2019
  • It is time to study safety improvement on container terminals to maintain a high-quality service to customers' productivity and safety. The data analyzed was of the past 3 years accidents data from a container terminal in the Busan port. I especially tried to found out the equipment that had the highest number of accidents and what the main causes were. This study suggests the top hazards identified in the container terminal using risk assessment, Moreover, it seeks control measurements to prevent hazards by bowtie methodology.

Study on Simulation for Buffer Space Analysis of Container Crane with Dual Trolley (듀얼 트롤리형 컨테이너 크레인 버퍼공간 분석을 위한 시뮬레이션 연구)

  • Choi, Yong-Seok;Won, Seung-Hwan
    • Journal of Navigation and Port Research
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    • v.33 no.5
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    • pp.331-337
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    • 2009
  • Container crane is main equipment in container terminals and it determines the productivity and the efficiency of container terminals. The typical type of container cranes has the single trolley and one among advanced types of them has the dual trolley. The objective of this paper is to analyze the buffer size of a container crane with the dual trolley in container terminals. We present a simulation model for analysing the buffer space of a container crane with the dual trolley. The buffer space is located between main trolley in sea-side and second trolley in yard-side. We performs various simulation experiments and analyze the buffer size to estimate the required productivity.

Optimization of double cycling in container ports

  • Song, Jang-Ho;Kwak, Kyu-Seok
    • Journal of Navigation and Port Research
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    • v.33 no.2
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    • pp.127-134
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    • 2009
  • If the research on double cycle is revitalized, crane productivity will be rapidly improved bemuse double cycle is an operational technique that can maximize equipments efficiency (Quay crane, RMG/RTG, Yard tractor). Unfortunately, it is very difficult for terminal operators to find out the starting point of double cycle bemuse the loading & unloading pattern and conditions are various. Therefore, terminal operators are apt to fail to find out the optimal starting point of double cycle to maximize its frequency. Experiencing the same mistakes in the process we made efforts to find out the optimal starting point, finally we found out the formula for it. And we verified its precision is perfect through a lot of testing. This paper on double cycling focused on making the formula to find out optimal starting point of double cycle to maximize its frequency. And it can be applied to various ships' stowages in common.