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Performance analysis of berth configurations at container terminals

机译:集装箱码头泊位配置的性能分析

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The containerized trade market has been growing rapidly since its introduction. The capacity of ships and the amount of containers being transshipped at container terminals increases significantly. Terminals should handle their operations efficiently to provide the necessary capacity and customer service. In designing a container terminal, terminal management has to consider the choice for a certain type of berth. In this paper, we compare by means of a simulation study the performance of traditional one-sided marginal berths and indented berths. An indented berth enables quay cranes to unload and load containers from both sides of the ship. As a result, more quay cranes can work on a single ship. As main performance measure in this comparison we use the total vessel operation time required to unload and load a ship. This time depends next to crane productivity also on the efficiency of the transportation and storage and retrieval processes in the terminal. We have performed a sensitivity analysis in which we also study the relation between the selection of an indented berth and other design and control issues in the terminal.
机译:自推出以来,集装箱贸易市场一直在迅速增长。船舶的容量和在集装箱码头转运的集装箱数量显着增加。终端应有效地处理其操作,以提供必要的容量和客户服务。在设计集装箱码头时,码头管理人员必须考虑选择某种泊位。在本文中,我们通过仿真研究的方式比较了传统的单边边泊位和缩进泊位的性能。凹入式泊位使码头起重机能够从船的两侧卸下和装载集装箱。结果,更多的码头起重机可以在一艘船上工作。作为此比较中的主要性能指标,我们使用了卸船和装船所需的总船舶运行时间。这个时间不仅取决于起重机的生产率,还取决于码头中运输,存储和取回过程的效率。我们已经进行了敏感性分析,其中我们还研究了缩进泊位的选择与终端中其他设计和控制问题之间的关系。

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