Simulation Model Development for Configuring a Optimal Port Gate System

Park Sang-Kook, Kim Young-Du
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引用次数: 1

Abstract

In this study, a gate simulation model was developed to reduce the truck waiting time for trucking companies servicing container terminals. To verify the developed model, 4 weeks of truck gate-in/gate-out data was collected in December 2014 at the Port of Busan New Port. Also, the existing gate system was compared to the proposed gate system using the developed simulation model. The result showed that based on East gate-in, a maximum number of 50 waiting trucks with a maximum waiting time of 120 minutes. With the proposed system the maximum number of waiting trucks was 10 with a maximum waiting time of 5.3 minutes. Based on West gate-in, the maximum number of waiting trucks was 17 and the maximum waiting time was 34 minutes in the existing gate system. With the proposed system the maximum number of waiting trucks was 10 with a maximum waiting time of 5.3 minutes. Based on West gate-out, the maximum number of waiting trucks was 11 with a maximum waiting time of 5.5 minutes. With the proposed system the maximum number of waiting trucks was 9 with a maximum waiting time of 4.4 minutes. This developed model shows howmany waiting trucks there are, depending on the gate-in/gate-out time of each truck. This system can be used to find optimal gate system operating standards by assuming and adjusting the gate-in/gate-out time of each truck in different situations.
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配置最优港口闸门系统的仿真模型开发
在本研究中,开发了一个闸门仿真模型,以减少为集装箱码头服务的卡车运输公司的卡车等待时间。为了验证所开发的模型,于2014年12月在釜山新港港收集了为期4周的卡车进出数据。同时,利用所建立的仿真模型,将现有浇口系统与所提出的浇口系统进行了比较。结果表明,以东门入路为基准,最大等候卡车数量为50辆,最大等候时间为120分钟。采用拟议的系统后,最多可有10辆货车等候,最长等候时间为5.3分钟。以西门入站计算,现有大门系统的最大等候车数为17辆,最大等候时间为34分钟。采用拟议的系统后,最多可有10辆货车等候,最长等候时间为5.3分钟。以西门出入口为基准,最大等候卡车数为11辆,最长等候时间为5.5分钟。采用拟议的系统后,最多有9辆货车等候,最长等候时间为4.4分钟。这个开发的模型显示了有多少辆等待的卡车,这取决于每辆卡车的进出时间。该系统可以通过假设和调整不同情况下每辆货车的进出关时间,找到最优的闸门系统运行标准。
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