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评估大型内陆码头的长期运营绩效:基于离散事件仿真的建模方法。

Evaluating the long-term operational performance of a large-scale inland terminal: A discrete event simulation-based modeling approach.

机构信息

Department of Civil and Infrastructure Engineering, Asian Institute of Technology, Pathum Thani, Thailand.

Department of Industrial Engineering, Chulalongkorn University, Bangkok, Thailand.

出版信息

PLoS One. 2022 Dec 5;17(12):e0278649. doi: 10.1371/journal.pone.0278649. eCollection 2022.

Abstract

Inland terminals, or dry ports, have played an important role in multimodal transportation networks as transportation hubs that provide connections between seaports and hinterland economies. While important, evaluating the operational performance of a dry port is especially challenging since it depends not only on internal factors, such as the variety and number of container handling equipment (CHE) deployed, but also on other external factors, including changes in transportation policies and container demands experienced by a dry port. To properly evaluate the holistic performance of a dry port while considering all the aforementioned factors, a discrete event simulation (DES) framework is herein developed and applied to the Ladkrabang Inland Container Depot (LICD)-one of the largest dry ports in Southeast Asia-under various operational settings. Despite complicated internal operations, the devised DES framework has shown itself useful in the analyses of LICD, due largely to its flexibility that allows users to include sophisticated operational rules into models. According to our computational results, the current LICD operation is markedly ineffective as the usage rates of all CHE types are relatively low and varied across gate operators-especially the yard truck whose values range between 2.46% and 11.15% on yearly average. We also find that, by redesigning the LICD and its internal operations, the LICD's performance could be substantially enhanced-even with fewer numbers of CHE. Regarding the four CHE types, the reach stacker seems to limit LICD's capability, as its utilization tends to first reach the maximum allowable rate of 75%, while the rubber tyred gantry crane could help boost the usage rate of yard trucks, which, in turn, results in reduced container dwelling times. Nonetheless, the modified LICD could accommodate up to 140% of the current container demand before it experiences operational difficulties induced by the saturation of container flow from rail transportation.

摘要

内陆港作为连接海港和内陆经济的运输枢纽,在多式联运网络中发挥了重要作用。内陆港的运营绩效评估尤其具有挑战性,因为它不仅取决于内部因素,如部署的集装箱处理设备 (CHE) 的种类和数量,还取决于其他外部因素,如内陆港经历的运输政策变化和集装箱需求变化。为了在考虑所有上述因素的情况下正确评估内陆港的整体绩效,本文开发并应用了一个离散事件仿真 (DES) 框架,该框架应用于 Ladkrabang 内陆集装箱码头 (LICD)——东南亚最大的内陆港之一——在各种运营环境下。尽管内部操作复杂,但由于其灵活性允许用户将复杂的运营规则纳入模型,因此所设计的 DES 框架在 LICD 的分析中非常有用。根据我们的计算结果,当前的 LICD 运营效率明显低下,因为所有 CHE 类型的使用率相对较低,并且在不同的闸口操作人员之间存在差异——尤其是在年平均使用率在 2.46%至 11.15%之间的堆场卡车。我们还发现,通过重新设计 LICD 及其内部运营,可以显著提高 LICD 的性能,即使 CHE 的数量减少。对于四种 CHE 类型,正面吊似乎限制了 LICD 的能力,因为其利用率往往首先达到 75%的最大允许速率,而轮胎式龙门起重机可以帮助提高堆场卡车的使用率,从而减少集装箱停留时间。然而,在铁路运输的集装箱流量饱和导致运营困难之前,修改后的 LICD 可以容纳当前集装箱需求的 140%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6370/9721477/58f52d86e835/pone.0278649.g001.jpg

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