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Impact of scale increase of container ships on the generalised chain cost

机译:集装箱船规模增加对广义链条成本的影响

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摘要

In recent years, an increase in the size of the container ships could be observed. The question is how these larger ships will influence the total generalised costs from a port of loading to a destination in the European hinterland. The second question is whether a scale increase of the container ships on other loops, such as a loop from the United States to Europe, has the same impact on the generalised chain costs as on the loop from Asia to Europe. A derived question is which element of the total chain has the highest importance, and whether this balance varies as the ship size changes. In this article, a model is developed that allows answering the above research questions. The model is designed to simulate the cost of a complete loop of a container ship and of a chain that uses that same loop. For the chain cost simulation, the maritime part is determined by the loop. From the ports of loading and unloading, the port container handling and the hinterland transportation costs are also integrated. The model also allows calculating the total chain cost from a point of origin (either a hinterland region or a port) to a destination point (also a port or a hinterland region). An actual container loop of a container shipping company can be introduced in the model. An application is made to two existing container loops, namely from Asia respectively the United States to Europe. It turns out that changing ship does indeed lead to economies of scale, but also that the impact is larger on the Asia-Europe connection than on the US-Europe connection. Furthermore, the maritime component has the biggest share in the total chain cost, but as ship size increases, the shares start getting closer to each other. This research contributes to the existing literature in two ways. First of all, it quantifies the impact of the scale increase of container ships throughout the total chain. Second, this is done from a bottom-up engineering modelling approach.
机译:近年来,可以观察到集装箱船尺寸的增加。问题是这些大型船舶将如何影响从装货港到欧洲腹地目的地的总费用。第二个问题是,在其他航线上,例如从美国到欧洲的航线上,集装箱船规模的增加是否对广义链成本产生的影响,与从亚洲到欧洲的航线上的集装箱一样。一个衍生的问题是,总链中哪一个元素的重要性最高,以及这种平衡是否随船舶大小的变化而变化。在本文中,开发了一个模型,可以回答上述研究问题。该模型旨在模拟集装箱船的完整回路和使用同一回路的链条的成本。对于链成本模拟,航海部分由回路确定。从装卸港,港口集装箱装卸和腹地运输成本也被整合在一起。该模型还允许计算从起点(腹地区域或港口)到目的地点(港口或腹地区域)的总链成本。可以在模型中引入集装箱运输公司的实际集装箱环路。对两个现有的集装箱环路(即从亚洲分别从美国到欧洲)进行了应用。事实证明,轮船的改变确实可以带来规模经济,但对亚欧航线的影响要大于对美欧航线的影响。此外,海事部分在总连锁成本中所占的比例最大,但是随着船舶尺寸的增加,这些份额开始越来越接近。这项研究从两个方面为现有文献做出了贡献。首先,它量化了整个整个链条中集装箱船规模增加的影响。其次,这是从下至上的工程建模方法完成的。

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