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Efficiency of inland waterway container terminals: Stochastic frontier and data envelopment analysis to analyze the capacity design- and throughput efficiency

机译:内河航运集装箱码头的效率:随机边界和数据包络分析,以分析容量设计和吞吐量效率

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摘要

Although terminal efficiency has been thoroughly studied for deep-sea container ports and terminals, up till now, there has been little scientific literature on the efficiency of inland waterway container terminals (IWTs). This paper therefore focuses on determining and analyzing terminal characteristics that influence efficiency. Our analysis led to a number of conclusions. First, there exist important differences between IWTs and maritime terminals in terms of design capacity and thus also in operations. Different combinations of inputs and output have been tested with the SFA and DEA methodologies. Important terminal inputs turned out to be yard and crane, but also terminal operating hours and terminal area are important. When capacity is excluded as an input it turns out that the importance of inputs becomes more diverse under SFA. Furthermore, when the inputs and output are varied it shows that this leads to a variation in best and worst performers (the efficiency depends on defined inputs and output). Finally, terminal operating hours are an important input for IWTs which is an important difference with maritime terminals which are open 24/7. In terms of how efficiency is defined, there arises a considerable difference between design efficiency (capacity) and the operational efficiency (terminal throughput).
机译:尽管已经对深海集装箱港口和码头的码头效率进行了深入研究,但到目前为止,关于内河水道集装箱码头(IWT)效率的科学文献很少。因此,本文着重于确定和分析影响效率的终端特性。我们的分析得出了许多结论。首先,在设计能力以及运营方面,内河航运与海事终端之间存在重要差异。使用SFA和DEA方法已经测试了输入和输出的不同组合。重要的码头输入结果证明是院子和起重机,但码头的营业时间和码头面积也很重要。当排除能力作为输入时,事实证明,在SFA中,输入的重要性变得更加多样化。此外,当输入和输出发生变化时,它表明这会导致最佳和最差执行器发生变化(效率取决于定义的输入和输出)。最后,码头的运营时间是内河航运的重要投入,这与24/7全天候开放的海运码头的重要区别。就如何定义效率而言,设计效率(容量)和操作效率(终端吞吐量)之间存在相当大的差异。

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