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Inland waterway terminal yard configuration contributing to sustainability: Modeling yard operations

机译:内河航道码头堆场配置有助于可持续发展:模拟堆场操作

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摘要

In order to encourage a substantial shift from highly polluting freight transport by road to more sustainable Inland WaterWay (IWW) transport, one of the possible options is to optimize handling activities at Inland Waterway Terminals (IWTs). Therefore, this research focused on efficiencies of IWTs and possible improvements by analyzing the optimal configuration and operation of Reach Stackers (RSs) and terminal Yard Cranes (YCs) given certain throughput levels at IWTs. Our paper contributes to current scientific knowledge through the development of a tailor-made new model based on the maritime container terminal literature combined with the specificities of IWTs. The model results show that a growing throughput results in scale economies for IWTs. For small terminals, an unbalanced import/export-ratio (80-20 or vice versa) is often more efficient (and thus sustainable) than a balanced ratio (50-50), while this changes for larger terminals. Furthermore, by applying the model and analyzing the sensitivities, the paper contributes to managerial decisions to be taken by IWW terminal operators and also gives insight into the consequences of certain sustainability policies of local authorities on terminal operations. If these environmental rules and regulations are implemented, results indicate that this leads to a lower terminal capacity and thus higher costs.
机译:为了鼓励从高污染的公路货运向更具可持续性的内陆水运(IWW)运输转变,可能的选择之一是优化内陆水运码头(IWT)的装卸活动。因此,本研究着重于内河运输的效率和可能的改进,方法是在给定内河运输量一定的吞吐量水平的情况下,通过分析到达式堆垛机(RS)和码头堆场起重机(YC)的最佳配置和运行情况来进行研究。通过基于海运集装箱码头文献并结合内河运输的特殊性,开发量身定制的新模型,我们的论文为当前的科学知识做出了贡献。模型结果表明,吞吐量的增长导致内河航运的规模经济。对于小型码头,不平衡的进出口比率(80-20,反之亦然)通常比平衡比率(50-50)更有效(因此更可持续),而对于较大的码头则有所变化。此外,通过应用该模型并分析敏感性,本文有助于IWW终端运营商做出管理决策,还可以洞悉地方政府某些可持续性政策对终端运营的影响。如果执行了这些环境法规,结果表明这将导致终端容量降低,从而导致成本增加。

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