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Seaport- dry port network design considering multimodal transport and carbon emissions

机译:考虑多式联运和碳排放的海港-陆港网络设计

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Dry port can speed the flow of cargo between ships and major land transportation networks while reducing carbon emissions and relieving seaport congestion. This study introduces a continuous approximation model to facilitate the design of a seaport-dry-port network that takes carbon emissions into account. Multimodal transport with two transport modes: rail and road are considered. Containers are delivered quickly from shippers to dry ports through road transport; then transferred to seaport through rail transport to save money and reduce carbon emission. For decision-making scheme, a game theory is used to help the seaport, dry ports, and shippers optimize their own benefits and guide them to determine their decision variables. A nonlinear optimization technique is used to solve this seaport-dry port network design problem. The closed-form of all decision variables is found directly. A numerical study is conducted to derive managerial insights. The results show that the development of dry port concepts and multimodal transports could reduce the carbon cost from road transport. (C) 2018 Elsevier Ltd. All rights reserved.
机译:陆港可以加快船舶与主要陆路运输网络之间的货物流动,同时减少碳排放并缓解海港拥堵。这项研究引入了一种连续近似模型,以简化考虑碳排放的海港-干港网络的设计。考虑了两种运输方式的多式联运:铁路和公路。通过公路运输将集装箱从托运人迅速运送到陆港;然后通过铁路运输转移到海港以节省成本并减少碳排放。对于决策方案,使用博弈论来帮助海港,陆港和托运人优化自身收益并指导他们确定决策变量。非线性优化技术用于解决该海港-陆港网络设计问题。直接找到所有决策变量的闭合形式。进行了数值研究以得出管理方面的见解。结果表明,陆港概念和多式联运的发展可以降低公路运输的碳成本。 (C)2018 Elsevier Ltd.保留所有权利。

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