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Joint Optimization of a Dry Port with Multilevel Location and Container Transportation: The Case of Northeast China

机译:具有多级地点和集装箱运输的干港联合优化:东北地区的案例

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Dry port construction can reduce the cost of container transportation, and its location is the focus of existing research. Considering dry port capacity limitations and scale advantages, this study calculates the costs associated with dry port construction and operations, transportation, time, and the environment and constructs a joint optimization model of the dry port location and transportation scheme to minimize the total cost. Taking 35 prefecture-level cities in Northeast China as the source of container goods and Dalian port as the destination, this study conducts an empirical analysis using the Gurobi 9.0.2 optimizer of the AMPL software to solve the problem and takes the minimum total cost as the goal to select the best dry port and container transshipment scheme. The research draws the following conclusions. Seven dry ports also need to be built in the road-rail (RD-RL) mode, which shares 82.76% of the container transshipment volume, to reduce the total transportation cost by approximately 21.67%. Although multimodal transport through dry ports increases the time cost slightly, it can significantly reduce the economic and environmental costs of container transportation.
机译:干港建筑可以降低集装箱运输的成本,其位置是现有研究的重点。考虑到干港容量限制和规模优势,本研究计算与干港建筑和运营,运输,时间和环境相关的成本,并构建干港定位和运输方案的联合优化模型,以最大限度地减少总成本。以东北地区为目的地为集装箱货物和大连港口源以35个县级城市,本研究采用Gurobi 9.0.2优化器进行了实证分析,以解决问题,并将最低总成本占据目标是选择最好的干港和集装箱转运方案。该研究得出了以下结论。七个干港还需要建造在路轨(RD-RL)模式中,占集装箱转运量的82.76%,以将总运输成本降低约21.67%。虽然通过干港的多式联运运输略有增加时间成本,但它可以显着降低集装箱运输的经济和环境成本。

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