首页> 外文期刊>Polish Maritime Research >AN OPTIMIZATION APPROACH TO THE INTERMODAL TRANSPORTATION NETWORK IN FRUIT COLD CHAIN, CONSIDERING COST, QUALITY DEGRADATION AND CARBON DIOXIDE FOOTPRINT
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AN OPTIMIZATION APPROACH TO THE INTERMODAL TRANSPORTATION NETWORK IN FRUIT COLD CHAIN, CONSIDERING COST, QUALITY DEGRADATION AND CARBON DIOXIDE FOOTPRINT

机译:考虑成本,质量下降和二氧化碳足迹的水果冷链内联运输网络的优化方法

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摘要

This model optimizes port hinterland intermodal refrigerated container flows, considering both cost and quality degradation, which is distinctive from the previous literature content in a way that it quantifies the influence of carbon dioxide (CO2) emission in different setting temperature on intermodal network planning. The primary contribution of this paper is that the model is beneficial not only to shippers and customers for the novel service design, but also offer, for policy-makers of the government, insights to develop inland transport infrastructures in consideration of intermodal transportation. The majority of models of multimodal system have been established with an objective of cost minimization for normal commodities. As the food quality is possible to be influenced by varying duration time required for the storage and transportation, and transportation accompanied with refrigeration producing more CO2 emission, this paper aims to address cost minimization and quality degradation minimization within the constraint of CO2 footprint. To achieve this aim, we put the quality degradation model in a mixed-integer linear programming model used for intermodal network planning for cold chain. The example of Dalian Port and Yingkou Port offer insight into trade-offs between transportation temperature and transport mode considering CO2 footprint. Furthermore, the model can offer a useful reference for other regions with the demand for different imported food, which requires an uninterrupted cold chain during the transportation and storage.
机译:该模型在考虑成本和质量下降的情况下优化了港口腹地多式联运冷藏集装箱流量,这与以前的文献内容不同,该方式量化了不同设置温度下二氧化碳(CO2)排放对联运网络规划的影响。本文的主要贡献在于,该模型不仅有益于托运人和客户提供新颖的服务设计,而且还为政府决策者提供了考虑多式联运发展内陆运输基础设施的见识。已经建立了多式联运系统的大多数模型,目的是使普通商品的成本最小化。由于食品质量可能会受到储藏和运输所需时间的变化的影响,并且运输伴随冷藏产生更多的CO2排放,因此本文旨在解决在CO2足迹限制内将成本最小化和质量降低最小化的问题。为了实现此目标,我们将质量下降模型放入用于冷链联运网络规划的混合整数线性规划模型中。以大连港和营口港为例,可以在考虑二氧化碳排放量的情况下深入了解运输温度与运输方式之间的取舍。此外,该模型可以为其他地区需要不同进口食品的需求提供有用的参考,在运输和存储过程中需要不间断的冷链。

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