...
首页> 外文期刊>EURO journal of transportation and logistics >Freight transportation planning considering carbon emissions and in-transit holding costs: a capacitated multi-commodity network flow model
【24h】

Freight transportation planning considering carbon emissions and in-transit holding costs: a capacitated multi-commodity network flow model

机译:考虑碳排放和运输中的持有成本的货运计划:功能丰富的多商品网络流动模型

获取原文
获取原文并翻译 | 示例
           

摘要

To mitigate climate relevant air emissions from freight transportation, policy makers stimulate the application of intermodal freight transport chains. The evaluation and selection of intermodal routes based on the key objectives, i.e., greenhouse gas emission, transportation cost and transit time improvements, are the main challenges in the design of intermodal networks. It is the aim of this paper to provide decision support in intermodal freight transportation planning concerning route and carrier choice in transport service design and the assessment of emission abatement potentials. Core of this approach is a capacitated multi-commodity network flow model considering multiple criteria and in-transit inventory. Thereby two processes are modeled, i.e., the transport and transshipment of full truckloads (FTL), to define the material flow of goods through the network. The objective function of the developed network flow model minimizes the number of transported and transshipped FTL assessed by the weighted and normalized criteria (i.e., CO_2-equivalents, cost, time) taking into account tied in-transit capital and the distance traveled. Thereby, the model regards carrier and terminal capacities, the option to transfer or either shift the mode and/or change the carrier at predefined terminal transshipment points. The model is incorporated in a decision support system and applied in an example application with industry data from an automotive supplier to demonstrate its application potentials. Within the application among others the potential benefits of the developed optimization model in comparison to a status quo are analyzed. Different criteria weightings and the influence of various levels of in- transit holding costs are investigated. In addition, the introduction of new transportation means such as the Eurocombi is assessed.
机译:为了减轻货运引起的与气候相关的空气排放,政策制定者鼓励采用多式联运运输链。基于主要目标,即温室气体排放,运输成本和运输时间改进的多式联运路线的评估和选择,是多式联运网络设计中的主要挑战。本文的目的是在多式联运运输计划中为运输服务设计中的路线和承运人选择以及减排潜力的评估提供决策支持。该方法的核心是考虑多种标准和运输途中库存的容量化多商品网络流模型。因此,对两个过程进行了建模,即完整卡车货物的运输和转运,以定义通过网络的货物物流。发达的网络流量模型的目标函数将通过加权和归一化标准(即,CO_2当量,成本,时间)评估的运输和转运FTL数量减至最少,并考虑到运输中的资本和行进距离。因此,模型考虑了承运人和码头的能力,在预定的码头转运点转移或转移方式和/或改变承运人的选择。该模型被合并到决策支持系统中,并与来自汽车供应商的行业数据一起应用于示例应用程序,以展示其应用潜力。在该应用程序中,将分析所开发优化模型与现状相比的潜在优势。研究了不同的标准权重以及各种水平的在途持有成本的影响。此外,还评估了诸如Eurocombi之类的新运输手段的引入。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号