Highl'/> An integrated framework for inventory management and transportation of refined petroleum products: Pipeline or marine?
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An integrated framework for inventory management and transportation of refined petroleum products: Pipeline or marine?

机译:成品油库存管理和运输的集成框架:管道还是海运?

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HighlightsWe study the production–transportation problem for refined petroleum products.A bi-objective MILP model is proposed to select transportation mode.A time-based heuristic solution technique is proposed.Problem instances based on realistic infrastructure is studied.Conditions under which pipeline or marine is preferred is discussed.AbstractWe study the integrated problem of managing inventory of refined petroleum products, and their multi-modal (ships and pipeline) transportation between a refinery and the served distribution centers. It is important that the transportation decisions are driven not just by the inventory levels and customer demand, but also the environmental risks associated with different refined products. A bi-objective mixed integer linear programming optimization model (MILP) is proposed, where constituent components were independently developed and then interfaced to capture the complexity of the resulting integrated model. A time-based decomposition heuristic is also employed to solve the integrated problem. The proposed framework was used to study a number of problem instances generated using a realistic infrastructure in the United States, and the resulting analyses lead to the following inferences: pipeline is the preferred mode of transportation only when cost is the sole consideration; on the other hand, when environmental risks are considered marine is the preferred mode for most of the refined petroleum products, except for heavier oils; and, the proportion of traffic on the two modes is a function of the type and volume of products, and the number of vessels available at the start of the planning horizon.
机译: 突出显示 我们研究了精炼石油产品的生产与运输问题。 提出了一种双目标MILP模型来选择运输方式。 一次 基于realis的问题实例 摘要 我们研究了管理精炼石油产品库存及其多式联运(船舶和管道)运输的综合问题在精炼厂和服务的配送中心之间。重要的是,运输决策不仅取决于库存水平和客户需求,还取决于与不同精炼产品相关的环境风险。提出了一个双目标混合整数线性规划优化模型(MILP),其中独立开发了组成部分,然后进行接口以捕获所得集成模型的复杂性。还采用基于时间的分解启发法来解决集成问题。拟议的框架用于研究在美国使用现实基础设施产生的许多问题实例,结果分析得出以下推论:仅当成本是唯一考虑因素时,管道才是首选的运输方式;另一方面,当考虑到环境风险时,除重油以外,大多数精炼石油产品都首选海上运输;并且,两种模式下的流量比例取决于产品类型和数量,以及规划阶段开始时可用的船只数量。

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