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On the scheduling of real world multiproduct pipelines with simultaneous delivery

机译:关于同时交付的现实世界中多产品管道的调度

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Common carrier pipelines are the best suited mode for transporting large volumes of petroleum products from production areas to long-distance terminals. In such pipelines, batches of refined petroleum products are pumped back-to-back, without any physical barrier separating them. The problem addressed in this paper deals with the scheduling of a real world multi-product, single source pipeline system that must supply the products to several offtake terminals. Most contributions on the scheduling of single-source multiproduct pipeline operations deal with the sequence deliveries in distribution terminals i.e., at any time only one terminal is connected to the pipeline. Practically, pipeline operators usually carry out simultaneous deliveries to multiple terminals to cut down the number of pipeline stoppages and pump switchings so as to reduce the energy consumed for resuming flow in idle pipeline segments, and the pump maintenance costs. This paper introduces a novel continuous mathematical approach, mixed integer linear programming to solve the short-term operational planning by allowing the execution of simultaneous deliveries to multiple receiving terminals during a pumping operation. Contrarily to previous continuous approaches that perform the pipeline input/output operations in two hierarchical stages, the new formulation aims to find both of them in a single step. The objective of this work is to find the optimal sequence of input and output operations that satisfy terminal requirements at minimum total costs. As compared to previous works, significantly improvement in solution quality has been achieved. Especially, the proposed formulation leads to better utilization of the pipeline capacity, and consequently, a substantial reduction in the amount of required time for satisfying all of the specified product deliveries, i.e., the pipeline running time. The main results are presented.
机译:公用运输管道是将大量石油产品从生产区域运输到长途码头的最合适方式。在此类管道中,成批提炼的石油产品被背对背泵送,而没有任何物理屏障将它们分开。本文解决的问题涉及到现实世界中的多产品,单源管道系统的调度,该系统必须将产品提供给多个承购终端。对单源多产品流水线调度的大部分贡献都涉及分配终端中的顺序交付,即在任何时候,只有一个终端连接到流水线。实际上,管道运营商通常同时执行到多个终端的交付,以减少管道停工和泵切换的次数,从而减少为恢复空闲管道段中的流量而消耗的能量以及泵的维护成本。本文介绍了一种新颖的连续数学方法,即混合整数线性规划,通过允许在泵送操作期间同时交付给多个接收终端来解决短期操作计划。与以前在两个层次阶段执行管道输入/输出操作的连续方法相反,新的提法旨在在单个步骤中找到它们两者。这项工作的目的是找到以最低的总成本满足终端要求的最佳输入和输出操作顺序。与以前的工作相比,解决方案质量得到了显着改善。特别地,所提出的配方导致更好地利用管道容量,因此,显着减少了满足所有指定产品交付所需的时间量,即管道的运行时间。介绍了主要结果。

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