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A MILP model for the detailed scheduling of multiproduct pipelines with the hydraulic constraints rigorously considered

机译:严格考虑水力约束的多产品管道详细调度的MILP模型

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摘要

Multiproduct pipelines are the most effective and important way to transport refined products from refineries to the downstream market. The detailed scheduling of a multiproduct pipeline with the hydraulic constraints considered plays a vital role in the pipeline's safe and economic operation. Aiming at this issue, this paper proposes a continuous-time mixed-integer nonlinear programming (MINLP) model taking the sum of the pumps' running and start/stop costs as the objective function. Based on a method proposed in a previous study for the rigorous description of the hydraulic loss changes in multiproduct pipelines, the pipeline hydraulic constraints and pump-related functions are considered directly and rigorously in the model. Other actual field processing constraints, such as the pipeline shutdown and contaminated oil flowrate, are also considered. To deal with the nonlinear relationship between the flowrate and pressure/volume, a piecewise linearization method is adopted, and the pipeline flowrate is graded according to the divided intervals. Finally, the application of the established model is successfully conducted on a real-world multiproduct pipeline through two case studies. A comparison with a previous discrete-time model is also performed to verify this model's applicability, accuracy, and superiority. (C) 2019 Elsevier Ltd. All rights reserved.
机译:多产品管道是将精炼产品从炼油厂运输到下游市场的最有效和最重要的方式。考虑了液压约束的多产品管道的详细调度在管道的安全和经济运行中起着至关重要的作用。针对这一问题,本文提出了一种以泵的运行成本和启动/停止成本之和为目标函数的连续时间混合整数非线性规划(MINLP)模型。基于先前研究中提出的用于严格描述多产品管道中水力损失变化的方法,模型中直接并严格考虑了管道水力约束和与泵相关的功能。还考虑了其​​他实际的现场处理约束,例如管道关闭和受污染的油流量。为了处理流量与压力/体积之间的非线性关系,采用分段线性化方法,并根据划分的区间对管道流量进行分级。最后,通过两个案例研究,已成功地在现实世界中的多产品管道上进行了已建立模型的应用。还与以前的离散时间模型进行了比较,以验证该模型的适用性,准确性和优越性。 (C)2019 Elsevier Ltd.保留所有权利。

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