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Petroleum refinery scheduling with consideration for uncertainty

机译:考虑不确定性的炼油厂调度

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摘要

Scheduling refinery operation promises a big cut in logistics cost, maximizes efficiency, organizes allocation of material and resources, and ensures that production meets targets set by planning team. Obtaining accurate and reliable schedules for execution in refinery plants under different scenarios has been a serious challenge. This research was undertaken with the aim to develop robust methodologies and solution procedures to address refinery scheduling problems with uncertainties in process parameters.The research goal was achieved by first developing a methodology for short-term crude oil unloading and transfer, as an extension to a scheduling model reported by Lee et al. (1996). The extended model considers real life technical issues not captured in the original model and has shown to be more reliable through case studies. Uncertainties due to disruptive events and low inventory at the end of scheduling horizon were addressed. With the extended model, crude oil scheduling problem was formulated under receding horizon control framework to address demand uncertainty. This work proposed a strategy called fixed end horizon whose efficiency in terms of performance was investigated and found out to be better in comparison with an existing approach.In the main refinery production area, a novel scheduling model was developed. A large scale refinery problem was used as a case study to test the model with scheduling horizon discretized into a number of time periods of variable length. An equivalent formulation with equal interval lengths was also presented and compared with the variable length formulation. The results obtained clearly show the advantage of using variable timing. A methodology under self-optimizing control (SOC) framework was then developed to address uncertainty in problems involving mixed integer formulation. Through case study and scenarios, the approach has proven to be efficient in dealing with uncertainty in crude oil composition.
机译:安排炼油厂的运营有望大大降低物流成本,提高效率,组织材料和资源分配,并确保生产达到计划团队设定的目标。在不同情况下获得精炼厂执行的准确和可靠的时间表是一个严峻的挑战。进行这项研究的目的是开发健壮的方法论和解决程序,以解决工艺参数不确定的炼油厂调度问题。该研究目标是通过首先开发短期原油卸载和转移的方法学来实现的,作为对石油生产的扩展。 Lee等人报道的调度模型。 (1996)。扩展模型考虑了原始模型中未涵盖的现实生活中的技术问题,并且通过案例研究显示出该问题更加可靠。解决了由于计划中断而造成的不确定性事件和库存不足。利用扩展模型,在后退水平控制框架下制定了原油调度问题,以解决需求不确定性问题。这项工作提出了一种称为“固定端域”的策略,该策略对性能进行了研究,发现与现有方法相比效果更好。在主炼厂生产区域,开发了一种新颖的调度模型。以大型炼油厂问题为案例研究,以将调度范围离散为多个可变长度的时间段来测试模型。还提出了具有相等间隔长度的等效公式,并将其与可变长度公式进行了比较。获得的结果清楚地表明了使用可变定时的优势。然后,开发了一种自优化控制(SOC)框架下的方法,以解决涉及混合整数公式的问题中的不确定性。通过案例研究和方案,已证明该方法可有效处理原油成分的不确定性。

著录项

  • 作者

    Hamisu Aminu Alhaji;

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  • 年度 2015
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