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Integrated optimal design and scheduling for a bitumen upgrader facility

机译:沥青改良剂设施的集成优化设计和调度

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摘要

Partial upgrading of bitumen is advantageous yet energy intensive in itself, needing various resources such as electricity, heat, hydrogen, and steam. Therefore, partially upgrading the bitumen while minimizing energy usage and thus lowering the carbon footprint is desirable. Consequently, optimal design and operation of an upgrader then becomes a challenging two-pronged problem. The key, however, lies in identifying that the design and operation problems are not mutually exclusive, but instead, synergistic, and hence require simultaneous consideration. Consequently, this research highlights the importance of the real-time integrated design and scheduling problem through two formulations; maximizing profit and minimizing energy usage. The results indicate changes in design and scheduling decision variables as per the medium-term forecasts of the volatile commodity and energy pricing markets. Therefore, a design independent of the scheduling constraints or a schedule based on a fixed design may lead to suboptimal results in the design and/or schedule decision space(s). (C) 2019 Elsevier Ltd. All rights reserved.
机译:沥青的部分升级是有利的,但其本身是能源密集型的,需要各种资源,例如电,热,氢和蒸汽。因此,期望在部分地升级沥青同时最小化能量使用并因此降低碳足迹。因此,升级器的最佳设计和操作成为一个具有挑战性的两方面问题。但是,关键在于确定设计和操作问题不是相互排斥的,而是协同作用的,因此需要同时考虑。因此,本研究通过两个公式突出了实时集成设计和调度问题的重要性。最大化利润并最小化能源消耗。结果表明,根据波动的商品和能源价格市场的中期预测,设计和调度决策变量将发生变化。因此,独立于调度约束或基于固定设计的调度的设计可能导致设计和/或调度决策空间中的次优结果。 (C)2019 Elsevier Ltd.保留所有权利。

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