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Integrated crude selection and refinery optimization under uncertainty

机译:不确定条件下的综合原油选择和炼油厂优化

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摘要

Crude oil selection and procurement is the most important step in the refining process and impacts the profit margin of the refinery significantly. Due to uncertain quality of the crudes, conventional deterministic modeling and optimization methods are not suitable for refinery profitability enhancement. Therefore, a novel optimization scheme for crude oil procurement integrated with refinery operations in the face of uncertainties is presented. The decision process comprises two stages and is solved using a scenario-based stochastic programming formulation. In Stage I, the optimal crude selections and purchase amounts are determined by maximizing the expected profit across all scenarios. In Stage II, the uncertainties are realized and optimal operations for the refinery are determined according to this realization. The resulting large-scale mixed-integer nonlinear programming formulation incorporates integer variables for crude selection and continuous variables for refinery operations, as well as bilinear terms for pooling processes. Nonconvex generalized Benders decomposition is used to solve this problem to obtain an E-global optimum efficiently. (c) 2015 American Institute of Chemical Engineers AIChE J, 62: 1038-1053, 2016
机译:原油的选择和采购是炼油过程中最重要的步骤,并且会严重影响炼油厂的利润率。由于不确定的原油质量,常规的确定性建模和优化方法不适合提高炼油厂的获利能力。因此,提出了面对不确定性的,与炼油厂运营相结合的原油采购新的优化方案。决策过程包括两个阶段,并使用基于场景的随机规划公式解决。在第一阶段,通过最大化所有方案的预期利润来确定最佳的原油选择和购买量。在第二阶段,实现不确定性,并根据此实现确定炼油厂的最佳运行。由此产生的大规模混合整数非线性规划公式结合了用于原油选择的整数变量和用于炼油厂运营的连续变量,以及用于合并过程的双线性项。非凸广义Benders分解用于解决该问题,从而有效地获得E全局最优值。 (c)2015年美国化学工程师学会AIChE J,62:1038-1053,2016

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