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A model-based approach for optimizing petroleum refinery configuration for heavy oil processing

机译:一种基于模型的优化石油加工石油炼油厂配置方法

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This work presents a model-based optimization approach to determine the configuration of a petroleum refinery for a new (grassroots) or an existing site for heavy oil processing of atmospheric distillation unit residue.We develop a high-1evel superstructure representation for the refinery configuration that encompass many possible alternatives comprising the technologies and their interconnections.The superstructure is postulated by decomposing it to include representative heavy oil processing scheme alternatives that center on the technologies for atmospheric residual hydrodesulfurization (ARDS), vacuum residual hydrodesulfurization (VRDS), and residual fluid catalytic cracking (RFCC).We formulate a mixed-integer nonlinear optimization model (MINLP) appended with logic propositions devised from experience and heuristics to aid solution convergence.Implementation on a case study of Kuwaiti refineries demonstrate the applicability and practicality of the proposed approach when validated against existing real-world refinery configurations.
机译:这项工作提出了一种基于模型的优化方法,可以确定新(基层)的石油炼油厂的配置,或用于大气蒸馏单元残留物的重油加工的现有部位。我们开发了炼油厂配置的高1 evel上部结构表示包含许多可能的替代方案,包括技术及其互连。通过将其分解,包括代表性的重油加工方案,包括在大气残留加氢脱硫(ARDS),真空残留的加氢脱硫(VRD)和残留流体催化的技术上的代表性重油处理方案替代品。裂解(RFCC).we制定了附加的混合整数非线性优化模型(MINLP),其中包含从经验和启发式设计的逻辑命题,以辅助解决方案融合。关于Kuwaiti炼油厂的案例研究的影响证明了验证时提出的方法的适用性和实用性针对现有的现实炼油厂配置。

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