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A decision support tool for process optimization of sulphur free diesel production

机译:硫离柴油生产过程优化的决策支持工具

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This work is a contribution to the Sulphur Free Diesel (SFD) production. The research presented in this paper is performed in one of the Dutch refineries, which is going to be one of the front producers of SFD from high sulphur crude. The challenge is to adapt the process operation to changes in the specification requirements without capital investments, i.e. to find optimal process settings which maximize the margin taking into account blend values, deactivation costs of the catalyst, shutdown margin losses, product specifications and quality margins and considering the organizational complexity, too. The decision support tool, called SFD optimizer, determines production settings on a weekly basis to decide on the weekly schedule by Economics and Planning Department and in case of disturbances. The NLP-optimization problem with two types of decision variables (desulphurization depths for three HDS and five quantities of components sent to product pools) and with 22 (non)-linear (in)-equality constraints is solved with generalized reduced gradient method. The optimal solution results in maximal SFD margin, i.e. the total blend value minus the deactivation costs. The SFD decision support system presented in this paper was proven to effectively assist decision makers at the Economics and Planning Department.
机译:这项工作是对硫磺柴油(SFD)生产的贡献。本文提出的研究是在其中一个荷兰炼油厂进行的,该炼油厂将是来自高硫原油的SFD的前生产商之一。挑战是将流程操作调整到没有资本投资的规范要求的变化,即找到最佳过程设置,以考虑到融合值,催化剂的停用成本,关闭保证金损失,产品规格和质量利润率最大化考虑到组织复杂性。决策支持工具称为SFD Optimizer,每周确定生产设置,以便在经济和规划部门以及干扰的情况下决定每周时间表。具有两种类型的判定变量的NLP优化问题(三个HDS的脱硫深度以及发送到产品池的五个组件)和22(非)-Linear(In) - 相当于梯度法求解。最佳解决方案导致最大SFD裕度,即总混合值减去停用成本。本文提出的SFD决策支持系统被证明有效地协助经济学和规划部门的决策者。

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