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Modelling and dynamic optimisation for optimal operation of industrial tubular reactor for propane cracking

机译:丙烷裂解工业管式反应器优化运行的建模和动态优化

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Thermal cracking of propane in tubular reactors inside thermal cracking furnace will be the topic of this paper. The model is developed based on first principle and validated dynamically by comparing the simulated results against pilot plant data. This work is implemented in gPROMS®. Process optimization was then applied to the operation of this tubular reactor. The effects of coking on reduction of production time and the decoking cost have been considered. Steady-state and dynamic optimizations were implemented respectively. The case study indicates that dynamic optimization can improve net profit by 10.6% compared with the base case. However, the computation required by dynamic optimization is much higher than steady-state optimization.
机译:丙烷在热裂化炉内的管式反应器中的热裂化将是本文的主题。该模型基于第一原理开发,并通过将模拟结果与中试工厂数据进行比较来进行动态验证。这项工作是在gPROMS®中实现的。然后将工艺优化应用于该管式反应器的操作。已经考虑了焦化对减少生产时间和降低焦化成本的影响。分别实现了稳态和动态优化。案例研究表明,与基础案例相比,动态优化可以将净利润提高10.6%。但是,动态优化所需的计算量比稳态优化要高得多。

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