首页> 外文OA文献 >Optimal design and operation of multivessel batch distillation with fixed product demand. Modelling, simulation and optimisation of design and operation parameters in multivessel batch distillation under fixed product demand scenario and strict product specifications using simple dynamic model in gPROMS.
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Optimal design and operation of multivessel batch distillation with fixed product demand. Modelling, simulation and optimisation of design and operation parameters in multivessel batch distillation under fixed product demand scenario and strict product specifications using simple dynamic model in gPROMS.

机译:具有固定产品需求的多容器间歇蒸馏的优化设计和操作。使用gPROMS中的简单动态模型,在固定产品需求情况和严格产品规格下,在多容器间歇蒸馏中设计和操作参数的建模,仿真和优化。

摘要

Increased interest in unconventional batch distillation column configurations offers new opportunities for increasing the flexibility and energy efficiency of batch distillation. One configuration of particular interest is multivessel batch distillation column, which can be viewed as a generalization of all previously studied batch column configuration. ududIn this work, for the first time the optimal design and operation tasks are developed for multivessel batch distillation with strict product specifications under fixed product demand.ududAlso, in this work, two different operation schemes defined as STN (State Task Network) in terms of the option and numbers of off-cuts were considered for binary and ternary separation. Both the vapour load and number of stages in each column section together with the production sequence are optimised to achieve maximum profit function. ududThe performance of the multivessel batch distillation column is evaluated against the performance of conventional batch column with a simple dynamic model using binary and ternary mixtures. It has been found that profitability improves with the multivessel system in both separations.udgPROMS, a user-friendly, software is used for the modeling, simulation, and optimisation.
机译:对非常规间歇蒸馏塔配置的兴趣日益增加,为增加间歇蒸馏的灵活性和能效提供了新的机会。一种特别令人感兴趣的配置是多容器间歇蒸馏塔,可以将其视为所有先前研究的间歇塔配置的概括。 ud ud在这项工作中,首次针对固定产品需求下具有严格产品规格的多容器间歇蒸馏开发了最佳的设计和操作任务。 ud ud此外,在这项工作中,定义了两种不同的操作方案,即STN(State对于二元和三元分离,考虑了任务网络的选项和未完成的数量。每个塔段的蒸汽负荷和级数以及生产顺序均得到优化,以实现最大的利润函数。 ud ud通过使用二元和三元混合物的简单动力学模型,对照常规间歇式色谱柱的性能对多容器间歇式蒸馏柱的性能进行了评估。已经发现,在两种分离方式下,多容器系统均可提高获利能力。 udgPROMS是一种用户友好的软件,可用于建模,仿真和优化。

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