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Equivalence between Minimum Entropy and Exergy Applied to Continuous Stirred-Tank Reactors

机译:应用于连续搅拌罐反应器的最小熵和能量之间的等效性

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摘要

Minimum entropy and exergy concepts were applied to continuous stirred-tank reactors (CSTRs) to assess their effectiveness as analytical and optimization tools as well as to clarify some existing controversy regarding their practical applications. The second law of thermodynamics was used to establish in detail the concepts themselves or in the formulation of the exergy balance. Relevant information was extracted from both, in addition to which differences between them were revealed. By applying a commercial software package to the production of propyl-ene glycol, the results of theoretical analysis and simulation showed that such concepts produced equivalent effects when applied to CSTRs and, due to the operating conditions, exergy proved to be independent of the so-called dead state. Therefore, it is concluded that both procedures lead to equivalent optimization strategies when applied to CSTRs and depending on the objectives, but the use of minimum entropy may be more advantageous for some approaches, as it does not depend on the dead state.
机译:最小熵和(火用)的概念连续搅拌釜反应器(装运箱)分析和评估其有效性优化工具以及澄清一些关于他们的实际存在争议应用程序。是用于建立详细的概念自己或制定的(火用)平衡。同时,除了这之间的差异他们透露。软件包propyl-ene的生产乙二醇,理论分析和结果仿真表明,这种概念产生当应用于装运箱和等效影响,操作的条件下,证明了(火用)独立的所谓的死亡状态。因此,得出的结论是,这两个程序当导致等价的优化策略适用于装运箱和根据不同的目标,但使用最小熵可能更多有利的一些方法,因为它不依赖于死的状态。

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