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A novel method for combined entropy generation and economic optimization of counter-current and co-current heat exchangers

机译:一种新的熵生成和经济优化对逆流和共流热交换器的新方法

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摘要

In this paperwork, a novel methodology of entropy generation minimization (EGM) for counter-current and cocurrent heat exchangers is developed. The methodology can be applied in general case for all types of the heat exchangers with the counter-current and co-current flow configuration. A number of entropy generation units (NEGU) function, along with its pressure drop and temperature difference components, are presented. Additionally, evaluated EGM can be easily incorporated into some optimization algorithms for industrial practice. Beside of the theoretical background, on an example and case study were proved that the EGM analysis could be useful in practical applications of heat exchanger optimization. Furthermore, the correlation between the minimum value of NEGU and minimum of total annual costs (operational and investment costs) have been shown. Based on the EGM methodology, on a case study was presented that pressure drop of the plate countercurrent heat exchangers in series should be 36 kPa, in order to achieve minimal annual costs of the 456 EUR/year. The result corresponds to the heat exchangers in series with 2 sections and 46 plates per section.
机译:在本文中,开发了一种用于反电流和COCURRENT热交换器的熵产生最小化(EGM)的新方法。该方法可以在一般情况下应用于具有逆流和共流流动配置的所有类型的热交换器。提出了许多熵生成单位(NegU)功能以及其压降和温差分量。另外,可以容易地将评估的EGM纳入一些用于工业实践的优化算法中。在理论背景旁边,证明了EGM分析在热交换器优化的实际应用中可用。此外,已经显示了NegU的最小值与年度总成本(运营和投资成本)之间的相关性。基于EGM方法,介绍了串联的板逆流热交换器的压降应为36 kPa,以实现456欧元/年的最低年度成本。结果对应于串联的热交换器,每个串联和每截面46个板。

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