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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Multi-parameter optimization of shell-and-tube heat exchanger with helical baffles based on entransy theory
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Multi-parameter optimization of shell-and-tube heat exchanger with helical baffles based on entransy theory

机译:基于Enteransy理论的螺旋挡板壳管热交换器多参数优化

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摘要

An optimization strategy combined the entransy theory and genetic algorithm was proposed in this paper. The applicability of entransy theory on shell-and-tube heat exchanger with helical baffles (STHXsHB) was firstly proved by the consistency of performance evaluation criteria (PEC) and entransy dissipation theory based on experimental data. The effects of helix angle, overlapped degree and shell side velocity on thermal resistance (optimization objective) were discussed based on the minimum thermal resistance principle. The results showed that the entransy dissipation thermal resistance decreased with the shell-side velocity but increased with the helix angle. The overlapped degree nearly had no effect on the variation of entransy dissipation thermal resistance. According to the sensitivity study, the thermal resistance was considered to be mostly affected by the shell-side velocity and then the helix angle. Three optimum configurations were obtained by the genetic algorithm, for which the thermal resistance decreased by 7%. The combination of entransy theory and genetic algorithm can provide some theoretical guidance to optimize the configuration of shell-and-tube heat exchanger with helical baffles effectively. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种优化策略组合Enransy理论和遗传算法。首先通过基于实验数据的绩效评估标准(PEC)和Entransy耗散理论的一致性来证明壳管热交换器对壳管换热器的适用性。基于最小热阻原理讨论了螺旋角度,重叠度和壳侧速度对热阻(优化目标)的影响。结果表明,随着壳侧速度,延伸耗散热阻降低,但随着螺旋角度的增加而增加。重叠度几乎对延伸耗散热阻的变化几乎没有影响。根据敏感性研究,认为热阻主要受壳侧速度的影响,然后是螺旋角度。通过遗传算法获得三种最佳配置,其中热阻降低了7%。 Entransy理论和遗传算法的组合可以提供一些理论指导,以优化螺旋挡板的壳管热交换器的结构。 (c)2017 Elsevier Ltd.保留所有权利。

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