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Fin and tube heat exchanger: Constructal thermo-economic optimization

机译:翅片和管式热交换器:构造热经济优化

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摘要

In this study, constructal (branch type) fin and tube heat exchanger (FTHE) is modeled and optimized. Effectiveness and total annual cost (TAC) are selected as objective functions and 8 variables for each section of exchanger are considered as design parameters (16 design parameters in total). Then, multi objective form of genetic algorithm is used to find the optimal Pareto front. The optimization is implemented for conventional FTHE as well and their results are compared with branch type condition. The optimum results show 6.65% improvement in the maximum effectiveness in the branch type condition compared with conventional FTHE. In the constructal state, lower volume is selected in the second section as compared with the first section. The same trend is also found for heat transfer surface area. Finally, optimum design parameters in terms of effectiveness for the both studied conditions are illustrated and discussed.
机译:在该研究中,建模(分支型)翅片和管热交换器(FTH)进行建模和优化。 效力和年度成本(TAC)被选为客观函数,交易器每个部分的8个变量被视为设计参数(总共16个设计参数)。 然后,使用多目标形式的遗传算法用于找到最佳的帕累托前线。 优化用于传统的FTH,也可以将它们的结果与分支型条件进行比较。 与常规FTH相比,最佳结果表明分支型条件的最大效率提高了6.65%。 在构造状态下,与第一部分相比,在第二部分中选择较低体积。 还发现了传热表面积相同的趋势。 最后,说明并讨论了在研究条件的有效性方面的最佳设计参数。

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