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Optimization of Heat Transfer and Pressure Drop in Axially Finned Staggered Tube Banks

机译:轴向翅片交错管堤中传热和压力下降的优化

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摘要

Numerical optimization of heat and fluid flow over staggered tube banks are investigated for both unfinned and axially finned tube banks. Ansys Fluent software is utilized for numerical computations. To find maximum total heat transfer and minimum volume of tube bank for the given mass flow rate, allowable pressure drop and tube bank effectiveness; A Multi-objective Genetic Algorithm Ⅱ is used. Optimum designs are given on tabular forms and variations of total heat transfer with total volume are presented. Moreover, effects of transversal and longitudinal pitches on objective functions are graphically demonstrated. In order to confirm reliability of the numerical studies, unfinned staggered tube bank configuration is compared with experimental studies in literature. As a result of optimization studies, axial fin usage results in 42.7% decrement in volume of staggered tube bank with respect to unfinned case, while heat transfer values are equal with maximum obtainable heat transfer rate for the given optimization problem.
机译:对交错管堤的热量和流体流动的数值优化进行了对未突出的和轴向翅片管堤的研究。 ANSYS流畅的软件用于数值计算。为给定质量流量,允许压降和管堤效果找到最大总热传热和最小管堤的最小传热和最小体积;使用多目标遗传算法Ⅱ。在表格形式上给出了最佳设计,并提出了总体积的总热传递的变化。此外,图示了横向和纵向间距对客观函数的影响。为了确认数值研究的可靠性,与文献实验研究进行比较未突出的交错管堤配置。由于优化研究,轴向翅片使用导致相对于未填充案例的交错管堤体积减少42.7%,而传热值等于给定优化问题的最大可获得的传热速率。

著录项

  • 来源
    《Heat Transfer Engineering》 |2021年第18期|1268-1285|共18页
  • 作者单位

    Hatay Provincial Directorate of Environment and Urbanization Hatay Turkey;

    Department of Mechanical Engineering Tarsus University Mersin Turkey;

    Department of Automotive Engineering Cukurova University Adana Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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