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Performance evaluation of flat finned tube fin heat exchanger with different fin surfaces

机译:不同翅片表面的扁平翅片管翅片换热器性能评估

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摘要

When an extended surface is needed on only one fluid side (such as in a gas-to-liquid exchanger) or when the operating pressure needs to be contained on one fluid side, a tube-fin exchanger may be selected, with the tubes being round, flat, or elliptical in shape. The paper is concerned with the performance evaluation of flat tube fin heat exchangers (TFHE), having different fin configurations and flat tubes. The thermal performance of each configuration is based on the ε-NTU method. The extensive experimental research data of Kays and London available in the form of graphs are translated into algebraic relations for developing computational models. From the present work, a generalized heat transfer correlations is proposed based on geometrical parameters for the effectiveness of the heat exchanger. The generalization is with respect to the different fin surface geometry and not with the different combination of hot and cold fluids. The correlation is limited in its applicability to gas to water heat exchangers only. Further, guidelines are proposed for an easy way of designing a TFHE using correlations based on geometrical parameters and the same is compared with traditional ε-NTU method.
机译:当仅在一个流体侧需要延伸的表面时(例如在气液交换器中),或者当需要在一个流体侧控制工作压力时,可以选择管翅式交换器,其中圆形,扁平或椭圆形。本文涉及具有不同翅片配置和扁平管的扁平管翅片式换热器(TFHE)的性能评估。每种配置的热性能均基于ε-NTU方法。以图形形式提供的大量的Kays和London实验研究数据被转换为代数关系,以开发计算模型。从目前的工作出发,提出了基于几何参数的广义传热相关性,以提高热交换器的效率。泛化是针对不同的翅片表面几何形状,而不是针对冷热流体的不同组合。这种相关性在其适用性上仅限于气水热交换器。此外,提出了使用基于几何参数的相关性设计TFHE的简便方法的指南,并将其与传统的ε-NTU方法进行了比较。

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