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NUMERICAL STUDY OF HEAT TRANSFER ENHANCEMENT AND FLOW CHARACTERISTICS OF THREE-DIMENSIONAL PLATE FIN HEAT EXCHANGERS

机译:三维板翅式换热器传热强化及流动特性的数值研究

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摘要

The present study is aimed at numerical investigation, by using conjugated heat transfer approach, of the effect of different types of rectangular fins (outer zigzag-inner zigzag-flat-outer zigzag (type B) and inner zigzag-flat-inner zigzag (type C)), which are mounted on a flat plate channel having three-dimensional rectangular cross section, on heat transfer enhancement in a plate fin heat exchanger. The numerical computations are performed by solving a steady, three-dimensional Navier-Stokes equation and an energy equation by using the FLUENT soft ware program. Air is taken as a working fluid. The study is carried out at Re = 400, at the inlet temperatures and velocities of cold and hot air fixed at 300 K, 600 K and 1.338 m/s, 0.69 m/s, respectively. The results show that the heat transfer is increased by 9 percent at the exit of channel with the fin type C, when compared to a channel without a fin with counterflow. The effect exerted on heat transfer enhancement by different values of the Reynolds number and fin heights, and also by temperature distributions on the hot and cold fluid sides of the channel surface are investigated in the case of parallel flow and counterflow.
机译:本研究旨在通过共轭传热方法,对不同类型的矩形鳍片(B型内外之字形,B型内之字形和B型内之字形)的效果进行数值研究。 C))安装在具有三维矩形横截面的平板通道上,以提高板翅式换热器的传热效率。通过使用FLUENT软件程序求解稳定的三维Navier-Stokes方程和能量方程来进行数值计算。空气被视为工作流体。该研究在Re = 400下进行,冷空气和热空气的入口温度和速度分别固定为300 K,600 K和1.338 m / s,0.69 m / s。结果表明,与不带翅片的带逆流通道相比,C型翅片的通道出口传热增加了9%。在平行流动和逆流的情况下,研究了雷诺数和翅片高度的不同值对传热增强的影响,以及通道表面的热和冷流体侧的温度分布对传热的影响。

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