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Experimental and Numerical Investigation of the Gas Side Heat Transfer and Pressure Drop of Finned Tubes - Part II: Numerical Analysis

机译:翅片管气体侧传热与压降的实验与数值研究-第二部分:数值分析

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摘要

The heat transfer and pressure drop behavior of segmented circular and helical as well as solid finned tubes are investigated in a three-dimensional numerical study. The simulation is carried out using a finite volume method for calculating the steady-state temperature and flow field of the fluid as well as the temperature distribution of the tube material. For modeling the turbulence, the k-ε turbulence model based on the renormalization group theory (RNG) is used to resolve the near-wall treatment between adjacent fins. All simulations are performed in the Re range between 3500 ≤ Re ≤ 50,000. The influence of Reynolds number and fin geometry (segmented or solid and circular or helical) on the local and global averaged heat transfer and pressure drop was studied. A comparison between solid and segmented finned tube has shown that the heat transfer and pressure drop for the segmented finned tubes is higher. The numerical results are compared with experimental data.
机译:在三维数值研究中研究了扇形圆管,螺旋管和固体翅片管的传热和压降行为。使用有限体积方法进行模拟,以计算流体的稳态温度和流场以及管材的温度分布。为了对湍流进行建模,基于重归一化群论(RNG)的k-ε湍流模型用于解决相邻鳍片之间的近壁处理。所有模拟均在3500≤Re≤50,000的Re范围内进行。研究了雷诺数和翅片几何形状(分段或实心,圆形或螺旋形)对局部和全局平均传热和压降的影响。实心翅片管和分段翅片管的比较表明,分段翅片管的传热和压降较高。数值结果与实验数据进行了比较。

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