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Performance assessment in a heat exchanger tube with alternate clockwise and counter-clockwise twisted-tape inserts

机译:带有交替的顺时针和逆时针扭曲胶带的热交换器管中的性能评估

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The article presents an experimental study of turbulent heat transfer and flow friction characteristics in a circular tube equipped with two types of twisted tapes: (1) typical twisted tapes and (2) alternate clockwise and counterclockwise twisted tapes (C-CC twisted tapes). Nine different C-CC twisted tapes are tested in the current work; they included the tapes with three twist ratios, y/w = 3.0, 4.0 and 5.0, each with three twist angles, 0 = 30°, 60° and 90°. The experiments have been performed over a Reynolds number range of 3000-27,000 under uniform heat flux conditions, using water as working fluid. The obtained results reveal that the C-CC twisted-tapes provide higher heat transfer rate, friction factor and heat transfer enhancement index than the typical twisted-tapes at similar operating conditions. The results also show that the heat transfer rate of the C-CC tapes increases with the decrease of twist ratio and the increase of twist angle values. Depending on Reynolds number, twist ratio and twist angle values, the mean Nusselt numbers in the tube fitted with the C-CC twisted tapes are higher than those with the typical ones and the plain tube around 12.8-41.9% and 27.3-90.5%, respectively. The maximum heat transfer enhancement indexes of the C-CC twisted tapes with n = 90° for y/w = 3.0, 4.0 and 5.0, are 1.4, 1.34 and 1.3, respectively. In addition, correlations of the Nusselt number and the friction factor for using the C-CC twisted tapes are also determined. Both predicted Nusselt number and friction factor are within +15% and ±15% deviation compared to the experimental data.
机译:本文介绍了在装有两种类型的双绞带的圆管中进行湍流传热和流动摩擦特性的实验研究:(1)典型双绞带和(2)顺时针和逆时针双绞带(C-CC双绞带)。在当前的工作中,测试了九种不同的C-CC扭曲带。他们包括具有三种扭曲比的胶带,y / w = 3.0、4.0和5.0,每种具有三种扭曲角度,即0 = 30°,60°和90°。使用水作为工作流体,在均匀的热通量条件下,在3000至27,000的雷诺数范围内进行了实验。所得结果表明,在类似的操作条件下,C-CC扭曲带比典型的扭曲带提供更高的传热速率,摩擦系数和传热增强指数。结果还表明,C-CC胶带的传热速率随着扭曲比的减小和扭曲角值的增加而增加。根据雷诺数,扭曲比和扭曲角值,装有C-CC扭曲带的管中的平均努塞尔数要高于典型带,而普通管的平均努塞尔特数约为12.8-41.9%和27.3-90.5%,分别。对于y / w = 3.0、4.0和5.0,n = 90°的C-CC扭曲带的最大传热增强指数分别为1.4、1.34和1.3。另外,还确定了使用C-CC扭曲带的努塞尔数和摩擦系数的相关性。与实验数据相比,预测的努塞尔数和摩擦系数均在+ 15%和±15%的偏差内。

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