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Effects of transversely twisted-turbulators on heat transfer and pressure drop of a channel with uniform wall heat flux

机译:横向扭曲湍流器对均匀壁热通量沟道传热和压降的影响

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摘要

Air flow and heat transfer through a rectangular channel equipped with transversely twisted-turbulators are studied experimentally. Three twist-angles and two pitch-ratios are considered to explore the effects of design factors. To create a better understanding of possible mechanisms, a numerical simulation is also carried. The experimental data show that decreasing twist-angle and pitch-ratio increases both h and Ap. Among the studied models, the 0 degrees turbulators give the highest values, followed by the 90 degrees and 180 degrees turbulators come in the second and third, respectively. The use of 0 degrees turbulators enhances h by about 141.2 % at pitch-ratio of 1.875 and 109.4 at pitch-ratio of 3.75, but these enhancements for the models with 90 degrees and 180 degrees turbulators are 133.2 %-102.7 0/0 and 54.6 %-42.1 %, respectively. The numerical results display that the 0 degrees turbulators are more effective in fluid dispersion towards hot walls and generate stronger swirl flows. However, the best overall performance is seen for the 90 degrees turbulators. It is also found that at min. Re, the models with lower pitch-ratio show a better overall performance, while at the max. Re, an inverse outcome is found. The highest performance index of 1.62 is recorded for the 90 degrees turbulators at the Reynolds number of 1643.
机译:通过实验研究了通过配备有横向扭曲湍流器的矩形通道的空气流量和传热。考虑三个扭曲角度和两种间距比率探索设计因素的影响。为了更好地理解可能的机制,还携带了数值模拟。实验数据表明,减小的扭曲角度和沥青比增加了H和AP。在研究的模型中,0度湍流器具有最高值,其次是90度和180度的湍流分别在第二和第三。使用0度湍流器的使用以1.875和109.4的沥青比为3.75的比率,但是对于具有90度和180度湍流器的模型的这些增强率为133.2%-102.7 0/0和54.6 %-42.1%。数值结果显示,0度湍流器在流体分散中更有效地朝向热壁,并产生更强的旋流。然而,为90度湍流器看到了最佳整体性能。还发现在min。 RE,较低的音频比率的模型显示出更好的整体性能,而在最大值。 Re,发现了反向结果。 1.62的最高性能指数被记录为雷诺数1643的90度湍流器。

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