Effect of Helix Amplitude and Helix Pitch on the Performance of a Swirl Flow Tube

C. Yeh
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Abstract

In the author’s another study, the effect of helix length on the performance of a swirl flow tube (SFT) was investigated. In this study, The heat transfer enhancement and the pressure drop were investigated using CFD to obtain an optimal compromise between the temperature uniformity and the pressure drop gain. It was found that a helix length of 40d is an optimal compromise between the temperature uniformity and the pressure drop gain. In this paper, another two important parameters regarding the operation of an SFT, the helix amplitude and the helix pitch are investigated to get a more thorough understanding of the SFT performance. The pressure decreases to a larger extent for a larger helix amplitude and the pressure drop is nearly proportional to the helix amplitude. In addition, the temperature increases with the helix amplitude, and the improvement in temperature uniformity index enhances with increasing helix amplitude. Concerning the influence of the helix pitch, the pressure decreases to a larger extent for a smaller helix pitch and the pressure drop is nearly inversely proportional to the helix pitch. The temperature decreases with the helix pitch and the improvement in temperature uniformity index are enhanced by decreasing the helix pitch.
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螺旋幅值和螺距对旋流管性能的影响
在另一项研究中,作者研究了螺旋长度对旋流管性能的影响。为了在温度均匀性和压降增益之间找到一个最优的平衡点,本研究利用CFD对传热增强和压降进行了研究。结果表明,螺旋长度为40d是温度均匀性和压降增益之间的最佳折衷。为了更深入地了解SFT的性能,本文还研究了SFT运行的另外两个重要参数——螺旋振幅和螺旋节距。螺旋幅值越大,压力降低幅度越大,压力降与螺旋幅值几乎成正比。温度随螺旋幅值的增加而增加,温度均匀性指数的改善随螺旋幅值的增加而增强。螺旋节距的影响是,螺旋节距越小,压力下降幅度越大,且压降与螺旋节距几乎成反比。温度随螺旋螺距的增大而减小,温度均匀性指标的改善随螺旋螺距的减小而增强。
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