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Numerical study on characteristics of heat transfer and friction factor in a circular tube with central slant rods

机译:中心斜杆圆管内传热和摩擦系数特性的数值研究

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In the present work, a numerical study on the characteristics of heat transfer and friction factor of laminar water flow in a circular tube fitted with a new tube insert (central slant rod inserts) is presented. Results reveal that the new inserts can fully disturb the core flow in the tube and create multiple longitudinal vortex structures, which are confirmed to be excellent flow structures for heat transfer enhancement In addition, we carried out stereoscopic particle image velocimetry (SPIV) measurements in exactly the same facility as that of the numerical study to validate the accuracy of our numerical study. The results show good agreement between the experiment and numerical simulation. Following this, the effects of three parameters of central slant rods, including the slant angle, pitch and length in the radial direction, are discussed numerically. The computational results indicate that a moderate slant angle ranging from 20° to 30° can obtain the largest Nusselt number; however, the effect of slant angle on the friction factor is quite limited. The Nusselt number and friction factor both increase with a decrease in rod pitch and an increase in rod length in the radial direction. The simulation results show that the Nusselt number and friction factor are enhanced by 1.81-5.05 times and 2.49-6.92 times, respectively, to that of a plain tube. The performance ratio R3 values are in the range of 1.74-4.60. Empirical formulas for Nu and f are obtained based on calculation results. All results indicate that the central slant rod is a promising high-performance tube insert for heat transfer enhancement in practical applications.
机译:在目前的工作中,对装有新管插入件(中心斜杆插入件)的圆形管中层流水的传热特性和摩擦系数进行了数值研究。结果表明,新的插入物可以完全扰乱管中的核心流动并产生多个纵向涡旋结构,这被证实是用于增强传热的出色流动结构。此外,我们精确地进行了立体粒子图像测速(SPIV)测量具有与数值研究相同的功能,以验证我们数值研究的准确性。实验结果与数值模拟结果吻合良好。然后,数值讨论了中心倾斜杆的三个参数的影响,包括倾斜角,螺距和径向长度。计算结果表明,适度的20°至30°倾斜角可以获得最大的努塞尔特数。但是,倾斜角对摩擦系数的影响非常有限。努氏数和摩擦系数都随着杆间距的减小和杆长度的增加而增加。仿真结果表明,与普通管相比,努塞尔数和摩擦系数分别提高了1.81-5.05倍和2.49-6.92倍。性能比R3值在1.74-4.60的范围内。根据计算结果获得Nu和f的经验公式。所有结果表明,中心倾斜杆是一种有希望的高性能管插入件,可在实际应用中增强传热效果。

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