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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >A numerical study on thermo-hydraulic characteristics of turbulent flow in a circular tube fitted with conical strip inserts
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A numerical study on thermo-hydraulic characteristics of turbulent flow in a circular tube fitted with conical strip inserts

机译:装有锥形条形插入件的圆管内湍流热工水力特性的数值研究

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In an attempt to enhance the heat transfer without significant increase of pressure drop, we developed a conical strip turbulator in the present work. Characteristics of heat transfer rate, flow resistance, and overall thermo-hydraulic performance of turbulent flow in a circular tube fitted with the conical strip inserts were investigated through numerical simulation. The computation results show that the maximal friction factor of the enhanced tube is increased by ~10 times (f = 0.062-0.36); while the Nusselt number is augmented by ~5 times (Nu = 98.35-400.41) as that of the smooth tube. The value of performance evaluation criterion (PEC) lies in the range of 1.67-2.06, which demonstrates that the conical strip insert has a very good thermo-hydraulic performance. Effects of the geometric parameters of the conical strip were also examined. The numerical results indicate that larger slant angle and small pitch can effectively enhance the heat transfer rate, but also increase the flow resistance. Moreover, it is shown that the Nusselt number and friction factor are more sensitive to the slant angle than the inserts pitch. Comparatively steady thermo-hydraulic performance can be obtained at a moderate slant angle together with a small pitch. In addition to those good performances, the conical strip is also easy to fabricate. Thus, it is a promising tube insert which would be widely used in heat transfer enhancement of turbulent flow.
机译:为了在不显着增加压降的情况下增强热传递,我们在当前工作中开发了锥形带状湍流器。通过数值模拟研究了装有圆锥形条形插入件的圆管中的热传递速率,流动阻力和湍流的整体热工水力特性。计算结果表明,增强管的最大摩擦系数提高了约10倍(f = 0.062-0.36)。 Nusselt数是光滑管的5倍(Nu = 98.35-400.41)。性能评估标准(PEC)的值在1.67-2.06的范围内,这表明圆锥形条形嵌件具有很好的热工液压性能。还检查了锥形带的几何参数的影响。数值结果表明,较大的倾斜角和较小的螺距可以有效地提高传热速率,但也可以增加流动阻力。而且,已经表明,努塞尔特数和摩擦系数对倾斜角的影响比刀片的螺距更敏感。可以在中等的倾斜角和较小的螺距下获得相对稳定的热工液压性能。除了这些良好的性能,圆锥形条也易于制造。因此,这是一种有前途的管插入物,将广泛用于增强湍流的传热。

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