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Numerical study of flow patterns and heat transfer in mini twisted oval tubes

机译:小型椭圆形扭曲管内流型和传热的数值研究

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摘要

Flow patterns and heat transfer inside mini twisted oval tubes (TOTs) heated by constant-temperature walls are numerically investigated. Different confingurations of tubes are simulated using water as the working fluid with temperature-dependent thermo-physical properties at Reynolds numbers ranging between 500 and 1100. After validating the numerical method with the published correlations and available experimental results, the performance of TOTs is compared to a smooth circular tube. The overall performance of TOTs is evaluated by investigating the thermal-hydraulic performance and the results are analyzed in terms of the field synergy principle and entropy generation. Enhanced heat transfer performance for TOTs is observed at the expense of a higher pressure drop. Additionally, the secondary flow generated by the tube-wall twist is concluded to play a critical role in the augmentation of convective heat transfer, and consequently, better heat transfer performance. It is also observed that the improvement of synergy between velocity and temperature gradient and lower irreversibility cause heat transfer enhancement for TOTs.
机译:数值研究了由恒温壁加热的微型扭曲椭圆管(TOT)内部的流动模式和传热。使用水作为工作流体,以雷诺数在500到1100之间的温度依赖于热物理性质的工作流体,模拟了不同的配管配置。用已发表的相关性和可用的实验结果验证了数值方法后,将TOT的性能与光滑的圆形管。通过研究热工水力性能来评估TOT的整体性能,并根据场协同原理和熵产生对结果进行分析。观察到TOT的传热性能增强,但以更高的压降为代价。另外,由管壁扭曲产生的二次流被认为在对流传热的增加中起着关键作用,因此,具有更好的传热性能。还观察到,速度和温度梯度之间协同作用的改善以及较低的不可逆性会导致TOT的热传递增强。

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