• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2015, Vol. 51 ›› Issue (8): 204-212.doi: 10.3901/JME.2015.08.204

• 交叉与前沿 • 上一篇    

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小尺度圆柱涡流发生器的传热与流动特性

汪健生, 赵云俭   

  1. 天津大学中低温热能高效利用教育部重点实验室 天津 300072
  • 出版日期:2015-04-15 发布日期:2015-04-15

Heat Transfer and Flow Characteristics of Small Scale Circular Cylinder Vortex Generator

WANG Jiansheng, ZHAO Yunjian, ZHU Qiang   

  1. Key Laboratory of Medium-Low Temperature Thermal Energy Efficient Utilization of Ministry of Education, Tianjin University, Tianjin 300072
  • Online:2015-04-15 Published:2015-04-15

摘要: 应用大涡模拟对设置小尺度圆柱涡流发生器矩形槽道底面的流动与传热特性进行研究,小尺度圆柱涡流发生器置于湍流边界层内。分析不同间隙比对槽道流动结构、槽道底面Nusselt数、摩擦因数以及综合性能系数的影响。此外,采用大涡模拟所得槽道计算结果与前人直接数值模拟结果一致性很好,验证所采用数值方法的准确性与可靠性。研究结果表明,与未设置小尺度圆柱涡流发生器的矩形槽道相比,设置小尺度圆柱涡流发生器槽道底面的换热性能可以得到显著提高,同时其流动阻力的增加亦得到有效抑制。当间隙比为2.0时,槽道底面换热性能最佳,其Nusselt数可提高18.76%;而当间隙比为0.5时,槽道底面减阻效果最佳,摩擦因数可减小3.77%。

关键词: 大涡模拟, 间隙比, 涡流发生器, 综合性能系数

Abstract: The flow and heat characteristics of the rectangle channel bottom with a small-scale circular cylinder vortex generator are numerically investigated by large eddy simulation(LES). The vortex generator is located in the turbulence boundary layer. The influence of gap ratio on the flow structure, the Nusselt number and frication coefficient of the channel bottom, and the synthesis performance coefficient is probed. In addition, the numerical channel results by applying LES are in good agreement with the precious results by direct numerical simulation, which verifies the accuracy and reliability of present numerical method. The numerical results indicate that the heat transfer performance at the bottom of channel with small-scale circular cylinder vortex generator is significantly improved and the augmentation of flow resistance is effectively suppressed, compared to that of channel without small-scale circular cylinder vortex generator. The optimal heat transfer performance is obtained when the gap ratio is 2.0, and the Nusselt number is increased by 18.76%. When the gap ratio is 0.5, the drag reduction is the most significant of considered cases and the frication coefficient is reduced by 3.77%

Key words: gap ratio, large eddy simulation, synthesis performance coefficient, vortex generator

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