• CN:11-2187/TH
  • ISSN:0577-6686

›› 2014, Vol. 50 ›› Issue (6): 141-149.

• 论文 • 上一篇    下一篇

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上游主管结构对水平T形管内冷热流体混合过程热波动的影响

卢涛;宋涛   

  1. 北京化工大学机电工程学院
  • 出版日期:2014-03-20 发布日期:2014-03-20

Influence of Upstream Structure on Thermal Fluctuation of Hot and Cold Fluids Mixing in Horizontal Tee Junction

LU Tao;SONG Tao   

  1. School of Mechanical and Electrical Engineering, Beijing University of Chemical Technology
  • Online:2014-03-20 Published:2014-03-20

摘要: 在Fluent平台上对上游主管分别为直管和弯管的两种水平T形管内冷热流体混合过程的热波动进行大涡模拟,获得了管道内部的速度和温度波动情况。并将量纲一时均温度与时均速度,量纲一方均根温度与方均根速度的数值结果和已有文献的试验结果进行对比,两者吻合较好,说明大涡模拟具有一定的可靠性和准确性。在数值模拟的基础上,对两种水平T形管的温度云图与速度矢量图,量纲一时均温度与时均速度和量纲一方均根温度与方均根速度分布进行对比。分析结果表明,受上游弯管产生的二次流的影响,弯管T形管的混合范围,温度与速度的波动幅度较上游为直管的直管T形管要大,说明上游弯管对混合过程及其温度与速度波动具有一定的增强作用。

关键词: 水平T形管;混合;大涡模拟

Abstract: Temperature and velocity fluctuations of hot and cold fluids mixing in horizontal T-junctions are numerically predicted using large-eddy simulation(LES) on FLUENT platform, the main pipe of T-junctions are with the upstream straight and elbow pipes respectively. Comparisons of the numerical results of normalized mean and root-mean square(RMS) temperature and velocity with available experiments are conducted; the numerical results are in good agreement with the experimental data, which shows that the large eddy simulation is not only reliable but also accurate. The simulated normalized mean and root-mean square(RMS) temperature and velocity, velocity vector and temperature contour of the two horizontal tees are compared. The results indicate that, due to the effect of the secondary flow which produced by upstream elbow pipe, the mixing region and the amplitude of temperature and velocity fluctuations of the tee junction with the upstream elbow pipe are larger than those with the upstream straight pipe, which shows that the upstream elbow pipe of the main pipe has significant influence on the mixing resulting in enhancing the temperature and velocity fluctuations.

Key words: horizontal tee junction;mixing;large-eddy simulation

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