• CN:11-2187/TH
  • ISSN:0577-6686

›› 2010, Vol. 46 ›› Issue (6): 144-148.

• 论文 • 上一篇    下一篇

非稳态冲击射流强化传热试验研究

周静伟;杨兴贤;耿丽萍;王玉刚   

  1. 中国计量学院计量测试工程学院
  • 发布日期:2010-03-20

Experimental Investigation on Heat Transfer Augmentation with Unsteady Impinging Jet

ZHOU Jingwei;YANG Xingxian;GENG Liping;WANG Yugang   

  1. College of Metrology and Measurement Engineering, China Jiliang University
  • Published:2010-03-20

摘要: 利用一个特殊的质量流量控制装置产生波形和频率可调的周期性变化非稳态射流,进行非稳态射流冲击换热性能的试验研究。研究采用正弦、三角形和矩形三种典型的周期性波形,频率变化范围为1.25~40 Hz,其传热性能用传热强化系数(定义为相同流量下非稳态和稳态射流冲击时的努塞尔数之比)来描述。研究表明,在频率较低时非稳态的射流冲击换热效果反而没有稳定射流冲击时好,但当频率超过一阈值时,其强化传热的优势逐渐明显。传热强化的效果还与射流信号的变化规律有关,有阶跃变化的矩形射流强化传热最为有效,在频率为40 Hz时传热强化效果可达30%以上,但对于信号变化缓和的正弦波和三角形波而言,即使在较高的频率下,它们对传热的强化作用也是非常有限的。

关键词: 波形, 传热强化, 非稳态冲击射流, 频率

Abstract: An experimental investigation is performed to study the effect of unsteady impinging jet on convective heat transfer. Periodical unsteady flows with different shapes and frequencies are generated by a mass flow rate control system. Experiments are carried out for three typical periodical flows, namely sinusoidal, triangular and rectangular flows, at frequencies from 1.25 to 40 Hz. By means of an enhancement coefficient (Nusselt number of the unsteady flow over that for the steady flow at same time-averaged flow rate) the heat transfer performance is characterized. Although convective heat transfer rate is less effective by imposing a lower frequency unsteady jet, heat transfer augmentation occurs above a threshold frequency. Experiments show that the enhancement in heat transfer is also highly dependent on the signal wave shape. The most effective unsteadiness of the three signals is the rectangular flow which has a step change in signal function itself, and the maximum increase in heat transfer is of the order over 30% at a frequency of 40 Hz. Unfortunately, for the sinusoidal and triangular flows without step change in signals, the heat transfer enhancement is very limited even at a frequency of 40 Hz.

Key words: Frequency, Heat transfer augmentation, Unsteady impinging jet, Wave shape

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