• 其他栏目

    张靖周

    • 教授
    • 学历:南京航空学院
    • 学位:工学博士学位
    • 所在单位:能源与动力学院
    • 电子邮箱:

    访问量:

    开通时间:..

    最后更新时间:..

    Experimental of chevron nozzle jet impingement heat transfer on flat targeting surface

    点击次数:

    所属单位:能源与动力学院

    发表刊物:Hangkong Xuebao

    摘要:An experimental investigation of chevron nozzle jet impingement heat transfer on a flat surface was performed by using the infrared camera. The tests were conducted with typical Reynolds numbers ranging from 5 000 to 20 000 and dimensionless nozzle-to-surface distances ranging from 1 to 8. A comparison with the round nozzle jet was made, and the geometric effects of the chevron nozzle were analyzed. The results show that the chevron nozzle plays a significant role in improving jet impingement heat transfer. At small impinging distances, the distribution of local convective heat transfer produced by the chevron-jet shows an obvious lobe-shaped feature in the vicinity of the impinging stagnation point. When the dimensionless nozzle-to-surface distance is beyond 4, distribution of local convective heat transfer produced by the chevron-jet is similar to that by the round jet. The averaged Nusselt number of the chevron nozzle jet area of either 2 or 4 times of the nozzle diameter for average achieves 15%-30% increase compared to that of the round nozzle jet, and the increase depends on the jet Reynolds number and dimensionless nozzle-to-surface distance. For the current geometric parameters of the chevron nozzle, it is found that the 6-chevron nozzle with a chevron length-to-nozzle diameter of 0.6 can produce more favorable heat transfer enhancement. © 2018, Press of Chinese Journal of Aeronautics. All right reserved.

    ISSN号:1000-6893

    是否译文:

    发表时间:2018-03-25

    合写作者:Lyu, Yuanwei,Wang, Boyan,谭晓茗

    通讯作者:张靖周