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幂律流体撞击射流破碎机理的实验

李建军 夏振炎 田砚

李建军, 夏振炎, 田砚. 幂律流体撞击射流破碎机理的实验[J]. 航空动力学报, 2015, 30(7): 1752-1758. doi: 10.13224/j.cnki.jasp.2015.07.029
引用本文: 李建军, 夏振炎, 田砚. 幂律流体撞击射流破碎机理的实验[J]. 航空动力学报, 2015, 30(7): 1752-1758. doi: 10.13224/j.cnki.jasp.2015.07.029
LI Jian-jun, XIA Zhen-yan, TIAN Yan. Experiment on breakup mechanism of impinging jet of power-law liquid[J]. Journal of Aerospace Power, 2015, 30(7): 1752-1758. doi: 10.13224/j.cnki.jasp.2015.07.029
Citation: LI Jian-jun, XIA Zhen-yan, TIAN Yan. Experiment on breakup mechanism of impinging jet of power-law liquid[J]. Journal of Aerospace Power, 2015, 30(7): 1752-1758. doi: 10.13224/j.cnki.jasp.2015.07.029

幂律流体撞击射流破碎机理的实验

doi: 10.13224/j.cnki.jasp.2015.07.029
基金项目: 

国家自然科学基金(11172205,11372219)

详细信息
    作者简介:

    李建军(1988-),男,山东昌邑人,硕士生,主要从事多相流实验与数值模拟方面的研究.

    通讯作者:

    夏振炎(1969-),男,河北辛集人,副教授,博士,主要从事实验流体力学、湍流及流动稳定性等方面的研究.xia_zhy@hotmail.com

  • 中图分类号: V439;O359+1

Experiment on breakup mechanism of impinging jet of power-law liquid

  • 摘要: 通过自行研制的撞击射流系统,采用高速摄像技术,对4种不同卡波姆质量分数剪切变稀的卡波姆凝胶非牛顿幂律流体在不同射流条件下撞击液膜的破碎模式、喷雾锥角、破碎长度进行实验与分析.结果表明:不同流变特性的幂律流体出现的破碎模式不同,黏度越高,破碎模式越复杂;4种卡波姆凝胶在韦伯数为8000左右时,达到完全发展模式,并在韦伯数为8000左右时表现出相似的破碎特性;随着韦伯数的增大,喷雾锥角逐渐增大并趋于稳定,稳定值小于撞击角度,当卡波姆质量分数增大时,最大喷雾锥角逐渐减小,最终收敛于60°;随着韦伯数的增大,4种卡波姆凝胶的破碎长度先小幅变大然后减小,理论结果与实验结果整体趋势相似.

     

  • [1] Savart F.Mémoire sur la constitution des veines liquides lancées par des orifices circulaires en mince paroi[J]. Annales de Chimie et de Physique,1833,53(337):257-310.
    [2] Heidmann M F,Priem R J,HumphreyJ C.A study of sprays formed by two impinging jets[R].National Advisory Committee for Aeronautics,NACA-TN-3835,1957.
    [3] Dombrowski N,Hooper P C.A study of the sprays formed by impinging jets in laminar and turbulent flow[J].Journal of Fluid Mechanics,1964,18(3):392-400.
    [4] Dombrowsk N,Hasson D.Some aspects of liquid flow through fan spray nozzles[J].Chemical Engineering Science,1960,12(1):35-50.
    [5] Lai W H,Huang W,Jiang T L.Characteristic study on the like-doublet impinging jets atomization[J].Atomization Spray,1999,9(3):277-289.
    [6] Huang J C P.The breakup of axisymmetric liquid sheets[J].Journal of Fluid Mechanics,1970,43(2):305-319.
    [7] 伊吉明,白富强,杜青,等.撞击式射流速度特性及液滴粒度特性的试验[J].内燃机学报,2013,31(6):519-524. YI Jiming,BAI Fuqiang,DU Qing,et al.Experiment on velocity and size distribution of droplets produced by an impinging liquid jet[J]. Transactions of CSICE,2013,31(6):519-524.(in Chinese)
    [8] Chojnacki K T,Feikema D A.Atomization studies of gelled liquids[R].AIAA 94-2773,1994.
    [9] Chojnacki K T,Feikema D A.Atomization studies of gelled bipropellant simulants using planar laser induced fluorescence[R].AIAA 95-2423,1995.
    [10] Von Kampen J,Alberio F,Ciezki H K.Spray and combustion characteristics of aluminized gelled fuels with an impinging jet injector[J].Aerospace Science and Technology,2007,11(1):77-83.
    [11] Yang L,Fu Q,Qu Y,et al.Breakup of a power-law liquid sheet formed by an impinging jet injector[J].International Journal of Multiphase Flow,2012,39:37-44.
    [12] Jayaprakash N,Chakravarthy S R.Impingement atomization of gel fuels[R].AIAA-2003-316,2003.
    [13] Baek G,Kim S,Han J,et al.Atomization characteristics of impinging jets of gel material containing nanoparticles[J].Journal of Non-Newtonian Fluid Mechanics,2011,166(21/22):1272-1285.
    [14] 曹建明.喷雾学[M].北京:机械工业出版社,2005.
    [15] Dodge D W,Metzner A B.Turbulent flow of non-Newtonian systems[J].AIChE Journal,1959,5(2):189-204.
    [16] Metzner A B,Reed J C.Flow of non-Newtonian fluids-correlation of the laminar,transition,and turbulent-flow regions[J].AIChE Journal,1955,1(4):434-440.
    [17] Lee J K.Breakup characteristics of gelled propellant simulants with various gelling agent contents[J].Journal of Thermal Science,2010,19(6):545-552.
    [18] Ryan H M,Anderson W E,Pal S.Atomization characteristics of impinging liquid jets[J].Journal of Propulsion and Power,1995,11(1):135-145.
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出版历程
  • 收稿日期:  2014-09-11
  • 刊出日期:  2015-07-28

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