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多股自耦合射流相干流动和换热特性数值研究

谭晓茗 张靖周

谭晓茗, 张靖周. 多股自耦合射流相干流动和换热特性数值研究[J]. 航空动力学报, 2008, 23(4): 642-646.
引用本文: 谭晓茗, 张靖周. 多股自耦合射流相干流动和换热特性数值研究[J]. 航空动力学报, 2008, 23(4): 642-646.
TAN Xiao-ming, ZHANG Jing-zhou. Numerical study on the flow and heat transfer characteristics of coupled synthetic jets[J]. Journal of Aerospace Power, 2008, 23(4): 642-646.
Citation: TAN Xiao-ming, ZHANG Jing-zhou. Numerical study on the flow and heat transfer characteristics of coupled synthetic jets[J]. Journal of Aerospace Power, 2008, 23(4): 642-646.

多股自耦合射流相干流动和换热特性数值研究

基金项目: 国家自然科学基金资助项目(50276028)

Numerical study on the flow and heat transfer characteristics of coupled synthetic jets

  • 摘要: 采用数值模拟的方法对多股自耦合射流在相干条件下的流动和换热特性进行了研究.研究结果表明:三股自耦合射流都在出口附近耦合成一股射流向下游运动,两侧的射流受到中间一股射流的卷吸融合在一起,融合后仍然是一股沿中心线对称的自耦合射流.在短轴中心截面自耦合射流型面较宽,射流喷出后在下游的扩展角度大,而长轴中心截面射流的型面较窄,扩展角度较小.在冲击靶板上,整个冲击区域呈现出中心温度最低的近似圆形的对称性分布,对流换热系数曲线呈现出中心对称的波峰分布形状,表明自耦合射流驻点区换热最强.对流换热系数沿靶板不同方向的分布趋势基本保持一致.

     

  • [1] Smith B L,Glezer A.The formation and evolution of synthetic jets[J].Physics of Fluids,1998,10(9):2281-2297.
    [2] Smith B L,Glezer A.Vectoring and small-scale motions effected in free shear flows using synthetic jet actuators[R].AIAA Paper 97-0213,1997.
    [3] Goldstein D B.Two-dimensional synthetic jet simulation[R].AIAA Paper,2000,2000-0406.
    [4] Catlynne E,Rumiggny N,Amitay M.Virtual aero-shaping of a clark-Y airfoil using synthetic jet actuators[R].AIAA Paper2001-0732,2001.
    [5] Mallinson S G.The operation and application of synthetic jet actuators[R].AIAA Paper 2000-2402,2000.
    [6] Honohan A M,Trautman M,Glezer A.Modification of the aerodynamic characteristics of bluff bodies using fluidic actuators[R].AIAA Paper 97-2004,1997.
    [7] Mahalingam R,Rumigny N,Glezer A.Thermal management using synthetic jet ejectors[J].Transactions on Components and Packaging Technologis,2004,27 (3):439-444.
    [8] 罗小兵,李志信,过增元.一种流体驱动器一合成喷驱动器[J].仪器仪表学报,2000,21(5):504-507.LUO Xiaobing,LI Zhixin,GUO Zengyuan.A kind of fluid actuator-synthetic jet actuator[J].Chinese Journal of Scientific Instrument,2000,21(5):504-507.
    [9] 罗振兵,朱伯鹏,夏智勋.合成射流激励器射流矢量的影响[J].推进技术,2004,25(5):405-410.LUO Zhenbing,ZHU Bopeng,XIA Zhixun.Jet vectoring using synthetic jet actuators[J].Journal of Propulsion Technology,2004,25(5):405-410.
    [10] 谭晓茗,张靖周,自耦合射流流动特性和相关参数影响规律的数值研究[J].航空动力学报,2005,20(5):836-840.TAN Xiaoming,ZHANG Jingzhou.Numerical investigation of influence factors and flow characteristics for a synthetic jet[J].Journal of Aerospace Power,2005,20(5):836-840.
    [11] 李念,张元垄,徐惊雷.自耦合射流对平行主射流的矢量偏转实验研究[J].推进技术,2005,26(3):248-251.LI Nian,ZHANG Kunyuan,XU Jinglei.Experimental investigation for primary flow vectoring using parallel synthetic jet[J].Journal of Propulsion Technology,2005,26(3):248-251.
    [12] Yakhot V,Orsszag S A.Development of turbulence models for shear flows by a double expansion technique[J].Phys Fluids A,1992,4(7):1510-1520.
    [13] 罗小兵,李志信,过增元.不可压缩合成喷流场的数值模拟[J].工程热物理学报,2001,22()S1:56-58.LUO Xiaobing,LI Zhixin,GUO Zengyuan.Numerical simulations on flow field of incompressible synthetic jet[J].Journal of Engineering Thermophysics,2001,22(S1):56-58.
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出版历程
  • 收稿日期:  2007-04-17
  • 修回日期:  2007-07-18
  • 刊出日期:  2008-04-28

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