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数值模拟二维喷管激波/湍流附面层干扰流动
引用本文:王国庆,梁德旺.数值模拟二维喷管激波/湍流附面层干扰流动[J].航空动力学报,2001,16(1):28-32.
作者姓名:王国庆  梁德旺
作者单位:南京航空航天大学 动力工程系,
基金项目:国家教育部“优秀跨世纪人才”基金资助项目,江苏省教委“青蓝工程”资助项目
摘    要:采用可压缩性修正两方程湍流模型 ,数值模拟了 3种不同波前马赫数的跨声速二维喷管内激波 /湍流附面层干扰流动 ,对流场中时均参数和脉动参数的计算结果与实验值进行了比较。结果表明可压缩性修正的两方程湍流模型准确地模拟了正激波 /湍流附面层干扰流动的时均参数和脉动参数 ,无分离和有分离的激波/湍流附面层干扰流动的基本规律。

关 键 词:可压流  湍流  激波边界层干扰  数值计算
文章编号:1000-8055(2001)01-0028-05
收稿时间:2000/3/20 0:00:00
修稿时间:2000年3月20日

Numerical Simulation of Shock/Turbulence Boundary Layer Interaction in Two-Dimensional Nozzles
WANG Guo-qing and LIANG De-wang.Numerical Simulation of Shock/Turbulence Boundary Layer Interaction in Two-Dimensional Nozzles[J].Journal of Aerospace Power,2001,16(1):28-32.
Authors:WANG Guo-qing and LIANG De-wang
Institution:2nd Dept., Naijing University of Aeronautics and Astronautics, Naijing210016, China;2nd Dept., Naijing University of Aeronautics and Astronautics, Naijing210016, China
Abstract:Four kinds of two-equation turbulence model (k-ε and k-ω model)with compressibility modification,including the dilation-dissipation term and pressure-dilation term respectively,coupling with a full Reynolds-averaged Navier-Stokes code were used to simulate numerically the shock/turbulent boundary layer interactions,which occur in three different two-dimensional transonic nozzles with different Mach numbers in front of the shock.The computational results of both the time-averaged parameters,such as the velocity (u,the velocity along the x-coordinate) and the pressure (P,along the lower wall surface),and the pulsating parameters like the turbulent kinetic energy (k) were compared with the experimental results.The computational density contour of large separation case was compared with the experimental density contour.It is shown that when the two-equation turbulence models with compressibility modification are used to simulate the shock/turbulent boundary layer interaction,they predicate not only the distribution of the time-averaged parameters and the pulsating parameters but also the basic feature of the flow with or without separation.
Keywords:compressible fluid  turbulence  shock/boundary layer interaction  numerical computation
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