Direct Numerical Simulation of a Reflected-Shock-Wave/Turbulent-Boundary-Layer Interaction

被引:65
|
作者
Priebe, S. [1 ]
Wu, A. [1 ]
Martin, M. P. [1 ]
机构
[1] Princeton Univ, Dept Mech & Aerosp Engn, Princeton, NJ 08544 USA
关键词
COMPRESSIBLE TURBULENCE; WAVE; SEPARATION; RAMP;
D O I
10.2514/1.38821
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
A direct numerical simulation of a reflected-shock-wave/turbulent-boundary-layer interaction at Mach 2.9 and Re-theta = 2300 with a How deflection through the incident shock of 12 deg is presented. A modified weighted essentially nonoscillatory method is used for the spatial discretization of the inviscid fluxes. The numerical scheme has previously been validated in the direct numerical simulation of a compression-ramp interaction against experiments at matching conditions. The flowfield for the present simulation is visualized using a numerical schlieren technique, and a movie of the flow reveals the unsteady shock motion. From the wall-pressure signal in the interaction region and pressure measurements in the freestream, the characteristic low frequency of the shock motion is inferred and found to agree with a scaling previously proposed. The evolution of the mean and fluctuating flow quantities through the interaction is studied. It is observed that the turbulence levels are greatly amplified in the downstream flow and that significant departures from the strong Reynolds analogy occur.
引用
收藏
页码:1173 / 1185
页数:13
相关论文
共 50 条
  • [41] Numerical simulation of ramp induced shock wave/boundary-layer interaction in turbulent flow
    Asmelash, H. A.
    Martis, R. R.
    Singh, A.
    AERONAUTICAL JOURNAL, 2013, 117 (1192): : 629 - 638
  • [42] THE INTERACTION OF A REFLECTED SHOCK WAVE WITH THE BOUNDARY LAYER IN A SHOCK TUBE
    MARK, H
    JOURNAL OF THE AERONAUTICAL SCIENCES, 1957, 24 (04): : 304 - 306
  • [44] Investigation of Three-Dimensional Shock Wave/Turbulent-Boundary-Layer Interaction Initiated by a Single Fin
    Fang, Jian
    Yao, Yufeng
    Zheltovodov, Alexandr A.
    Lu, Lipeng
    AIAA JOURNAL, 2017, 55 (02) : 509 - 523
  • [45] TURBULENT-BOUNDARY-LAYER DEVELOPMENT IN AN ADVERSE PRESSURE GRADIENT AFTER AN INTERACTION WITH A NORMAL SHOCK WAVE.
    Schofield, W.H.
    Journal of Fluid Mechanics, 1985, 154 : 43 - 62
  • [46] Numerical simulation on ignition with shock tube - Effect of reflected shock wave - boundary layer at adiabatic wall interaction on ignition
    Asahara, Makoto
    Machida, Takuya
    Yamada, Eisuke
    Hayashi, A. Koichi
    Tsuboi, Nobuyuki
    SCIENCE AND TECHNOLOGY OF ENERGETIC MATERIALS, 2014, 75 (1-2) : 50 - 58
  • [47] Numerical simulation on ignition with shock tube - Effect of reflected shock wave - Boundary layer at adiabatic wall interaction on ignition
    Aoyama Gakuin University, 5-10-1, Fuchinobe, chuo, Sagamihara, Kanagawa 252-5258, Japan
    Asahara, M. (asahara@me.aoyama.ac.jp), 1600, Japan Explosives Society (75): : 1 - 2
  • [48] Effect of freestream noise on shock-wave/turbulent-boundary-layer interactions
    Weiss, Julien
    Chokani, Ndaona
    AIAA JOURNAL, 2007, 45 (09) : 2352 - 2355
  • [49] Direct numerical simulation of impinging shock wave/turbulent boundary layer interactions in a supersonic expansion corner
    Tong F.
    Sun D.
    Yuan X.
    Li X.
    Li, Xinliang (lixl@imech.ac.cn), 1600, Chinese Society of Astronautics (41):
  • [50] Numerical Simulation of the Interaction Shock / Turbulent Boundary
    Gouidmi, H.
    Benderradji, R.
    Beghidja, A.
    BEHAVIOUR OF MATERIALS, 2013, 550 : 171 - 178