Deflection, spillage, and flow separation aspects of a rectangular supersonic jet grazing past a flat wall

被引:0
|
作者
Manikanta, T. V. S. [1 ]
Sridhar, B. T. N. [1 ]
机构
[1] Anna Univ, Madras Inst Technol, Dept Aerosp Engn, Chennai 600044, Tamil Nadu, India
关键词
Aft-deck; CFD; Compressible flow; Flow separation; Rectangular nozzle; NOZZLE; DECAY;
D O I
10.1007/s40430-025-05446-8
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
An investigation was conducted on a rectangular supersonic jet (Mach 1.8) grazing past a flat wall to study, separation, spillage, and entrainment aspects of the flow over the wall and the deflection of the jet at the wall trailing edge (WTE). The work presented in this paper is of relevance to exhaust flows over an aft-deck of rectangular nozzle and useful in thrust vectoring research. The investigation was conducted by varying the flat wall length (L-w) as 0.5D(h),1D(h),2D(h),4D(h), and 8D(h), where D-h was the hydraulic diameter of the nozzle rectangular exit with aspect ratio 2). Numerical simulations at three nozzle pressure ratios, i.e., 4, 6, and 8, with a set of experiments on oil flow visualization and wall pressure distributions along the length of the flat wall were carried out. The results of the present investigation indicate that for L-w>2D(h), both spillage and entrainment of the flow recur along the wall length and the locations at which they occur depend upon the expansion conditions at the nozzle exit. The jet flow leaving the WTE contains asymmetric total pressure profiles about the nozzle extended centerline, and the strong cross-flow pressure gradients between the jet flow leaving WTE and the surrounding flow affect the quantum and direction of the jet deflection. The change in L-w at over-expansion conditions does not significantly affect flow separation point on the mid-width line of the wall, whereas at under-expansion conditions increase in L-w from 2D(h) to 4D(h) shifts the separation point toward WTE.
引用
收藏
页数:20
相关论文
共 50 条
  • [31] Numerical analysis of a supersonic rarefied gas flow past a flat plate
    Aoki, K
    Kanba, K
    Takata, S
    PHYSICS OF FLUIDS, 1997, 9 (04) : 1144 - 1161
  • [32] Numerical study on the interaction of supersonic flow past a wedge and free jet
    Soga, Takeo
    Yamanaka, Kouji
    Memoirs of the Faculty of Engineering, Nagoya University, 1991, 43 (01): : 121 - 134
  • [33] Flow Characteristics and Spillage Mechanisms of Wall-Mounted and Jet-Isolated Range Hoods
    Chen, Jia-Kun
    Huang, Rong Fung
    Dai, Guan-Zhong
    JOURNAL OF OCCUPATIONAL AND ENVIRONMENTAL HYGIENE, 2010, 7 (11) : 651 - 661
  • [34] Experimental and numerical investigation of jet injection in a wall bounded supersonic flow
    Ratan, J.
    Jagadeesh, G.
    SHOCK WAVES, VOL 1, PROCEEDINGS, 2009, : 601 - 606
  • [35] Transverse Injection of a Jet from the Surface of a Flat Plate into the Supersonic Flow Over it
    Volkov K.N.
    Emel’yanov V.N.
    Yakovchuk M.S.
    Journal of Engineering Physics and Thermophysics, 2017, 90 (6) : 1439 - 1444
  • [36] EXPERIMENTS ON SUPERSONIC FLOW PAST BODIES OF REVOLUTION WITH ANNULAR GAPS OF RECTANGULAR SECTION
    JOHANNESEN, NH
    PHILOSOPHICAL MAGAZINE, 1955, 46 (372): : 31 - &
  • [37] Experimental Investigation of the Flow Structure of the Supersonic Jet Impinging on an Inclined Flat Obstacle
    Kundasev, S. G.
    Kiselev, N. P.
    Zapryagaev, V. I.
    INTERNATIONAL CONFERENCE ON THE METHODS OF AEROPHYSICAL RESEARCH (ICMAR 2016), 2016, 1770
  • [38] Study of supersonic flow separation induced by a side jet and its control
    Kovar, A.
    Schuelein, E.
    NEW RESULTS IN NUMERICAL AND EXPERIMENTAL FLUID MECHANICS V, 2006, 92 : 176 - +
  • [39] FLOW PAST WALL-MOUNTED RECTANGULAR AND ROUND-NOSED RECTANGULAR BODIES
    RAMAMURTHY, AS
    TIM, US
    RAO, MVJ
    JOURNAL OF ENGINEERING MECHANICS-ASCE, 1987, 113 (10): : 1611 - 1616
  • [40] An Inverse Problem for Steady Supersonic Potential Flow Past a Bending Wall
    Li, Ningning
    Zhang, Yongqian
    JOURNAL OF MATHEMATICAL FLUID MECHANICS, 2025, 27 (01)