An analysis of flow and screech tone from supersonic axisymmetric jet at the initial stage

被引:0
|
作者
Cheol Lee
Duck Joo Lee
机构
[1] Advanced Institute of Science and Technology,Department of Mechanical Engineering Division of Aerospace Engineering Korea
关键词
Supersonic jet noise; Screech tone; Shock cell; Instability wave; Computational aeroacoustics (CAA);
D O I
暂无
中图分类号
学科分类号
摘要
The screech tone from jet Mach number 1.18 is numerically calculated from the initial stage. A fourth-order optimized compact scheme and fourth-order Runge-Kutta method are used to solve the 2D axisymmetric Euler equation. Pulse jet problem with Mach number 1.56 is solved to validate the present method. Not only two important components of generating screech tones, shock cell structure and vortices, but also the transient behavior of the screech tone are investigated at the initial stage. Additional time is necessary to generate periodic screech tone after formation of shock cell structures. As time goes on, the location of the vortex generation becomes fixed near the nozzle exit, which is farther downstream initially, and the screech tone becomes periodic. The FFT results of three different periods are compared. It is observed that the component of lower frequency is dominant at the beginning, and the component of the screech tone becomes dominant as time increases. It can be concluded that the screech tones can be also numerically reproduced at the initial stage with the present inviscid method.
引用
收藏
相关论文
共 50 条
  • [41] Analysis on the supersonic gas jet submerged in liquid cross flow
    Dong, Ping
    Fu, Benshuai
    Cheng, Dong
    OCEAN ENGINEERING, 2022, 258
  • [42] Numerical analysis of supersonic jet flow field in steam ejector
    Li, Sufen
    Shen, Shengqiang
    Liu, Lan
    Abudula, Abuliti
    Chung-kuo Tsao Chih/China Pulp and Paper, 2001, 20 (06): : 33 - 36
  • [43] Analysis on the supersonic gas jet submerged in liquid cross flow
    Dong, Ping
    Fu, Benshuai
    Cheng, Dong
    Ocean Engineering, 2022, 258
  • [44] Analysis of the axisymmetric co-axial jet flow structure dominated by the inner jet
    Zhou, Hua
    Xia, Nan
    Hangkong Dongli Xuebao/Journal of Aerospace Power, 2009, 24 (04): : 746 - 752
  • [45] A numerical analysis of transonic/supersonic flows in the axisymmetric main nozzle of an air-jet loom
    Oh, TH
    Kim, SD
    Song, DJ
    TEXTILE RESEARCH JOURNAL, 2001, 71 (09) : 783 - 790
  • [46] FLOW OF A JET FROM A BODY OPPOSING A SUPERSONIC FREE STREAM
    FINLEY, PJ
    JOURNAL OF FLUID MECHANICS, 1966, 26 : 337 - &
  • [47] Numerical analysis of supersonic viscous gas flow past axisymmetric nonpointed bodies
    Ivanov V.A.
    Peigin S.V.
    Timchenko S.V.
    Fluid Dynamics, 1999, 34 (1) : 91 - 99
  • [48] APPLICABILITY OF AXISYMMETRIC ANALYSIS IN PREDICTING SUPERSONIC-FLOW THROUGH ANNULAR CASCADES
    FRUEHAUF, HH
    JOURNAL OF ENGINEERING FOR POWER-TRANSACTIONS OF THE ASME, 1977, 99 (01): : 115 - 120
  • [49] Three-Component Turbulence Measurements and Analysis of a Supersonic, Axisymmetric Base Flow
    Kirchner, Branden M.
    Favale, James V.
    Elliott, Gregory S.
    Dutton, J. Craig
    AIAA JOURNAL, 2019, 57 (06) : 2496 - 2512
  • [50] Transformation of spectra of refraction index fluctuations in axisymmetric supersonic jet with the increase in the distance from the nozzle
    Marakasov, Dmitrii
    Sazanovich, Valentina
    Tsvyk, Ruvim
    Shesternin, Andrei
    XXXIII SIBERIAN THERMOPHYSICAL SEMINAR (STS-33), 2017, 115