Numerical Prediction of a Turbulent Flow with Double Annular Jets for Different Reynolds Numbers

被引:0
|
作者
Ali, Feraoun [1 ]
Habib, Merouane [1 ]
Rachid, Sahnoun [1 ]
机构
[1] Univ Mascara, Fac Sci & Technol, Dept Mech Engn, Mascara 29000, Algeria
关键词
annular jets double jet annular flow burner; jet turbulent flow; FIELD;
D O I
10.18280/ijht.410521
中图分类号
O414.1 [热力学];
学科分类号
摘要
This research undertakes a numerical investigation of an axisymmetric double-jet semi-confined annular flow produced by a burner. The endeavor aims to thoroughly decipher the behavior of these turbulent flows within a double annular jet , with a focus on characterizing the mixing and recirculation regions. Analyses of the annular jet were conducted for three distinct Reynolds numbers (6683 , 8874 , and 11065). Numerical simulations were performed using a computational fluid dynamics (CFD) calculation code , employing two turbulence models-k-epsilon and SST k-omega. The governing differential equations , discretized for the flow , were solved via the finite volume method , utilizing the semi-implicit method algorithm for pressure-linked equations. Findings revealed the existence of three recirculation zones separated by the annular jets. The first , a minute zone , is situated between the two annular jets. The second , a medium-sized zone , resides just behind the nozzle near the injection axis , below the pri mary jet. The third , a large zone , is positioned near the upper wall of the combustion chamber. It was observed that the size of the initial small recirculation zone exhibited negligible variation with changes in the Reynolds number. However , the second medium-sized zone experienced notable alterations with the Reynolds number. The third large zone generated an extensive toroidal vortex at higher Reynolds numbers. These recirculation zones offer potential for control to optimize fuel-air mixing , aiming to achieve near-perfect combustion while minimizing pollutant emissions. The numerical simulation results generally exhibited strong agreement with experimental findings.
引用
收藏
页码:1309 / 1316
页数:8
相关论文
共 50 条
  • [41] TURBULENT FLOW OVER A FACING STEP AT SEVERAL REYNOLDS NUMBERS
    Jimenez-Bernal, Jose A.
    Juarez-Montalvo, Adan
    Gutierrez-Torres, Claudia del C.
    Barbosa Saldana, Juan G.
    Rodriguez-Jimenez, Luis F.
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2011, VOL 6, PTS A AND B, 2012, : 731 - 733
  • [42] The relaminarization mechanisms of turbulent channel flow at low Reynolds numbers
    Iida, O
    Nagano, Y
    FLOW TURBULENCE AND COMBUSTION, 1998, 60 (02) : 193 - 213
  • [43] Visualization of turbulent flow around a sphere at subcritical reynolds numbers
    Y. I. Jang
    S. J. Lee
    Journal of Visualization, 2007, 10 : 359 - 366
  • [44] Persistence of turbulent flow in microchannels at very low Reynolds numbers
    Peter Lammers
    Jovan Jovanović
    Antonio Delgado
    Microfluidics and Nanofluidics, 2011, 11 : 129 - 136
  • [45] Visualization of turbulent flow around a sphere at subcritical Reynolds numbers
    Jang, Y. I.
    Lee, S. J.
    JOURNAL OF VISUALIZATION, 2007, 10 (04) : 359 - 366
  • [46] Spectral Characteristics of Turbulent Velocity Fluctuations at Different Reynolds Numbers
    E. V. Teodorovich
    Fluid Dynamics, 2018, 53 : 852 - 861
  • [47] Spectral Characteristics of Turbulent Velocity Fluctuations at Different Reynolds Numbers
    Teodorovich, E. V.
    FLUID DYNAMICS, 2018, 53 (06) : 852 - 861
  • [48] A numerical study of the side-wall effects on turbulent bands in channel flow at transitional Reynolds numbers
    Wu, Haoyang
    Song, Baofang
    COMPUTERS & FLUIDS, 2022, 240
  • [49] Numerical prediction of unsteady compressible turbulent coaxial jets
    Reynier, P
    Minh, HH
    COMPUTERS & FLUIDS, 1998, 27 (02) : 239 - 254
  • [50] On the dynamic behaviors of freely falling annular disks at different Reynolds numbers
    Bi, Dianfang
    Sun, Tiezhi
    Wei, Yingjie
    Huang, Xudong
    PHYSICS OF FLUIDS, 2022, 34 (04)