Combustion dynamics of turbulent swirling flames

被引:156
|
作者
Külsheimer, C [1 ]
Büchner, H [1 ]
机构
[1] Univ Karlsruhe, Lehrstuhl & Bereich Verbrennungstech Engler Bunte, Karlsruhe, Germany
关键词
D O I
10.1016/S0010-2180(02)00394-2
中图分类号
O414.1 [热力学];
学科分类号
摘要
In the present paper the influence of a periodic excitation of the mass flow rate, varied in frequency and in amplitude, on the isothermal flow field and on the flame characteristics of swirl burners with different swirl intensities S-0,S-th is investigated. At first the fluid dynamical conditions for the formation of ring-vortex structures in the burner near flow field are determined. The results indicate that the minimum level of excitation Of the mass flow rate for vortex formation decreases hyperbolically with increasing frequency of pulsation and characteristic Strouhal number, respectively. In further studies, the dynamical behavior of lean-premixed swirl flames is investigated, whereas the fuel gas/air mixture mass flow rate at the burner exit was modulated sinusoidally. The dynamical behavior of the investigated flames is found to be dominated by two different effects in certain frequency ranges: For moderate pulsation frequencies (f(puls) less than or equal to 50 Hz) the detected periodic heat release rate of pulsated, premixed swirl flames is dominated by an effect that inhibits the strong entrainment of ambient medium in comparison with the corresponding quasi steady-state swirl flames. With increasing frequency (f(puls) greater than or equal to 50 Hz) this effect will be overlaid by the periodical formation of ring-vortices entraining additional ambient medium and interfering with the combustion process. The physical understanding of the frequency-dependent flame dynamics (flame transfer function) on periodic disturbances is indispensable for the prediction of the formation of combustion-driven oscillations that occur in technical combustion systems (e.g., gas turbines, industrial combustors). It is also evident for the development of methods to prevent or suppress periodic combustion instabilities. The results of the flame transfer measurements presented in this paper will lead to a basic understanding of the formation and reaction of large-scale coherent vortex structures in turbulent flames, that are ell known as drivers of combustion instabilities. (C) 2002 by The Combustion Institute.
引用
收藏
页码:70 / 84
页数:15
相关论文
共 50 条
  • [1] Transient and limit cycle combustion dynamics analysis of turbulent premixed swirling flames
    Palies, Paul
    Ilak, Milos
    Cheng, Robert
    [J]. JOURNAL OF FLUID MECHANICS, 2017, 830 : 681 - 707
  • [2] The combined dynamics of swirler and turbulent premixed swirling flames
    Palies, P.
    Durox, D.
    Schuller, T.
    Candel, S.
    [J]. COMBUSTION AND FLAME, 2010, 157 (09) : 1698 - 1717
  • [3] Dynamics of Swirling Flames
    Candel, Sebastien
    Durox, Daniel
    Schuller, Thierry
    Bourgouin, Jean-Francois
    Moeck, Jonas P.
    [J]. ANNUAL REVIEW OF FLUID MECHANICS, VOL 46, 2014, 46 : 147 - 173
  • [4] Modelling of instabilities in turbulent swirling flames
    Dinesh, K. K. J. Ranga
    Jenkins, K. W.
    Kirkpatrick, M. P.
    Malalasekera, W.
    [J]. FUEL, 2010, 89 (01) : 10 - 18
  • [5] TURBULENT SWIRLING JET DIFFUSION FLAMES
    CHERVINSKY, A
    [J]. AIAA JOURNAL, 1969, 7 (10) : 1877 - +
  • [6] Parallel simulations of swirling turbulent flames
    Stone, C
    Menon, S
    [J]. JOURNAL OF SUPERCOMPUTING, 2002, 22 (01): : 7 - 28
  • [7] Parallel Simulations of Swirling Turbulent Flames
    Christopher Stone
    Suresh Menon
    [J]. The Journal of Supercomputing, 2002, 22 : 7 - 28
  • [8] EXPERIMENTAL INVESTIGATION OF TURBULENT SWIRLING FLAMES
    CHERVINSKY, A
    TIMNAT, YM
    [J]. ISRAEL JOURNAL OF TECHNOLOGY, 1967, 5 (1-2): : 39 - +
  • [9] Combustion Characteristics of Bluff-Body Turbulent Swirling Flames with Coaxial Air Microjet
    Yang, Xiao
    He, Zhihong
    Dong, Shikui
    Tan, Heping
    [J]. ENERGY & FUELS, 2017, 31 (12) : 14306 - 14319
  • [10] Flow Structure of Swirling Turbulent Propane Flames
    Alekseenko, Sergey V.
    Dulin, Vladimir M.
    Kozorezov, Yuriy S.
    Markovich, Dmitriy M.
    Shtork, Sergey I.
    Tokarev, Mikhail P.
    [J]. FLOW TURBULENCE AND COMBUSTION, 2011, 87 (04) : 569 - 595