Modeling of large-scale under-expanded hydrogen jet fires

被引:15
|
作者
Consalvi, Jean-Louis [1 ]
Nmira, Fatiha [2 ]
机构
[1] Aix Marseille Univ, CNRS, IUSTI, UMR 7343, 5 Rue E Fermi, F-13013 Marseille, France
[2] Direct R&D EDF, 6 Quai Watier, F-78400 Chatou, France
关键词
Under-expanded H-2 flames; Lab-scale CH4 and H-2 flames; Transported PDF method; Narrow-band correlated-k model; Radiant fraction; Turbulence-radiation interaction; NITRIC-OXIDE FORMATION; FLAMES; CHEMISTRY;
D O I
10.1016/j.proci.2018.05.022
中图分类号
O414.1 [热力学];
学科分类号
摘要
Large-scale hydrogen under-expanded jet flames and lab-scale H-2 and CH4 jet flames are simulated by using the standard k-epsilon model coupled to a hybrid flamelet/transported PDF method and a narrow band correlated-k gas radiation model. The set of flames considered covers a wide range of residence times and optical thicknesses. The notional nozzle concept is adopted to determine injection conditions for the large-scale chocked flames. Model predictions in terms of flame geometry, flame structure, radiant fraction and radiative flux are consistent with the experimental data whatever the scales. Model results show that these flames do not verify the optically-thin approximation since the part of emitted radiant power re-absorbed within the flame ranges from 11% for the smallest H-2 flame to about 70% for the largest H-2 flame. Neglecting the turbulence-radiation interaction underestimates significantly the radiant fraction whatever the scale and these discrepancies are enhanced with increasing residence time and optical thickness. A simple analysis based on the assumption of homogenous flame is used to correlate the experimental radiant fraction as a function of tau E-G(m)(1 - (Q) over dot(abs)/(Q) over dot(em)) where tau(G), E-m and (Q) over dot(abs)/(Q) over dot(em) represent the residence time, an equivalent emission term and the part of emitted radiant power re-absorbed within the flame. Model results are used to provide a proper estimation of the equivalent emission term and self-absorption. (C) 2018 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
引用
收藏
页码:3943 / 3950
页数:8
相关论文
共 50 条
  • [41] A study of under-expanded moist air jet impinging on a flat plate
    Yumiko Otobe
    Shigeru Matsuo
    Masanori Tanaka
    Hideo Kashimura
    Heuy-Dong Kim
    Toshiaki Setoguchi
    Journal of Thermal Science, 2005, 14 : 334 - 340
  • [42] Noise characteristics and shock structures of under-expanded jet array configurations
    Sherikar, Sanjay V.
    FEDSM 2007: PROCEEDINGS OF THE 5TH JOINT ASME/JSME FLUIDS ENGINEERING SUMMER CONFERENCE, VOL 2, PTS A AND B, 2007, : 1141 - 1149
  • [43] Screech characteristics of under-expanded high aspect ratio elliptic jet
    Rao, A. Nageswara
    Kushari, Abhijit
    Chandra Mandal, Alakesh
    PHYSICS OF FLUIDS, 2020, 32 (07)
  • [44] Numerical Simulation of Axisymmetric Under-expanded Supersonic Jet Screech Tone
    Li, En-Yi
    Le, Gui-Gao
    Ma, Da-Wei
    Wang, Xue-Qin
    Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics, 2019, 40 (06): : 1288 - 1294
  • [45] The evolution of the initial flow structures of a highly under-expanded circular jet
    Zhang, Huan-Hao
    Aubry, Nadine
    Chen, Zhi-Hua
    Wu, Wei-Tao
    Sha, Sha
    JOURNAL OF FLUID MECHANICS, 2019, 871 : 305 - 331
  • [46] Mitigation of under-expanded supersonic jet noise through stepped nozzles
    Wei, X. F.
    Mariani, R.
    Chua, L. P.
    Lim, H. D.
    Lu, Z. B.
    Cui, Y. D.
    New, T. H.
    JOURNAL OF SOUND AND VIBRATION, 2019, 459
  • [47] Numerical characterization of under-expanded cryogenic hydrogen gas jets
    Ren, Zhaoxin
    Wen, Jennifer X.
    AIP ADVANCES, 2020, 10 (09)
  • [48] A Study of Under-expanded Moist Air Jet Impinging on a Flat Plate
    Yumiko OTOBE
    Shigeru MATSUO
    Masanori TANAKA
    Hideo KASHIMURA
    Heuy-Dong KIM
    Toshiaki SETOGUCHI
    JournalofThermalScience, 2005, (04) : 334 - 340
  • [49] An experimental study of the under-expanded swirling jet with secondary coaxial stream
    K. H. Lee
    T. Setoguchi
    S. Matsuo
    H. D. Kim
    Shock Waves, 2005, 14 : 83 - 92
  • [50] MODELING THE LARGE-SCALE BIAS OF NEUTRAL HYDROGEN
    Marin, Felipe A.
    Gnedin, Nickolay Y.
    Seo, Hee-Jong
    Vallinotto, Alberto
    ASTROPHYSICAL JOURNAL, 2010, 718 (02): : 972 - 980