Upward Flame Spread over Two Parallel Paper Sheets under Reduced Ambient Pressure and Elevated Oxygen Concentration

被引:0
|
作者
Wang, Wenlong [1 ]
Zhao, Luyao [2 ]
Fang, Jun [1 ]
Zhang, Yongming [1 ]
机构
[1] Univ Sci & Technol China, State Key Lab Fire Sci, Hefei, Anhui, Peoples R China
[2] Jiangsu Univ, Sch Environm & Safety Engn, Zhenjiang, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
Narrow space; Parallel sheets; Flame fusion; Orange-blue layered flame; Horizontal flow; DIFFUSION FLAME; THIN; MICROGRAVITY; MECHANISMS; COMBUSTION; SOLIDS; RATES; ARRAY;
D O I
10.1080/00102202.2022.2109152
中图分类号
O414.1 [热力学];
学科分类号
摘要
The effects of separation distance and environmental parameters (such as ambient pressure and oxygen concentration) on the upward flame spread over two parallel paper sheets were investigated in this work, which would be conducive to enriching the fire dynamic theories and providing a reference for the risk evaluation in building and space fires. It was found that, with the increase of separation distance, the flame spread regimes can be roughly divided into four classes: the flame quenching regime (without inner flame), where the interaction of two parallel papers is mainly dominated by the solid surface radiation; the complete fusion regime, limited by the oxygen diffusion; the partial fusion regime, dominated by the convection; the separated flames regime, dominated by the gas-phase radiation. The flames inside the narrow space are fused under the flame-induced horizontal flow, and extinguished for the oxygen starvation, which reflects the interaction of two parallel samples. Interestingly, although the flames inside and outside the parallel sheets often have different flame lengths and burning intensities, they spread at almost the same rate, which is ascribed to the overlapping of the pyrolysis region on both sides of the thermal thin paper. A critical separation distance was found, where the flame spread rate is largest due to the stoichiometric mixture fraction. The orange-blue layered flames were analyzed, which is related to the boundary layer of the flow field and the mixture of fuel and fresh air. The oxygen concentration has nearly equivalent impacts on the flame-induced buoyancy and horizontal flows, and thus a constant flame fusion angle is maintained. Nevertheless, the enhanced ambient pressure mainly promotes the buoyancy and reduces the flame fusion angle. The flames inside the narrow space are apt to be extinguished under lower ambient pressure with weak buoyancy similar to the reduced gravity and microgravity environments. The transformation of the dominating regimes were observed at a moderate separation distance: the flame quenching regime at pressures below 18 kPa, the complete fusion regime at pressures between 18 similar to 29 kPa, and the partial fusion regime at pressures over 29 kPa.
引用
收藏
页码:1039 / 1057
页数:19
相关论文
共 8 条
  • [1] Effect of oxygen concentration, pressure, and opposed flow velocity on the flame spread along thin PMMA sheets
    Ries, Hans-Christoph
    Eigenbrod, Christian
    Meyer, Florian
    PROCEEDINGS OF THE COMBUSTION INSTITUTE, 2024, 40 (1-4)
  • [2] On simulating the effect of gravity on concurrent flame spread over thin paper through variations in ambient pressure
    Thomsen, Maria
    Fernandez-Pello, Carlos
    Urban, David L.
    Ruff, Gary A.
    COMBUSTION AND FLAME, 2021, 232
  • [3] Opposed Flame Spread over Polyethylene Under Variable Flow Velocity and Oxygen Concentration in Microgravity
    Yoshinari Kobayashi
    Kaoru Terashima
    Muhammad Arif Fahmi bin Borhan
    Shuhei Takahashi
    Fire Technology, 2020, 56 : 113 - 130
  • [4] Opposed Flame Spread over Polyethylene Under Variable Flow Velocity and Oxygen Concentration in Microgravity
    Kobayashi, Yoshinari
    Terashima, Kaoru
    bin Borhan, Muhammad Arif Fahmi
    Takahashi, Shuhei
    FIRE TECHNOLOGY, 2020, 56 (01) : 113 - 130
  • [5] Limiting oxygen concentration in opposed-flow flame spread over carbon fiber reinforced plastic sheets: A comparison between experiment and theory
    Kobayashi, Yoshinari
    Okamura, Koki
    Hanamoto, Kei
    Takahashi, Shuhei
    PROCEEDINGS OF THE COMBUSTION INSTITUTE, 2024, 40 (1-4)
  • [6] Comparative study on upward flame spread interactions and heat transfer over two parallel wires with various spacing distances in open space and vertical channel
    Gao, Yunji
    Yang, Zhengyuan
    Sun, Ao
    Lei, Zijian
    Guo, Hanwen
    Li, Zhisheng
    Zhu, Hui
    Zhang, Peiyao
    Zhang, Yuchun
    INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2024, 206
  • [7] Flammability limits and near-limit chemistry controlled flame spread over thermally thin paper under sub-atmospheric pressure
    He, Xuanze
    Wang, Jingwu
    Fang, Jun
    FIRE SAFETY JOURNAL, 2021, 120
  • [8] Opposed-flow flame spread over carbon fiber reinforced plastic under variable flow velocity and oxygen concentration: The effect of in-plane thermal isotropy and anisotropy
    Kobayashi, Yoshinari
    Terashima, Kaoru
    Oiwa, Rikiya
    Tokoro, Misuzu
    Takahashi, Shuhei
    PROCEEDINGS OF THE COMBUSTION INSTITUTE, 2021, 38 (03) : 4857 - 4866