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Experimental investigation on flame spread over jet fuel with influence of external heat radiation

机译:外部热辐射影响对喷射燃料的火焰试验研究

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摘要

The development of liquid fires commonly accompanies with the external heat radiation. This subject concentrates on the laboratory-scale experiments (100 cm × 4.4 cm × 2.0 cm) on flame spread over jet fuel of RP-3 with radiant heat fluxes of 1.1,1.69, 2.25, 2.8 and 3.6 kW/m~2. The results show that the flame behaviors, subsurface flow and heat transfer mechanism depend strongly on the intensity of external heat flux. The measurements of flame pulsation frequency and flame spread rate verify that they increase significantly initially but augment slightly afterwards with the externally applied heat flux, indicating that the heat flux is principally used for raising the liquid's temperature in the initial stage of flame spreading. The heat exchanges involving flame spread process, namely, external heat radiation, convective heat flux, conductive heat flux, flame radiation, and re-radiant heat losses are analyzed. The energy calculation model confirms that the total heat flux is approximately equal to the sum of heat fluxes from radiant panel and convective flow. The scaling analysis of velocity of subsurface flow proves that it should be linearly related to the externally applied heat flux in the correlation of u_s ~ q_(er)~(2/3).
机译:液体发射通常伴随着外部热辐射。该主题在实验室规模的实验(100cm×4.4cm×2.0cm)上,在火焰上展开RP-3的喷射燃料,辐射热通量为1.1,1.69,2.25,2.8和3.6 kW / m〜2。结果表明,火焰行为,地下流动和传热机制强烈依赖于外部热通量的强度。火焰脉动频率和火焰扩散速率的测量验证,它们最初增加,但随后使用外部施加的热通量略微增加,表明热通量主要用于在火焰扩散的初始阶段提高液体的温度。分析了涉及火焰扩散过程的热交换器,即外部热辐射,对流热通量,导电热通量,火焰辐射和再辐射热损失。能量计算模型证实总热通量大致等于来自辐射板和对流流的热通量和。地下流量的速度分析证明,与U_S〜Q_(ER)〜(2/3)相关的外部施加的热通量应该线性相关。

著录项

  • 来源
    《Energy》 |2020年第1期|118335.1-118335.7|共7页
  • 作者单位

    School of Civil Engineering Hefei University of Technology Hefei 230009 China Anhui International Joint Research Center on Hydrogen Safety Hefei 230009 China Engineering Research Center of Safety Critical Industrial Measurement and Control Technology Ministry of Education China;

    School of Civil Engineering Hefei University of Technology Hefei 230009 China Anhui International Joint Research Center on Hydrogen Safety Hefei 230009 China;

    School of Civil Engineering Hefei University of Technology Hefei 230009 China Anhui International Joint Research Center on Hydrogen Safety Hefei 230009 China;

    School of Civil Engineering Hefei University of Technology Hefei 230009 China;

    School of Civil Engineering Hefei University of Technology Hefei 230009 China Anhui International Joint Research Center on Hydrogen Safety Hefei 230009 China;

    School of Civil Engineering Hefei University of Technology Hefei 230009 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Flame spread; jet fuel; External heat radiation; Thermal exchange; Energy calculation model; Scaling analysis;

    机译:火焰蔓延;喷气燃料;外部热辐射;热交换;能量计算模型;缩放分析;

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