首页> 外文期刊>Combustion Science and Technology >CHARACTERIZING THE FLAMING IGNITION OF CELLULOSE FUEL BEDS BY HOT STEEL SPHERES
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CHARACTERIZING THE FLAMING IGNITION OF CELLULOSE FUEL BEDS BY HOT STEEL SPHERES

机译:用热钢球表征纤维素燃料床的火焰着火

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摘要

In this work, the flaming ignition of powdered cellulose fuel beds by hot steel spheres of various diameters and initial temperatures is studied. The spheres were heated in a tube furnace and then dropped onto a fuel bed, and the occurrence of flaming ignition or lack thereof was visually observed and recorded. A multivariable logistic regression method was developed and used to obtain an approximate ignition probability distribution and flaming ignition limits for the parameter space investigated. Each test was also recorded using high speed Schlieren videography, which gave qualitative insight into the ignition process. Ignition of larger spheres (>8.5 mm) appears to depend more strongly on sphere temperature than diameter. Alternatively, ignition by small spheres (<3.5 mm) appears less sensitive to temperature and more sensitive to sphere size. It was also confirmed that ignition cannot be predicted by bulk sphere energy alone. Flaming ignition occurs in the gas phase, in some cases away from the ball surface. Based on this and other evidence, it is proposed that ignition occurs when heat generation in the surrounding mixture of gasified fuel and air over-comes diffusive losses long enough for thermal runaway to occur. It is also noted that bulk energy may be important for predicting ignition by small spheres because of the increasing importance of the energy required to pyrolyze and produce an ignitable mixture.
机译:在这项工作中,研究了各种直径和初始温度的热钢球对粉末状纤维素燃料床的燃烧着火。将球在管式炉中加热,然后掉落到燃料床上,并且目视观察并记录燃烧着火的发生或缺乏。开发了一种多变量对数回归方法,并用于获得所研究参数空间的近似点火概率分布和明火极限。每次测试还使用高速Schlieren摄像头进行记录,从而对点火过程进行了定性分析。较大球体(> 8.5 mm)的点火似乎比直径更强烈地取决于球体温度。另外,小球体(<3.5 mm)着火似乎对温度不太敏感,对球体大小更敏感。还证实了不能仅通过球体能量来预测点火。燃烧着火发生在气相中,在某些情况下远离球体表面。基于该证据和其他证据,提出当周围的气化燃料和空气混合物中的热量产生克服足够长的扩散损失而发生热失控时,就会发生着火。还应注意,由于热解和产生可燃混合物所需的能量的重要性日益增加,因此散装能量对于预测小球的着火可能很重要。

著录项

  • 来源
    《Combustion Science and Technology》 |2014年第12期|1618-1631|共14页
  • 作者单位

    Department of Mechanical Engineering, The University of California-Berkeley, Berkeley, California, USA;

    Department of Mechanical Engineering, The University of California-Berkeley, Berkeley, California, USA;

    Department of Mechanical Engineering, The University of California-Berkeley, Berkeley, California, USA;

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

    Fire spotting; Natural fuels; Solid fuel ignition;

    机译:火斑;天然燃料;固体燃料着火;
  • 入库时间 2022-08-18 00:11:59

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