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Experimental Evaluation of Flame Radiative Feedback: Methodology and Application to Opposed Flame Spread Over Coated Wires in Microgravity

机译:火焰辐射反馈的实验评估:方法论和应用于相反的火焰在微匍匐中涂覆涂层电线

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摘要

The objective of this work is to quantify for the first time soot-related radiative heat transfer in opposed flow flame spread in microgravity. This article presents experimental results obtained in parabolic flight facilities. A flame is established over a solid cylindrical polyethylene coated metallic wire and spreads at a steady rate, in low velocity flow conditions allowed by the absence of buoyancy. Implementing the Broadband Modulated Absorption/Emission technique, the two-dimensional fields of soot volume fraction and temperature are obtained for the first time in flame spread configuration over an insulated wire in microgravity. The consistency of the results is assessed by comparing results from independent experimental runs. From these fields, radiative losses attributed to soot in the flame are computed at each location. This map of radiative losses together with the profile of the wire surface are then used as inputs to a novel experimental approach that enables the assessment of soot radiative heat feedback to the wire. Results are extracted from a specific case of a flame propagating over a polyethylene coated Nickel-Chrome wire at nominal pressure. The oxidizer, composed of 19% oxygen and 81% nitrogen in volume is blown at opposed flow parallel to the wire at a velocity of 200mm center dot s-1documentclass[12pt]{minimal}1}$$end{document}. This new approach provides the first detailed quantitative measurements which are required to check the relevance of heat transfer models under development, therefore to better understand the mechanisms driving flame spread in microgravity.
机译:这项工作的目的是定量第一次与微匍匐的流动火焰中的第一次与烟尘相关的辐射热传递。本文提出了在抛物线飞行设施中获得的实验结果。在固体圆柱形聚乙烯涂覆的金属线上建立火焰并以稳定的速率涂抹在不存在浮力的低速流动条件下。实现宽带调制吸收/发射技术,首次在微匍匐线上的绝缘线上的火焰扩散配置中获得烟灰体积分数和温度的二维场。通过比较独立实验运行的结果来评估结果的一致性。从这些领域,在每个位置计算归因于火焰中的烟灰的辐射损耗。然后将该辐射损耗与线表面的概况一起用作新的实验方法的输入,这使得能够评估烟灰辐射热反馈到电线。从标称压力以聚乙烯涂覆的镍铬线上传播的火焰的特定情况提取结果。由19%氧气和81%氮气组成的氧化剂以与电线平行于200mm中心点S-1 DocumentClass [12pt] {minimal} 1} $$ END {Document}的速度的相对流动的氧气体积。 。这种新方法提供了检查传热模型的相关性所必需的第一种详细的定量测量,从而更好地理解驱动火焰在微匍匐中传播的机制。

著录项

  • 来源
    《Fire Technology》 |2020年第1期|185-207|共23页
  • 作者单位

    Sorbonne Univ Inst Jean Le Rond dAlembert CNRS UMR 7190 F-75005 Paris France;

    Sorbonne Univ Inst Jean Le Rond dAlembert CNRS UMR 7190 F-75005 Paris France;

    Aix Marseille Univ CNRS UMR 7343 IUSTI F-13013 Marseille France;

    Hokkaido Univ Div Mech & Space Engn Kita Ku Kita13 Nishi8 Sapporo Hokkaido 0608628 Japan;

    Univ Maryland Dept Fire Protect Engn College Pk MD 20742 USA;

    Sorbonne Univ Inst Jean Le Rond dAlembert CNRS UMR 7190 F-75005 Paris France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soot; Microgravity; Radiative heat transfer;

    机译:烟灰;微匍匐;辐射传热;
  • 入库时间 2022-08-18 21:38:41

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