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Assessment of radiative heat transfer characteristics of a combustion mixture in a three-dimensional enclosure using RAD-NETT (with application to a fire resistance test furnace)

机译:使用RAD-NETT评估三维外壳中燃烧混合物的辐射传热特性(适用于耐火性试验炉)

摘要

Using RAD-NETT, a neural network correlation of the non-gray radiative absorption properties of combustion gases (CO2 and H2O) and soot, the emissivity and hemispherical absorptivity of a combustion mixture to a boundary in a rectangular enclosure is determined. Results show that the both the emissivity and hemispherical absorptivity have a strong dependence on the mixture properties, as well as the medium temperature and wall temperature. The gray assumption with emissivity equal to absorptivity is generally inaccurate. The numerical model is used to analyze temperature and heat transfer data generated from a fire resistance test furnace. Results show that emission and reflection from the wall boundaries have a major effect of the radiative heat flux measurement in a test sample in a fire resistance test. Numerical results also demonstrate that the furnace was operating essentially in an isothermal condition. From the perspective of a compartment fire, numerical data show that soot emission and emission from the wall are essential in the initiation of flashover in a compartment fire.
机译:使用RAD-NETT,确定了燃烧气体(CO2和H2O)和烟灰的非灰色辐射吸收特性,燃烧混合物对矩形外壳中边界的发射率和半球吸收率的神经网络相关性。结果表明,发射率和半球形吸收率均与混合性能以及介质温度和壁温密切相关。发射率等于吸收率的灰色假设通常是不准确的。该数值模型用于分析由耐火试验炉产生的温度和传热数据。结果表明,在耐火性测试中,壁边界的发射和反射对辐射热通量的测量具有重要影响。数值结果还表明该炉基本上在等温条件下运行。从车厢火灾的角度来看,数值数据表明,烟灰的排放和从墙壁的排放对于在车厢火灾中引发闪络至关重要。

著录项

  • 作者

    Yuen WW; Tam WC; Chow WK;

  • 作者单位
  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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