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首页> 外文期刊>Fuel >On the relative contributions of soot to radiative heat transfer at different oxygen indices in ethylene - O_2/CO_2 laminar diffusion flames
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On the relative contributions of soot to radiative heat transfer at different oxygen indices in ethylene - O_2/CO_2 laminar diffusion flames

机译:在乙烯 - O_2 / CO_2层状扩散火焰中不同氧识别下烟灰对辐射传热的相对贡献

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摘要

Soot concentration measurements in ethylene-O-2/CO2 diffusion flames (fuel Re 120) encompassing oxidizer oxygen mole fractions (oxygen index, OI) of 35% to 90% were employed to validate a methodology for modeling soot production. A skeletal 10-step reaction mechanism and modeling the soot nucleation parameter (C-alpha) in the Moss-Brookes soot model as a function of OI provided adequate agreement with measurements. Cross-validation of the OI based Ca model was ascertained through ethylene-O-2/CO2 diffusion flame simulations in a different experimental configuration (fuel Re 43, 35%-50% O-2) by ensuring that peak soot concentrations were in good agreement with previously published results. A mesh resolution of 0.0625 mm within the flame was deemed necessary to obtain grid independent results. Despite increases in peak soot volume fractions and flame temperatures with OI, the radiant fraction (chi(R)) (in-flame) decreases due to decreasing flame lengths. Although inflame radiation is dominated by gases, the spectrally-continuous soot radiation plays an important role on chi(R) (when it is assessed across the entire domain) due to the attenuation of flame radiation by the cold, radiatively-participating, co-flow. Consequently, in-flame radiation show a strong sensitivity to gas-radiative property models whereas chi(R) when assessed across the entire domain is impacted by the choice of soot radiative property model.
机译:采用氧化乙烯-2 / CO2扩散火焰(燃料RE 120)的烟灰浓度测量,其包括氧化剂氧摩尔级分(氧指数,oi)为35%至90%以验证用于涂抹烟灰生产的方法。作为OI的功能,骨骼10步骤反应机制和模拟了Moss-Brookes烟灰模型中的烟灰成核参数(C-α)提供了足够的测量协议。通过确保峰值烟灰浓度良好的乙烯-O-2 / CO2扩散火焰模拟来确定基于OI基于CA模型的交叉验证。与以前公布的结果一致。认为在火焰内的网格分辨率为0.0625mm,以获得网格独立结果。尽管峰值烟灰体积分数增加并用Oi的火焰温度,由于降低的火焰长度而导致的辐射级分(Chi(R))(内燃)降低。虽然辐射是由气体支配的,但由于冷,辐射的火焰辐射的衰减,光谱连续的烟雾辐射在Chi(R)(当在整个领域进行评估时)起着重要作用。流。因此,火焰辐射显示出对气体辐射性质模型的强烈敏感性,而在整个域中评估时,CHI(R)受到烟灰辐射性质模型的选择影响。

著录项

  • 来源
    《Fuel 》 |2021年第2期| 119269.1-119269.11| 共11页
  • 作者单位

    US Mil Acad Dept Chem & Life Sci Bartlett Hall West Point NY 10996 USA;

    Univ North Dakota Dept Chem Engn Upson 2 Room 365 243 Centennial Dr Stop 8155 Grand Forks ND 58202 USA;

  • 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

    Ethylene; Diffusion flame; Soot; Radiative heat transfer; Oxy-combustion;

    机译:乙烯;扩散火焰;烟灰;辐射传热;氧气燃烧;

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