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Numerical study of the effects of radiative heat losses on diffusion flames

机译:辐射热损失对扩散火焰影响的数值研究

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The effects of thermal radiation are numerically investigated for a methane-air counterflow diffusion flame, using 'detailed' chemistry. The radiative losses from combustion products (CO{sub}2 and H{sub}220) were considered by using a thin gas approximation. The results show a significant effect of radiative losses causing extinction at low strain rates. On the basis of the radiative losses from gaseous combustion products, an extinction limit was found to be 0.7 s{sup}(-1). The presence of soot will move this limit to higher strain rates. The radiation effects are relatively less at moderate and high strain rates, where they may cause a reduction in the peak temperatures by ~10 per cent. In addition to decreasing peak temperatures and combustion products, the radiative losses also reduce the flame width. The results show the importance of including detailed chemical mechanism in correctly predicting the extinction limit and the influence of radiative losses on flame structure.
机译:使用“详细”化学方法对甲烷-空气逆流扩散火焰进行了热辐射效应的数值研究。通过使用稀薄气体近似法考虑了燃烧产物(CO {sub} 2和H {sub} 220)的辐射损失。结果表明,在低应变速率下,辐射损耗会导致消光的显着影响。根据气体燃烧产物的辐射损失,消光极限为0.7 s {sup}(-1)。烟灰的存在将使该极限移至更高的应变率。在中等应变率和高应变率下,辐射效应相对较小,它们可能导致峰值温度降低约10%。除了降低峰值温度和燃烧产物之外,辐射损失还减小了火焰宽度。结果表明,包括详细的化学机制以正确预测消光极限以及辐射损失对火焰结构的影响非常重要。

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