首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >The effects of porous wall as a novel flame stabilization method on flame characteristics in a premixed burner for CH_4/air mixture by numerical simulation
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The effects of porous wall as a novel flame stabilization method on flame characteristics in a premixed burner for CH_4/air mixture by numerical simulation

机译:数值模拟多孔壁作为火焰稳定新方法对CH_4 /空气混合物预混燃烧器火焰特性的影响

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摘要

In the present investigation, the effects of inner diameter and length of porous wall on flame stability limits, temperature distribution, methane conversion, and pressure drop in a premixed burner are numerically analyzed. The governing equations are solved by the control volume method, considering Re-Normalization Group k-e for turbulence modeling and eddy dissipation concept for turbulence-chemistry interaction modeling. The simulations are performed for various porous walls with the inner diameter of 30, 40, and 50 mm and the length of 22, 44, and 66 mm. The results demonstrate that the increase in inner diameter of porous wall causes an increase in the lower flame stability limit and a decrease in the upper flame stability limit, gas and solid temperatures, pressure drop, and methane conversion. Also, the maximum solid and gas temperatures in the porous wall and methane conversion are related to the porous wall with 44 mm length. Furthermore, the methane conversion and pressure drop increase with the rise in the equivalence ratio. Finally, it can be said that the change in inner diameter of porous wall is more important than the length of porous wall in the studied phenomena.
机译:在本研究中,数值分析了多孔壁的内径和长度对预混燃烧器中火焰稳定性极限,温度分布,甲烷转化率和压降的影响。控制方程采用控制体积法求解,考虑了湍流建模的重新归一化组k-e和湍流-化学相互作用建模的涡流消散概念。对内径为30、40和50毫米,长度为22、44和66毫米的各种多孔壁进行模拟。结果表明,多孔壁内径的增加导致下火焰稳定性极限的增加和上火焰稳定性极限的下降,气体和固体温度,压降和甲烷转化率。而且,多孔壁中的最高固体和气体温度以及甲烷的转化率与长度为44 mm的多孔壁有关。此外,甲烷转化率和压降随着当量比的增加而增加。最后,可以说,在所研究的现象中,多孔壁内径的变化比多孔壁的长度更重要。

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