燃烧室
虚张声势
燃烧
氮氧化物
混合(物理)
机械
湍流
热的
氢
材料科学
煤气燃烧器
流量(数学)
燃烧室
热力学
传热
绝热火焰温度
纵横比(航空)
火焰结构
微粒
环境科学
化学
燃烧产物
理论(学习稳定性)
气象学
计算机模拟
热电偶
计算流体力学
作者
Obula Reddy Kummitha,Anji Reddy Polu,Guttikonda Manohar,Abdellatif M. Sadeq
标识
DOI:10.1177/09544062251388324
摘要
This study investigates the impact of bluff body shape on flame steadiness and NO x (Nitrogen Oxides) emissions in non-premixed hydrogen-air combustion. Three bluff body shapes—flat, concave curved, and concave sharp burners—are numerically analyzed using the k-ε turbulence model with the turbulence-chemistry interaction model of finite rate/eddy dissipation. The goal is to optimize flame stability and minimize pollutants. Results show that the flat burner reaches a maximum temperature of 1679 K near the surface, leading to higher NO x emissions. In contrast, the concave curved and sharp burners exhibit lower peak temperatures of 1571 K and 1568 K, respectively. The flat burner also shows higher thermal NO molar reaction rates—85.71% and 92.85% higher than the concave curved and sharp burners. The concave sharp burner proves optimal, offering stable combustion with enhanced air-fuel mixing and reduced NO x emissions.
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