面向氢冶金和水泥煅烧的H2-O2富燃预混燃烧特性OA
Rich Premixed Combustion Characteristic of H2-O2 for Hydrogen Metallurgy and Cement Calcination
为实现冶金和水泥行业的减排增效,利用H2-O2富燃预混燃烧产生的高温还原气对金属矿石和碳酸钙进行低碳高效还原,H2-O2富燃预混燃烧是其中的核心技术之一,可为相关燃烧器的开发提供理论支持.本文通过数值模拟研究带钝体的燃烧器内H2-O2富燃预混燃烧特性.结果表明,H2-O2富燃预混火焰在不同雷诺数下的可燃范围较宽,雷诺数为300、400和500时,稳定运行当量比范围分别为1.75、2.05和2.10.火焰在回火或吹熄之前保持稳定对称形态,且呈现C形.流场的逆向流动将H2带到了紧贴钝体的回流区附近,随后与高温燃烧产物混合流出燃烧器.而O2在火焰锋面上游边界附近被完全消耗.随着雷诺数增大,烟气中H2含量略有下降;而当量比增大时,H2含量接近线性增大.通过调节流量和当量比,可在较大范围内精确调控还原气体中的H2百分比.本文结果为利用绿氢在高效还原石灰石或金属矿物的同时实现超低CO2排放提供了新方案.
To achieve low-emission and high-efficiency in the metallurgy and cement industries,the high-temperature reduc-ing gases generated by hydrogen-oxygen rich premixed combustion can be used for low-carbon and efficient reduction of me-tallic ores and calcium carbonate.Hydrogen-oxygen rich premixed combustion technology is one of the core methods for this process and provides theoretical support for the development of related burners.In this study,the combustion characteristics of hydrogen-oxygen rich premixed combustion in a combustor with a bluff-body are numerically simulated.The results show that the flammability limits of the hydrogen-oxygen mixture are wide at different Reynolds numbers,and stable operating equivalence ratios range from 1.75,2.05 and 2.10 at Reynolds numbers of 300,400 and 500,respectively.The flame remains symmetrically stable before flashback or blow-off occurs,and is C-shaped.The reverse flow of the flow field carries the hy-drogen gas to the vicinity of the recirculation zone immediately adjacent to the bluff-body,where it subsequently mixes with the high temperature combustion products and flows out of the burner.However,oxygen is completely consumed near the up-stream boundary of the flame front.Further analysis indicates that as the Reynolds number increases,the hydrogen content in the exhaust gas decreases slightly,while the hydrogen content increases almost linearly with the equivalence ratio.By adjust-ing the flow rate and equivalence ratio,the hydrogen percentage in the reductive gas can be precisely controlled over a wide range.This study offers a new approach to achieving ultra-low CO2 emissions while efficiently reducing limestone or metallic minerals using green hydrogen.
陈玉龙;万建龙
华中科技大学 能源与动力工程学院,湖北 武汉 430074华中科技大学 能源与动力工程学院,湖北 武汉 430074
能源科技
H2-O2预混火焰钝体富燃可燃极限还原性气氛
H2-O2 premixed flamebluff-bodyrich-fuel conditionflammability limitreductive exhaust gas
《新疆大学学报(自然科学版中英文)》 2026 (2)
250-256,7
国家自然科学基金青年项目"热回流-流体回流协同作用下的火焰动力学特性"(51706080).
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