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Flame Stabilization and Emission Characteristics of Ammonia Flames in a Micro Gas Turbine Combustor

机译:微型燃气轮机燃烧器中氨火焰的火焰稳定和排放特性

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In order to efficiently utilize ammonia as a gas turbine fuel, it is relevant to understand the combustion characteristics of ammonia in a gas turbine combustor. In this study stabilization and emission characteristics of non-premixed ammonia flames were investigated experimentally using a micro gas turbine swirl burner. The effects of ammonia injection angle, global equivalence ratio of the non-premixed flame, and ambient pressure on flame stabilization and emissions of unburned NH_3 and NO were investigated at gas inlet temperatureof298 K. One dimensional numerical calculations using ANSYS Chemkin PRO were performed to extend understanding of the experimental results. Ammonia flames were stabilized over a range of equivalence ratios. An increase in the ammonia injection angle to the burner axis resulted in increased flame stability and more efficient combustion. Ammonia emission increased with an increase in global equivalence ratio. On the other hand, NO emission decreased with global equivalence ratio owing to the increased reduction of NO by amine radicals. With an increase in pressure, NO emissions decreased due to a decrease in H and OH radicals concentration.
机译:为了有效地利用氨作为燃气轮机燃料,它与了解燃气涡轮机燃烧器中氨的燃烧特性是相关的。在该研究中,使用微燃气涡轮机旋转燃烧器实验研究了非预混氨火焰的稳定和排放特性。在气体入口温度下研究了氨注射角,非预混火焰的全局等效比和非燃烧NH_3的气体压力和不燃NH_3的排放的影响。使用ANSYS Chemkin Pro进行一维数值计算延伸了解实验结果。氨火焰在一系列等效比率上稳定。对燃烧器轴的氨注射角的增加导致火焰稳定性增加和更有效的燃烧。氨排放随着全球等同率的增加而增加。另一方面,由于胺类自由基增加,由于不降低不降低,因此没有全局等效率下降。随着压力的增加,由于H和oh自由基浓度的降低,没有减少排放。

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