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Ammonia-methane combustion in tangential swirl burners for gas turbine power generation

机译:燃气轮机发电切向涡流燃烧器中的氨甲烷燃烧

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摘要

Ammonia has been proposed as a potential energy storage medium in the transition towards a low-carbon economy. This paper details experimental results and numerical calculations obtained to progress towards optimisation of fuel injection and fluidic stabilisation in swirl burners with ammonia as the primary fuel. A generic tangential swirl burner has been employed to determine flame stability and emissions produced at different equivalence ratios using ammonia–methane blends. Experiments were performed under atmospheric and medium pressurised conditions using gas analysis and chemiluminescence to quantify emission concentrations and OH production zones respectively. Numerical calculations using GASEQ and CHEMKIN-PRO were performed to complement, compare with and extend experimental findings, hence improving understanding concerning the evolution of species when fuelling on ammonia blends. It is concluded that a fully premixed injection strategy is not appropriate for optimised ammonia combustion and that high flame instabilities can be produced at medium swirl numbers, hence necessitating lower swirl and a different injection strategy for optimised power generation utilising ammonia fuel blends.
机译:在向低碳经济的过渡中,氨被提议为潜在的能量存储介质。本文详细介绍了实验结果和数值计算,以优化以氨为主要燃料的旋流燃烧器的燃料喷射和流体稳定性。已使用通用的切向旋流燃烧器来确定使用氨-甲烷混合物在不同当量比下的火焰稳定性和产生的排放。实验是在大气压和中压条件下进行的,其中使用了气体分析和化学发光法分别量化了排放浓度和OH产生区。进行了使用GASEQ和CHEMKIN-PRO进行的数值计算,以补充,比较并扩展实验结果,从而加深了对加氨混合燃料时物种演化的了解。结论是,完全预混合的喷射策略不适用于优化的氨燃烧,并且在中等旋流数下会产生较高的火焰不稳定性,因此需要较低的旋涡和不同的喷射策略以利用氨燃料混合物优化发电。

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