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The influence of oxygen concentration on biomass gas micro gas turbine oxygen-enriched combustion

机译:氧气浓度对生物质气体微型燃气轮机富氧燃烧的影响

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This paper carries out a numerical research on the distributions of temperature field and component field in the combustion chamber of the design 30KW micro gas turbine combustion chamber under 4 different O2/CO2 atmosphere combustion conditions. The micro gas turbine use biomass gas as fuel and the oxygen concentration is respectively Φ (O2=21%, 30%, 35%, 40%). The following conclusions can be drawn from the simulation results: with the initial oxygen concentration increasing, the temperature in the combustion chamber rises gradually and the combustion area is more concentrated. Besides, the uneven coefficient of combustion chamber outlet temperature decreases. With the increase of the initial oxygen concentration, the combustion chamber outlet CO and CO2 average concentration both correspondingly decrease and the combustion chamber outlet CO2 average concentration are all above 70% under all the combustion conditions.
机译:本文对设计的30KW微型燃气轮机燃烧室在4种不同的O2 / CO2大气燃烧条件下燃烧室内温度场和成分场的分布进行了数值研究。微型燃气轮机使用生物质气作为燃料,氧浓度分别为Φ(O2 = 21%,30%,35%,40%)。从模拟结果可以得出以下结论:随着初始氧气浓度的增加,燃烧室内的温度逐渐升高,燃烧区域更加集中。此外,燃烧室出口温度的不均匀系数减小。随着初始氧气浓度的增加,在所有燃烧条件下,燃烧室出口CO和CO2平均浓度均相应降低,并且燃烧室出口CO2平均浓度均高于70%。

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