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Experimental and numerical investigations of biogas vortex combustion

机译:沼气涡流燃烧的实验与数值研究

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Low calorific value of biogas is one of the most important barriers of biogas development in industrial scale. Since biogas upgrading is complicated and not economic, various characteristics of pure biogas combustion have been experimented in recent years. In this paper, the characteristics of biogas flame structure and emissions in nonpremixed vortex combustion are studied experimentally and numerically. A lab-scale asymmetric chamber is employed as an industrial vortex combustor model and characteristics of biogas vortex combustion such as temperature distribution inside the chamber, the flame stability and the combustion emissions are investigated with respect to the various mole fraction of CO2 in the biogas content. The flame structure and emissions were recorded by changing the percentage of CO2 mole fraction in the biogas from 0 to 40% by volume. The results indicate that the stability of nonpremixed biogas combustion decreases when the rate of CO2 mole fraction increases in the fuel. The rate of both CO2 and NOx formation of nonpremixed combustion reduce monotonically when the rate of CO2 fraction increases in the biogas ingredients.
机译:沼气的低热值是工业规模沼气发展的最重要障碍之一。由于沼气的升级复杂而不经济,因此,近年来已尝试了纯沼气燃烧的各种特性。本文对非预混涡流燃烧过程中沼气的火焰结构和排放特性进行了实验和数值研究。以实验室规模的不对称燃烧室为工业涡流燃烧室模型,研究沼气涡流燃烧的特征,例如燃烧室内的温度分布,火焰稳定性和燃烧排放,并针对沼气中CO2的各种摩尔分数进行了研究。 。通过将沼气中CO2摩尔分数的百分比从0更改为40%(体积)来记录火焰结构和排放。结果表明,当燃料中CO2摩尔分数增加时,非预混沼气燃烧的稳定性降低。当沼气成分中CO2分数的比率增加时,非预混燃烧的CO2和NOx形成比率均单调降低。

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