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An assessment of fuel variability effect on biogas-hydrogen combustion using uncertainty quantification

机译:使用不确定性量化评估燃料可变性对沼气-氢气燃烧的影响

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Effects of fuel variability involving small fluctuations in fuel composition on physicochemical properties of premixed biogas-hydrogen combustion are quantified using global sensitivity analysis approach. Different proportions of hydrogen addition, and different CH4:CO2 ratios in biogas-hydrogen fuel with uncertainties are investigated from a statistical point of view. Analyses show that small fluctuation of biogas-hydrogen fuel composition does not lead to significant fluctuations in physicochemical properties of combustion such as laminar flame speed and adiabatic flame temperature. A fast growth of laminar flame speed fluctuation from lean to rich combustion of biogas-hydrogen fuel is observed implying a less stable flame at rich condition, and lower dimensional studies show that hydrogen uncertainty takes predominant responsibility for the rapid increase of flame speed. Apart from the uncertainty of hydrogen, it is found that carbon dioxide concentration fluctuation has a larger negative effect on stabilising biogas-hydrogen flame compared to that of methane. It is also found that for biogas-hydrogen fuel with high hydrogen content, contribution of carbon dioxide variability to flame speed fluctuation decreases while methane contribution increases. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用全局敏感性分析方法,对涉及燃料成分的小波动的燃料可变性对预混合沼气-氢气燃烧的理化性质的影响进行定量。从统计学的角度研究了不确定性的沼气-氢气燃料中不同比例的加氢和不同的CH4:CO2比。分析表明,沼气-氢燃料成分的小幅波动不会导致燃烧的理化特性(例如层流火焰速度和绝热火焰温度)发生显着波动。观察到从稀薄燃烧到浓郁燃烧的层气火焰速度波动快速增长,这意味着在富燃条件下不稳定的火焰,而较低维度的研究表明,氢气的不确定性是火焰速度快速增加的主要原因。除了氢的不确定性外,发现与甲烷相比,二氧化碳浓度波动对稳定沼气-氢火焰具有更大的负面影响。还发现,对于具有高氢含量的沼气-氢燃料,二氧化碳变化性对火焰速度波动的贡献减小,而甲烷的贡献增加。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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