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Effect of the elevated initial temperature on the laminar flame speeds of oxy-methane mixtures

机译:初始温度升高对氧气-甲烷混合物层流火焰速度的影响

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The effect of the elevated initial temperature on the laminar flame speeds of CH4/O-2/CO2 mixtures is investigated. Firstly, the measurements of the laminar flame speeds of methane at O-2/CO2 atmosphere are performed in the condition of the elevated initial temperature using a Bunsen burner. The laminar flame speeds are predicted with the GRI 3.0 mechanisms. The effect of the elevated initial temperature is discussed by the kinetic simulation. The elevated unburned gas temperature increases the adiabatic flame temperature, which accelerates the combustion reaction rates and laminar burning velocities of gas mixtures. Then, the absolute and the relative differences with the transport, radiative and chemical effects of the high CO2 content are calculated respectively. The transport and radiative effects are insignificant and the chemical effect is much larger than the transport and radiative effects. Finally, the chemical reaction process is also investigated with the sensitivity analysis and reaction pathway analysis. The elevated initial temperature changes the combustion process slightly, but accelerates the global combustion reaction rate of oxy-methane mixture. (C) 2018 Elsevier Ltd. All rights reserved.
机译:研究了初始温度升高对CH4 / O-2 / CO2混合物层流火焰速度的影响。首先,在初始温度升高的条件下,使用本生灯在O-2 / CO2气氛下测量甲烷的层流火焰速度。层流火焰速度是通过GRI 3.0机制预测的。通过动力学模拟讨论了升高的初始温度的影响。升高的未燃烧气体温度会增加绝热火焰温度,从而加快燃烧反应速度和混合气体的层流燃烧速度。然后,分别计算出高CO 2含量随传输,辐射和化学效应的绝对差和相对差。传输和辐射作用微不足道,化学作用比传输和辐射作用大得多。最后,还通过敏感性分析和反应路径分析研究了化学反应过程。升高的初始温度会稍微改变燃烧过程,但会加速氧气-甲烷混合物的整体燃烧反应速率。 (C)2018 Elsevier Ltd.保留所有权利。

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