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Laminar Combustion Characteristics of Premixed Shale Gas and Air Flames

机译:页岩气与空气混合气的层流燃烧特性

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The laminar combustion characteristics of premixed shale gas/air flames were studied by spherical expansion flame experiments and chemical kinetics simulations. The influence of the initial temperature, the initial pressure, and the equivalent ratio on the laminar flame propagation process was analyzed. The variation of the laminar burning velocity and the flame stability with the initial conditions is discussed. The change trend of the reactants and products in the shale gas laminar flame was studied. The relationships between the important free radicals, the adiabatic flame temperature, and the laminar burning rate were analyzed. The results show that the initial temperature had little influence on the chemical reaction rate, the flame propagation process was stable, and the H+OH mole fraction peak increased, which was the main reason for the enhancement of the laminar burning velocity. When the initial pressure increased, the chemical reaction rate increased obviously, the concentration of H, O, and OH decreased, the velocity of flame propagation was slowed, and the stability of the front flame was reduced. When the equivalent ratio was 1.0, the velocity of the laminar flame was the fastest, the inhibition effect of the lean mixture on the velocity of the flame propagation was stronger than that of the concentrated mixture, and with the increase of the equivalence ratio, the front flame became stable.
机译:通过球形膨胀火焰实验和化学动力学模拟研究了预混页岩气/空气火焰的层流燃烧特性。分析了初始温度,初始压力和当量比对层流火焰传播过程的影响。讨论了层流燃烧速度和火焰稳定性随初始条件的变化。研究了页岩气层流火焰中反应物和产物的变化趋势。分析了重要自由基,绝热火焰温度和层流燃烧速率之间的关系。结果表明,初始温度对化学反应速率影响很小,火焰传播过程稳定,H + OH摩尔分数峰值增加,这是提高层流燃烧速度的主要原因。当初始压力增加时,化学反应速率明显增加,H,O和OH的浓度降低,火焰传播速度减慢,前火焰的稳定性降低。当当量比为1.0时,层流火焰的速度最快,贫油混合物对火焰传播速度的抑制作用强于浓混合物,当当量比增加时,前焰变得稳定。

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