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Investigation of dilution effect with N-2/CO2 on laminar burning velocity of premixed methane/oxygen mixtures using freely expanding spherical flames

机译:N-2 / CO2稀释对使用自由膨胀球形火焰的预混合甲烷/氧气混合物层流燃烧速度的影响

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The main objective of this work was to measure the dilution effect of nitrogen and carbon dioxide on the unstretched laminar burning velocities and differential diffusional stability of premixed methane-oxygen mixtures at ambient conditions and different equivalence ratios. Freely expanding spherical flame method was used. The combustible mixture was prepared by following (100 - Z)% (CH4 +2O(2)/phi) + z%(N-2/CO2) where Z corresponds to the percentage of diluent in the mixture by volume and 0 refers to equivalence ratio. The percentage of N-2/CO2 in the mixture was varied between 50-70%/30-50%. The equivalence ratio was varied from 0.6 to 1.4. Necessary stretch correction to the measured data was done following weak stretch theory. PREMIX with GRIMech3.0 was used to simulate all the experimental operating conditions. The addition of diluents has reduced the burning velocity of the mixture considerably due to the decrease in energy content of the mixture, increase in specific heat capacity and the corresponding reduction in the flame temperature and decrease in thermal diffusivity. At 50%N-2/CO2 in the premixed methane-oxygen mixtures, the burning velocity measured with CO2 was 3.6 (average value estimated for all studied equivalence ratios) times smaller than the mixtures diluted with N-2. Burning velocity was reduced by 88% due to the addition of 50%CO2 as compared to 0%CO2 in the combustible mixture and out of which reduction due to thermal effect was 81.5% and chemical effect (participation of added CO2 in the chemical reactions) was 6.5% (average value estimated for all studied equivalence ratios). For all the studied dilution cases, the burned gas Markstein length remains positive indicating that the mixtures were stable towards the differential diffusion effects. Agreement of burning velocities obtained between PREMIX with GRIMech3.0 and measurements was not good at lower levels of diluents. Based on the literature, a new species, and few elementary reactions were added to original GRIMech3.0. By doing sensitivity analysis, kinetic parameters of some elementary reactions were also modified. Simulations with the modified GRIMech3.0 showed good agreement with most of the experimental data. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项工作的主要目的是在环境条件和不同当量比下,测量氮气和二氧化碳对未拉伸层流燃烧速度和预混合甲烷-氧气混合物的微分扩散稳定性的稀释作用。使用自由膨胀的球形火焰法。可燃混合物的制备方法如下:(100-Z)%(CH4 + 2O(2)/ phi)+ z%(N-2 / CO2)其中Z表示混合物中稀释剂的体积百分比,0表示当量比。混合物中N-2 / CO 2的百分比在50-70%/ 30-50%之间变化。当量比从0.6到1.4不等。根据弱拉伸理论对测量数据进行必要的拉伸校正。使用带有GRIMech3.0的PREMIX来模拟所有实验操作条件。稀释剂的添加由于混合物能量含量的降低,比热容的增加以及火焰温度的相应降低和热扩散率的降低而大大降低了混合物的燃烧速度。在预混合的甲烷-氧气混合物中,N-2 / CO2为50%时,用CO2测量的燃烧速度是用N-2稀释的混合物的3.6倍(所有研究的当量比的平均值估算)。与可燃混合物中的0%CO2相比,由于添加了50%CO2,燃烧速度降低了88%,其中由于热效应和化学作用(添加的CO2参与了化学反应)而导致的燃烧速度降低了81.5%。为6.5%(所有研究的当量比的平均值估计)。对于所有研究的稀释情况,燃烧的气体马克斯坦长度保持正值,表明混合物对微分扩散作用稳定。在较低稀释剂水平下,PREMIX与GRIMech3.0之间获得的燃烧速度与测量值的一致性不好。根据文献,原来的GRIMech3.0添加了一个新物种,几乎没有基本反应。通过进行敏感性分析,还修改了一些基本反应的动力学参数。修改后的GRIMech3.0的仿真结果与大多数实验数据吻合良好。 (C)2017 Elsevier Ltd.保留所有权利。

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