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EFFECTS OF HYDROGEN ADDITION ON THE MARKSTEIN LENGTH AND FLAMMABILITY LIMIT OF STRETCHED METHANE/AIR PREMIXED FLAMES

机译:氢对拉伸甲烷/空气预混合火焰的市场营销深度和可燃极限的影响

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A computational study is performed to investigate the effects of hydrogen addition on the fundamental characteristics of steady and unsteady stretched methane/air premixed flame in an opposed flow configuration. The problem is of interest as a potential application to gas turbines and sparkignition engines, where the addition of a small amount of hydrogen allows combustion at leaner conditions to achieve lower NOx emission. The flame response is first studied under steady conditions with different levels of hydrogen addition. The effective Markstein length is found to exhibit a nonmonotonic function of the level of blending due to the competing effects between the Zeldovich and Lewis number variations. The results also show that the lean flammability limit is significantly extended due to the presence of hydrogen in the mixture, consistent with previous studies. On the other hand, the consumption speed and time scale of the flame at the extinction condition are found to be rather insensitive to the extent of blending. Unsteady flame response is subsequently studied by imposing oscillatory equivalence ratio at the boundary, as a means to characterize the effects of mixture stratification at various time scales. Consistent with the steady results, the attenuation of the dynamic flammability limits in a normalized scale collapse very well for various levels of hydrogen blending, implying that the unsteady flame response depends strongly on the characteristic chemical time scale irrespective of the amount of fuel blending. A simple analytical solution is derived to predict consistent qualitative behavior. The net effects of unsteady composition fluctuation on the NOx formation are also discussed.
机译:进行了一项计算研究,研究了氢的添加对相反流动形态下稳定的和不稳定的拉伸甲烷/空气预混火焰基本特性的影响。该问题作为燃气轮机和火花点火发动机的潜在应用而引起人们的关注,在燃气涡轮机和火花点火发动机中,少量氢气的添加允许在较稀薄的条件下燃烧以实现较低的NOx排放。首先在稳定条件下研究了不同添加氢量下的火焰响应。由于Zeldovich和Lewis数变异之间的竞争效应,有效的Markstein长度显示出混合水平的非单调函数。结果还表明,由于混合物中存在氢,稀燃性极限明显延长,这与以前的研究一致。另一方面,发现熄灭条件下火焰的消耗速度和时间尺度对混合程度不敏感。随后,通过在边界处施加振荡当量比来研究不稳定的火焰响应,以此来表征混合物在不同时间尺度上的分层效应。与稳定结果一致,对于各种水平的氢混合,动态可燃性极限在标准化范围内的衰减非常好地崩溃,这意味着不稳定的火焰响应在很大程度上取决于特征化学时间尺度,而与燃料混合的量无关。导出了一个简单的分析解决方案来预测一致的定性行为。还讨论了不稳定成分波动对NOx形成的净影响。

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