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Analytic prediction of unconfined boundary layer flashback limits in premixed hydrogen-air flames

机译:预混合氢气火焰中非整合边界层闪回限制的分析预测

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摘要

Flame flashback is a major challenge in premixed combustion. Hence, the prediction of the minimum flow velocity to prevent boundary layer flashback is of high technical interest. This paper presents an analytic approach to predicting boundary layer flashback limits for channel and tube burners. The model reflects the experimentally observed flashback mechanism and consists of a local and global analysis. Based on the local analysis, the flow velocity at flashback initiation is obtained depending on flame angle and local turbulent burning velocity. The local turbulent burning velocity is calculated in accordance with a predictive model for boundary layer flashback limits of duct-confined flames presented by the authors in an earlier publication. This ensures consistency of both models. The flame angle of the stable flame near flashback conditions can be obtained by various methods. In this study, an approach based on global mass conservation is applied and is validated using Mie-scattering images from a channel burner test rig at ambient conditions. The predicted flashback limits are compared to experimental results and to literature data from preheated tube burner experiments. Finally, a method for including the effect of burner exit temperature is demonstrated and used to explain the discrepancies in flashback limits obtained from different burner configurations reported in the literature.
机译:火焰闪回是预混燃烧的主要挑战。因此,预测最小流速以防止边界层闪回具有高的技术兴趣。本文介绍了预测通道和管燃烧器边界层闪回限制的分析方法。该模型反映了实验观察到的闪回机制,包括本地和全局分析。基于局部分析,根据火焰角和局部湍流燃烧速度获得闪回启动的流速。局部湍流燃烧速度根据提前出版物中作者所呈现的导管间隙的边界层闪回限制的预测模型计算。这确保了两种模型的一致性。闪回条件附近的稳定火焰的火焰角可以通过各种方法获得。在该研究中,应用了一种基于全局质量保护的方法,并在环境条件下使用来自沟道燃烧器试验台的MIE散射图像进行验证。将预测的闪回限制与实验结果和来自预热管燃烧器实验的文献数据进行比较。最后,对包括燃烧器出口温度的效果的方法进行说明并用于解释从文献中报道的不同燃烧器配置中获得的倒回限制的差异。

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