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Analysis of the dynamic response of premixed flames through chemiluminescence cross-correlation maps

机译:通过化学发光互相关图分析预混火焰的动态响应

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This work proposes a novel methodology to extract useful information on flame dynamics from instantaneous chemiluminescence images in terms of the 'effective local response', by means of the so-called cross-correlation maps (CCM). Theoretical considerations suggest that CCM presents some advantages with respect to other options: it allows filtering out some spurious heat release rate fluctuations, not related to the acoustic excitation (either natural or forced) and generates a map of the 'effective gain', which can be interpreted as the actual contribution of each flame parcel to the global dynamic response. The method has been applied to an experimental dataset collected for premixed V flames of methane and CO2/methane blends, covering a wide range of operating conditions. The results are fully consistent with the physical interpretation proposed for the cross-correlation maps, and confirm their potential for diagnosing the effective contribution of the different flame regions to the global dynamic response, as quantified, for example, in terms of the flame transfer function. With further hypotheses (e.g., n-tau formulation), CCM can provide further information about some features of the dynamic flame response, such as the characteristic flame length related to convective time lag and, hence, to the phase of the FTF. Cross-correlation maps are also compared with the spatial distribution of the local Rayleigh index, revealing a qualitatively similar pattern but also some essential differences, related to the different nature of both magnitudes. CC maps reflect the intrinsic dynamic response of the flame, whereas the Rayleigh index is related to the spontaneous instability and, hence, depends on the coupling between flame and the rest of the system. (C) 2018 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:这项工作提出了一种新颖的方法,即通过所谓的互相关图(CCM)从瞬时化学发光图像中根据“有效局部响应”提取有用的火焰动力学信息。理论上的考虑表明,CCM在其他选择方面具有一些优势:它可以滤除与声激发(自然或强迫)无关的一些杂散放热速率波动,并生成“有效增益”图,该图可以可以理解为每个火焰包裹对整体动力响应的实际贡献。该方法已应用于为甲烷和CO2 /甲烷混合物的预混合V火焰收集的实验数据集,涵盖了广泛的运行条件。结果与针对互相关图提出的物理解释完全一致,并证实了其诊断不同火焰区域对整体动态响应的有效贡献的潜力,例如根据火焰传递函数进行量化。利用其他假设(例如n-tau公式),CCM可以提供有关动态火焰响应的某些特征的更多信息,例如与对流时间滞后有关的特征火焰长度,从而与FTF的相位有关。互相关图也与局部瑞利指数的空间分布进行了比较,揭示了定性相似的模式,但也存在一些本质上的差异,这与两个量级的不同性质有关。 CC映射反映了火焰的固有动态响应,而瑞利指数与自发不稳定性有关,因此取决于火焰与系统其余部分之间的耦合。 (C)2018年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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