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Effects of hydrogen enhancement on mesoscale burner array flame stability under acoustic perturbations

机译:氢气增强对声学扰动下Mescle燃烧器阵列火焰稳定性的影响

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Partial substitution of hydrocarbon fuel with hydrogen can effectively improve small-scale combustion system stability and performance, potentially opening the way for novel compact power generation and/or propulsion systems in the future. In this study, the effects of hydrogen enhancement between 0% and 40% hydrogen volumetric fractions in methane fuel were experimentally observed in a mesoscale burner array subjected to external acoustic perturbations. The mesoscale burner array utilizes an array of swirl stabilized burner elements and their interactions with neighboring elements to improve the overall flame stability and simultaneously reduces the combustor length scale. OH* chemiluminescence and OH planar laser-induced fluorescence (OH-PLIF) were used to image various hydrogen-enriched flames at an equivalence ratio of 0.7, subjected to transverse acoustic perturbations at 320 Hz. Two acoustic modes were imposed by controlling the phase difference between two speakers perturbing the flow. OH* chemiluminescence images exhibited flame length scale reduction, leading to a denser flame array. Also, flame arrays with higher hydrogen enrichment were found to be more robust against transverse acoustic perturbations, demonstrated by reduced fluctuations in the global heat release rate. OH-PLIF images showed that flames with higher hydrogen enrichment initiated V-to M-shaped flame shape transition even under fuel lean conditions, thereby improving the combustion stability. OH-PLIF images were also used for flame stability analysis through spectral proper orthogonal decomposition (SPOD). The SPOD analysis showed hydrogen enrichment diminished flame fluctuation structures under fuel lean operation. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:氢气燃料与氢气的部分取代可以有效地提高小规模的燃烧系统稳定性和性能,可能在未来开启新型小型电力发电和/或推进系统的方式。在该研究中,在经受外部声学扰动的Mescle燃烧器阵列中通过实验观察到氢气增强0%和40%氢体积分数的影响。 Mescle燃烧器阵列利用涡旋稳定燃烧器元件阵列及其与相邻元件的相互作用以提高整体火焰稳定性,同时降低燃烧器长度尺度。 OH *化学发光和OH平面激光诱导的荧光(OH-PLIF)以在320Hz的横向声学扰动的等效比以0.7的等效比以0.7的富集的富氢火焰图像。通过控制扰动流动的两个扬声器之间的相位差来施加两种声学模式。 OH *化学发光图像表现出火焰长度降低,导致更密集的火焰阵列。此外,发现具有较高氢富集的火焰阵列对横向声学扰动更加稳健,通过降低全球热释放速率的波动降低。 OH-PLIF图像显示,即使在燃料贫条件下,具有较高的氢气富集的火焰为V-to M形火焰形状转变,从而提高燃烧稳定性。 OH-PLIF图像也用于通过光谱适当的正交分解(SPOD)的火焰稳定性分析。 Spod分析显示燃料稀释操作下的火焰波动结构的富集富集。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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