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Homogeneous ignition during fuel-rich H-2/O-2/N-2 combustion in platinum-coated channels at elevated pressures

机译:高压下铂涂层通道中富燃料的H-2 / O-2 / N-2燃烧过程中的均相点火

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The hetero-/homogeneous combustion of fuel-rich H-2/O-2/N-2 mixtures (equivalence ratios phi = 2.5-6.5) was investigated experimentally and numerically in a platinum-coated channel at pressures p = 114 bar. One-dimensional Raman measurements of major gas-phase species concentrations over the catalyst boundary layer assessed the heterogeneous combustion processes, while planar laser induced fluorescence (LIF) of OH at pressures below similar to 5 bar and of hot-O-2 at pressures above similar to 5 bar (wherein OH-LIF was not applicable) determined the onset of homogeneous ignition. Simulations were carried out using a 2-D code with detailed hetero-/homogeneous chemical reaction schemes and transport. Both Raman measurements and numerical simulations attested a transport-limited catalytic conversion of the deficient O-2 reactant over the gas-phase induction zones. The agreement between measured and predicted homogeneous ignition distances was better than 12%, thus establishing the aptness of the employed hetero/homogeneous chemical reaction mechanisms. Analytical homogeneous ignition criteria revealed that the catalytic reaction pathway introduced a scaling factor 1/p to the homogeneous ignition distances. This outcome, in conjunction with the intricate pressure dependence of the gaseous ignition chemistry of hydrogen, yielded shorter homogeneous ignition distances at 14 bar compared to 1 bar. The practical implication for gas turbine burners utilizing the catalytic-rich/gaseous-lean combustion concept was that the high operating pressures of such systems prcimoted the onset of homogeneods Ignition within the catalytic module. Sensitivity analysis has finally identified the key catalytic and gaseous reactions affecting homogeneous ignition. (C) 2017 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:在压力为p = 114 bar的铂涂层通道中,通过实验和数值研究了富燃料的H-2 / O-2 / N-2混合物(当量比phi = 2.5-6.5)的异质/均匀燃烧。催化剂边界层上主要气相物种浓度的一维拉曼测量评估了异相燃烧过程,而平面激光诱导的OH(压力低于5 bar)和热O-2的荧光(LIF)压力高于5 bar类似于5 bar(其中OH-LIF不适用)确定了均匀点火的开始。使用带有详细异质/均质化学反应方案和传输的二维码进行模拟。拉曼测量和数值模拟均证明了在气相感应区上缺陷O-2反应物的传输受限催化转化。测量和预测的均匀点火距离之间的一致性优于12%,因此确定了所采用的异质/均质化学反应机理的适用性。分析均质点火标准表明,催化反应路径对均质点火距离引入了比例因子1 / p。该结果与氢气的气体点火化学的复杂压力依赖性相结合,在14 bar时产生的均匀点火距离比1 bar短。利用富催化/贫气燃烧概念的燃气轮机燃烧器的实际含义是,这种系统的高工作压力导致了催化模块内同系物着火的开始。敏感性分析最终确定了影响均相点火的关键催化反应和气态反应。 (C)2017燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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