首页> 外文期刊>International journal of hydrogen energy >Effects of hydrocarbon impurities, vibrational relaxation, and boundary-layer-induced pressure rise on the ignition of H_2-O_2-Ar mixtures behind reflected shock waves
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Effects of hydrocarbon impurities, vibrational relaxation, and boundary-layer-induced pressure rise on the ignition of H_2-O_2-Ar mixtures behind reflected shock waves

机译:烃杂质,振动松弛和边界层诱导的压力上升对反射冲击波后面H_2-O_2-AR混合物点火的影响

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The results of an experimental and theoretical study of the ignition of H-2-O-2-Ar mixtures behind reflected shock waves are reported. The experiments are performed with mixtures containing from 0.15 to 8.0% H-2 and from 0.75 to 2.0% O-2 at temperatures of 980-1800 K and a total gas concentration of (1.0 +/- 0.1) x 10(-5) mol/cm(3). The progress of the process is monitored by recording the time evolution of the pressure behind the reflected shock wave and the intensity of the chemiluminescence of electronically excited OH* radicals (lambda = 308 +/- 2.5 nm). A numerical model capable of predicting the effects of additional factors, such as hydrocarbon impurities, the vibrational relaxation of the test mixture, and boundary-layer-induced pressure rise, is developed and used to simulate our own and published experimental data on the ignition of H-2-O-2-Ar mixtures. It is demonstrated that the best agreement between experimental and theoretical results is achieved when all the additional factors are taken into account. A sensitivity analysis shows that the effects of the vibrational relaxation of the test mixture and the presence of hydrocarbon impurities are significant only for lean mixtures, whereas the influence of the boundary-layer-induced pressure rise is important across a wide range of stoichiometries at long ignition delay times. Additionally, an analytical model is developed, which takes into account the finite time of the chain-propagation reactions O + H-2 and OH + H-2. The predictions of the numerical and analytical models are demonstrated to be in close agreement for a wide range of mixture compositions and experimental conditions. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:报道了反射冲击波后面的H-2-O-2-AR混合物点火的实验和理论研究的结果。在980-1800k的温度下,用含有0.15至8.0%H-2和0.75至2.0%O-2的混合物进行实验,以及(1.0 +/- 0.1)×10(-5)的总气体浓度mol / cm(3)。通过记录反射冲击波后面的压力的时间演变和电子激发哦*自由基的化学发光的强度来监测该过程的进展(Lambda = 308 +/- 2.5nm)。开发了一种能够预测额外因素,例如烃杂质,试验混合物的振动松弛和边界层诱导的压力升高的数值模型,并用于模拟我们自己和出点点火的实验数据H-2-O-2-AR混合物。结果表明,当考虑所有额外因素时,实现了实验和理论结果之间的最佳协议。敏感性分析表明,对于瘦混合物,测试混合物的振动松弛和烃杂质的存在的影响是显着的,而边界层诱导的压力升高的影响在长期以来的各种组合物中是重要的点火延迟时间。另外,开发了分析模型,其考虑了链繁殖反应O + H-2和OH + H-2的有限时间。对数值和分析模型的预测被证明在广泛的混合物组合物和实验条件下密切一致。 (c)2021氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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