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Assessing the role of turbulence-radiation interactions in hydrogen-enriched oxy-methane flames

机译:评估湍流-辐射相互作用在富氢氧甲烷火焰中的作用

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Statistical analysis of scalar data obtained from single-shot laser measurements in four turbulent oxy-fuel flames were carried out to develop a functional relationship for the temperature self -correlation (TSC) term for use in Turbulence Radiation Interaction (TRI) models. The developed relationship was found to be invariant with the hydrogen enrichment in the fuel, fuel jet Reynolds numbers and correlated reasonably well with the root mean -square of temperature (T-rms). The TSC and the absorption-coefficient temperature correlation (ATC) were both modeled in terms of T-rms and employed as add-on functions in time-averaged flame simulations. Including the effects of TRI enhanced the radiant fraction by 40% and reduced outlet CO concentrations by 30% across all flames. Further, there was significant flame absorption due to the high concentrations of radiatively participating gases that would deem optically thin radiation approximations in these flames to be erroneous. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:对在四个湍流的含氧燃料火焰中单次激光测量获得的标量数据进行统计分析,以开发用于湍流辐射相互作用(TRI)模型的温度自相关(TSC)项的函数关系。发现发展的关系与燃料中的氢富集,燃料射流雷诺数不变,并且与温度的均方根(T-rms)合理地相关。 TSC和吸收系数温度相关性(ATC)均以T-rms进行建模,并用作时间平均火焰模拟中的附加函数。包括TRI的影响,所有火焰都将辐射分数提高了40%,出口CO浓度降低了30%。此外,由于高浓度的辐射参与气体而导致显着的火焰吸收,这些气体会认为这些火焰中的光学薄辐射近似是错误的。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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