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Effects of porous media on partially premixed combustion and heat transfer in meso-scale burners fuelled with ethanol

机译:多孔介质对乙醇燃料的部分预混合燃烧和乙醇燃烧器中的燃烧和热传递的影响

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Porous media (PM) have the potential to enhance the flame stability and improve thermal performance in a micro/meso-scale burner. In this work, zirconia foam and high-porosity nickel foam are used in the meso-scale burners and partially premixed submerged combustion of liquid ethanol is achieved. An experimental investigation of the effects of foamed PM on flame structure, detailed temperature distributions, emissions, and thermal performance is undertaken. A blue flame can be observed in the nickel foam and the transient features of flame front is obtained. The flame front propagates intermittently when the combustion zone moves upstream. The maximum instantaneous flame speed in the PM is 6.519 mm/s and the average flame speed is 0.225 mm/s. The foamed PM in the meso-scale burners are shown to significantly improve the heat transfer efficiency. The burner in submerged combustion has a lower reaction zone temperature (806 degrees C vs. 1721 degrees C), lower exhaust gas temperature (419 degrees C vs. 1227 degrees C) and higher wall temperature than that with free flame. The heat transfer efficiency of the submerged flame is about twice that of the free flame. (C) 2021 Elsevier Ltd. All rights reserved.
机译:多孔介质(PM)具有增强火焰稳定性的潜力,并提高微/中间刻度燃烧器中的热性能。在这项工作中,氧化锆泡沫和高孔隙率镍泡沫用于中间刻度燃烧器,并达到部分预混地浸没的液体乙醇燃烧。采用泡沫PM对火焰结构,详细温度分布,排放和热性能的实验研究。可以在镍泡沫中观察到蓝色火焰,并且获得火焰前部的瞬态特征。当燃烧区移动上游时,火焰前沿间歇地传播。 PM中的最大瞬时火焰速度为6.519 mm / s,平均火焰速度为0.225mm / s。中间刻度燃烧器中的发泡PM显示出显着提高传热效率。浸没式燃烧中的燃烧器具有较低的反应区温度(806℃,1721℃),低于排气温度(419℃,1227℃),比具有自由火焰的壁温更高的壁温。浸没式火焰的传热效率约为自由火焰的两倍。 (c)2021 elestvier有限公司保留所有权利。

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