4.6 Article

Spherical turbulent flame propagation of pulverized coal particle clouds in an O2/N2 atmosphere

期刊

PROCEEDINGS OF THE COMBUSTION INSTITUTE
卷 37, 期 3, 页码 2935-2942

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.proci.2018.09.021

关键词

Coal combustion; Flame propagation; Turbulence intensity; Spherical flame; Turbulent combustion

资金

  1. JST research promotion program Sakigake (PRESTO) [JPMJPR 1542]

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The present study aims to clarify the effects of turbulence intensity and coal concentration on the spherical turbulent flame propagation of a pulverized coal particle cloud. A unique experimental apparatus was developed in which coal particles can be dispersed homogeneously in a turbulent flow field generated by two fans. Experiments on spherical turbulent flame propagation of pulverized coal particle clouds in a constant volume spherical chamber in various turbulence intensities and coal concentrations were conducted. A common bituminous coal was used in the present study. The flame propagation velocity was obtained from an analysis of flame propagation images taken using a high-speed camera. It was found that the flame propagation velocity increased with increasing flame radius. The flame propagation velocity increases as the turbulence intensity increases. Similar trends were observed in spherical flames using gaseous fuel. The coal concentration has a weak effect on the flame propagation velocity, which is unique to pulverized coal combustions in a turbulent field. These are the first reports of experimental results for the spherical turbulent flame propagation behavior of pulverized coal particle clouds. The results obtained in the present study are obviously different from those of previous pulverized coal combustion studies and any other results of gaseous fuel combustion research. (C) 2018 The Combustion Institute. Published by Elsevier Inc. All rights reserved.

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