首页> 外文期刊>JSME International Journal. Series B, Fluids and Thermal Engineering >Observation of Detailed Structure of Turbulent Pulverized-Coal Flame by Optical Measurement: Part 2, Instantaneous Two-Dimensional Measurement of Combustion Reaction Zone and Pulverized-Coal Particles
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Observation of Detailed Structure of Turbulent Pulverized-Coal Flame by Optical Measurement: Part 2, Instantaneous Two-Dimensional Measurement of Combustion Reaction Zone and Pulverized-Coal Particles

机译:光学测量观察粉煤湍流火焰的详细结构:第2部分,燃烧反应区和粉煤颗粒的瞬时二维测量

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摘要

The purpose of this study is to elucidate of the primary air combustion zone in pulverized-coal combustion by means of advanced laser-based diagnostics with high temporal and spatial resolutions. An open-type burner is fabricated to apply various optical measurement techniques. In this paper, simultaneous measurement of OH-planar laser-induced fluorescence (PLIF) and Mie scattering images of pulverized-coal particles is performed, and the spatial relationship between the combustion reaction zone and the pulverized-coal particle zone is examined. It is found that, in the upstream region, combustion reaction occurs only in the periphery of the clusters of pulverized-coal particles where the high-temperature burnt gas of a methane pilot flame is entrained and oxygen supply is sufficient, and that, in the downstream region, however, combustion reaction can be seen also within the clusters of pulverized-coal particles. This is because, in the downstream region, the devolatilization process of the coal particles proceeds with the temperature rise of the particles, and the mixing process between the volatile matters and ambient air is prompted. From these results, it can be said that the present diagnostic techniques are effective for evaluating the pulverized-coal flames.
机译:这项研究的目的是借助具有高时空分辨率的先进的基于激光的诊断方法,来阐明粉煤燃烧中的主要空气燃烧区。制造开放式燃烧​​器以应用各种光学测量技术。本文同时测量了粉煤颗粒的OH平面激光诱导荧光(PLIF)和Mie散射图像,并研究了燃烧反应区与粉煤颗粒区之间的空间关系。结果发现,在上游区域,燃烧反应仅发生在煤粉颗粒簇的周围,在煤粉颗粒簇的周围夹带有甲烷引燃火焰的高温燃烧气体,并且氧气供应充足,并且然而,在下游区域,在粉煤颗粒的团簇内也可以看到燃烧反应。这是因为,在下游区域中,煤颗粒的脱挥发分过程随着颗粒的温度升高而进行,并且促进了挥发性物质与环境空气之间的混合过程。从这些结果可以说,当前的诊断技术对于评估煤粉火焰是有效的。

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