首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Influence of pulverized coal properties on heat release region in turbulent jet pulverized coal flames
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Influence of pulverized coal properties on heat release region in turbulent jet pulverized coal flames

机译:煤粉性质对湍流射流煤粉火焰中放热区的影响

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摘要

The effects of pulverized coal properties, volatile matter, particle size and moisture content, on the heat release region in turbulent jet pulverized coal flames were investigated experimentally. To understand the accuracy of line of sight measurement in the two-dimensional (2-D) visualization, point measurements of chemiluminescence intensity by cassegrain optics were also conducted. The heat release region for the structure of pulverized coal flame was observed through visualization by CH* chemiluminescence image with an intensified high-speed camera, and by CH* chemiluminescence intensity for local point measurements. The streamwise length of the heat release region based on 2-D visualizations was about 11.4% longer than that of point measurements and increased proportionally to the volatile matter content. The temperature rise for 35-45μm coal particles was faster than that for 75-90μm particles, which resulted in a shift of reaction region toward upstream direction. The length of heat release region depends upon the particle size and the volatile matter. However, the coal moisture content less than 15% shows minor effect on the heat release region comparison to volatile matter and coal size within our experimental conditions.
机译:实验研究了粉煤特性,挥发物,粒度和水分含量对湍流射流粉煤火焰放热区域的影响。为了了解二维(2-D)可视化中视线测量的准确性,还使用了c晶光学技术对化学发光强度进行了点测量。通过使用增强型高速相机的CH *化学发光图像和CH *化学发光强度进行局部测量,可以观察到煤粉火焰结构的放热区域。基于2-D可视化的放热区域的沿流方向的长度比点测量的沿流方向的长度长约11.4%,并且与挥发物含量成比例地增加。 35-45μm煤粉的升温快于75-90μm煤粉的升温,这导致反应区域向上游方向移动。放热区域的长度取决于粒度和挥发性物质。但是,在我们的实验条件下,与挥发物和煤的大小相比,煤中的水分含量低于15%时,对放热区域的影响较小。

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