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Experimental investigation of coal combustion in coal-laden methane jets

机译:煤层煤喷射中煤燃烧的实验研究

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Combustion characteristics of pulverized coal were studied in a methane jet that entrained pulverized coal particles using Venturi effect. Particle Streak Velocimetry performed on coal-laden jets provided valuable insight into the relative velocity of entrained coal particles with respect to the fluid velocity. High-resolution still images and high-speed videos of laser-sheet light scattered by the coal particles were used in order to determine the mode of interaction of entrained coal particles with the flame front. The effect of combustion on the entrained coal particles was analyzed both in terms of macrostructure and microstructure using a combination of loose density measurement, Fraunhofer-diffraction-based particle size distribution measurements and Scanned Electron Microscopy. It was established that the combustion process did not have any significant effect on the macrostructure of the coal particles. At the same time, remarkable changes were observed in particle microstructure. Based on these findings, it was established that the coal particles underwent only partial devolatilization during their passage through the flame due to the small residence time. Hence it was concluded, that oxidation was basically a surface phenomenon. The effect of oxidizer composition on the combustion of coal particles was studied by comparing the measured particle size distributions for CH_4/air, CH_4/O_2/CO_2 and CH_4/O_2 flames.
机译:研究了粉煤煤的燃烧特性,在夹带粉碎煤颗粒使用Venturi效应。在煤带喷射器上执行的颗粒条形测速器提供了有价值的洞察夹带煤颗粒相对于流体速度的相对速度。使用由煤颗粒散射的激光片光的高分辨率静止图像和高速视频,以确定夹带煤颗粒与火焰前部的相互作用模式。根据宏观结构,使用松散的密度测量,Fraunhofer-衍射的粒度分布测量和扫描电子显微镜的组合,分析燃烧对夹带煤颗粒的影响。建立了燃烧过程对煤颗粒的宏观结构没有任何显着影响。同时,在粒子微观结构中观察到显着变化。基于这些发现,建立了煤颗粒在通过火焰引起的情况下仅接受部分脱挥发,由于较小的停留时间。因此,得出结论,氧化基本上是表面现象。通过比较CH_4 /空气,CH_4 / O_2 / CO_2和CH_4 / O_2火焰的测量粒度分布来研究氧化剂组合物对煤颗粒燃烧的影响。

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