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Combustion behavior profiling of single pulverized coal particles in a drop tube furnace through high-speed imaging and image analysis

机译:通过高速成像和图像分析对单个粉煤颗粒在落管炉中的燃烧行为进行分析

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摘要

Experimental investigations into the combustion behaviors of single pulverized coal particles are carried out based on high-speed imaging and image processing techniques. A high-speed video camera is employed to acquire the images of coal particles during their residence time in a visual drop tube furnace. Computer algorithms are developed to determine the characteristic parameters of the particles from the images extracted from the videos obtained. The parameters are used to quantify the combustion behaviors\udof the burning particle in terms of its size, shape, surface roughness, rotation frequency and luminosity. Two sets of samples of the same coal with different particle sizes are studied using the techniques developed. Experimental results show that the coal with different particle sizes exhibits distinctly different combustion behaviors. In particular, for the large coal particle (150–212 lm), the combustion of volatiles and char takes place sequentially with clear fragmentation at the early stage of the char combustion.\udFor the small coal particle (106–150 lm), however, the combustion of volatiles and char occurs simultaneously\udwith no clear fragmentation. The size of the two burning particles shows a decreasing trend with\udperiodic variation attributed to the rapid rotations of the particles. The small particle rotates at a frequency\udof around 30 Hz, in comparison to 20 Hz for the large particle due to a greater combustion rate.\udThe luminous intensity of the large particle shows two peaks, which is attributed to the sequential combustion\udof volatiles and char. The luminous intensity of the small particle illustrates a monotonously decreasing trend, suggesting again a simultaneous devolatilization/volatile and char combustion.
机译:基于高速成像和图像处理技术对单粉煤颗粒的燃烧行为进行了实验研究。使用高速摄像机来获取煤颗粒在可视滴管炉中停留期间的图像。开发了计算机算法以从从获得的视频中提取的图像中确定粒子的特征参数。这些参数用于根据其大小,形状,表面粗糙度,旋转频率和发光度来量化燃烧粒子的燃烧行为。使用开发的技术研究了两组具有不同粒径的相同煤的样品。实验结果表明,不同粒径的煤具有明显不同的燃烧行为。特别是对于较大的煤颗粒(150–212 lm),挥发物和炭的燃烧在炭燃烧的早期阶段以清晰的碎片顺序发生。\ ud对于较小的煤颗粒(106–150 lm), ,挥发物和炭的燃烧同时发生,没有明显的碎片。两个燃烧粒子的尺寸显示出减小的趋势,由于粒子的快速旋转,其\ u周期变化。由于较大的燃烧速率,小颗粒的旋转频率为\ udof约30 Hz,而大颗粒的旋转频率为20 Hz。\ ud大颗粒的发光强度显示两个峰值,这归因于顺序燃烧\ udof挥发物和炭。小颗粒的发光强度显示出单调下降的趋势,再次表明脱挥发分/挥发物和炭燃烧同时发生。

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