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首页> 外文期刊>Fuel Processing Technology >Growth and gravity shedding of ash deposition layer in pulverized coal combustors
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Growth and gravity shedding of ash deposition layer in pulverized coal combustors

机译:煤粉燃烧器中灰分沉积层的生长和重力脱落

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Ash deposition on the furnace walls and on the tubes reduces the heat transfer efficiency. Hence, it seriously inhibits the stable boiler operation. The ash deposition needs to be removed to restore the heat transfer efficiency to the initial level. The ash deposition experiments for a typical bituminous coal were conducted to understand the mechanisms of growth and shedding of ash deposition. A water-cooled tube was inserted into a furnace, to which fly ash adhered. Based on video camera observations and measurements of the tube surface temperature, a residual layer remained on the tube after shedding of ash deposition was confirmed. A distribution of the particle packing fraction (PPF) of the deposits was calculated, using the pixel percentages of ash particles and pores in the cross-sectional scanning electron microscope (SEM) images obtained. In addition, the particle size distribution and chemical compositions were also analyzed by a computer-controlled SEM (CCSEM). As a result, the initial deposit consisted of a powder layer with a low PPF. Coalescence of the ash particle increased with the growth of the ash deposit. Based on the SEM image of the residual layer remaining after shedding, detachment of the ash deposit occurred in the low-strength powder layer. (C) 2015 Elsevier B.V. All rights reserved.
机译:灰分沉积在炉壁和炉管上会降低传热效率。因此,它严重地阻碍了锅炉的稳定运行。需要去除灰分沉积以将传热效率恢复到初始水平。进行了典型烟煤的灰分沉积实验,以了解灰分沉积的生长和脱落机理。将水冷管插入炉中,粉煤灰附着在炉上。根据摄像机的观察结果和管子表面温度的测量结果,在灰分沉积脱落之后,残留在管子上的残留层得以确认。使用获得的横截面扫描电子显微镜(SEM)图像中灰烬颗粒和孔的像素百分比,计算了沉积物的颗粒堆积分数(PPF)的分布。另外,还通过计算机控制的SEM(CCSEM)分析了粒度分布和化学组成。结果,初始沉积物由具有低PPF的粉末层组成。灰分颗粒的聚结随着灰分沉积物的增长而增加。基于脱落后残留的残留层的SEM图像,在低强度粉末层中发生了灰烬沉积的脱离。 (C)2015 Elsevier B.V.保留所有权利。

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