首页> 外文会议>International Conference on Fluidized Bed Combustion; 20050522-25; Toronto(CA) >INFLUENCE OF FLUIDIZATION VELOCITY ON BED DEFLUIDIZATION IN FLUIDIZED BED COMBUSTORS
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INFLUENCE OF FLUIDIZATION VELOCITY ON BED DEFLUIDIZATION IN FLUIDIZED BED COMBUSTORS

机译:流化速度对流化床燃烧器内流化床的影响

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摘要

Effects of superficial gas velocity and bed particle size on bed defluidization during biomass combustion were investigated. Sampled bed particles from four different large-scale circulating- and bubbling fluidized bed combustors, using biomass as fuel, were collected and analyzed. The bed particles from each fluidized bed unit were divided into small and large particle size fractions. The results indicate no significant difference in elemental compositions between small and large coated bed particles but the ratio of coating thickness to the mean particle diameter was higher for the small particles compared to the large ones. Controlled fluidized bed agglomeration tests revealed strong influence from fluidization velocity on initial defluidization temperatures at lower velocities, but little effect at higher velocities. Influence of bed particle size on initial defluidization temperature varied depending on operating conditions. Finally, a model based on viscous flow sintering is proposed for the relation between agglomeration temperature and superficial gas velocity. The model predictions are in good agreement with experimental data.
机译:研究了表观气体速度和床粒度对生物质燃烧过程中床脱液的影响。收集并分析了以生物质为燃料的四个不同的大型循环流化床和鼓泡流化床燃烧器的采样床颗粒。将来自每个流化床单元的床颗粒分成小颗粒部分和大颗粒部分。结果表明,小颗粒床和大颗粒床之间的元素组成没有显着差异,但与大颗粒相比,小颗粒的涂层厚度与平均粒径之比更高。受控流化床附聚试验表明,在较低速度下,流化速度对初始脱液温度的影响很大,而在较高速度下,影响很小。床粒度对初始脱液温度的影响根据操作条件而变化。最后,针对团聚温度与表观气体速度之间的关系,提出了一种基于粘性流烧结的模型。模型预测与实验数据吻合良好。

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