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Surface-to-bed heat transfer in fluidised beds of fine particles

机译:细颗粒流化床中的表面到床的传热

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摘要

This work reports experimental results on the heat transfer between a fluidised bed of fine particles and a submerged surface. Experiments have been carried out using different bed materials (polymers, ballotini, corundum, carborundum and quartz sand) with Archimedes number between 2 and 50. Dry air at ambient pressure and temperature has been used as fluidising gas. Three different exchange surfaces, namely a sphere and two cylinders with different base diameter and same height, have been used.Experimental results show that the heat transfer coefficient increases with particle Archimedes number and is almost independent from particle thermal conductivity for K_p/K_g>30. Finally, the comparison of heat transfer coefficient for the different surfaces shows that the effect of the surface geometry may account for a 30% variation in the heat transfer coefficient, with higher differences occurring for coarser particles.
机译:这项工作报告了关于细颗粒流化床与浸没表面之间传热的实验结果。已经使用具有2至50的阿基米德数的不同床层材料(聚合物,ballotini,刚玉,金刚砂和石英砂)进行了实验。在环境压力和温度下的干燥空气已用作流化气体。实验中使用了三种不同的交换表面,即一个球体和两个具有不同底径和相同高度的圆柱体。实验结果表明,当K_p / K_g> 30时,传热系数随阿基米德数的增加而增加,并且几乎与粒子的导热率无关。 。最后,对不同表面的传热系数的比较表明,表面几何形状的影响可能会导致传热系数发生30%的变化,对于较粗的颗粒会出现更大的差异。

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