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Experiments on the temperature distribution in the solid bed of rotary drums

机译:转鼓固体床内温度分布的实验

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In rotary drum processes, the temperature distribution inside the bed is of key importance in improving product quality. Temperature differences in the solid bed could be caused by motion behavior, chemical reaction and heat transfer. The radial and circumferential temperature profiles in an indirectly heated rotary drum were measured using 15 Type K thermocouples assembled on both rotating and fixed rods that were attached inside the drum. The experiment was conducted with a constant filling degree and a constant rotational speed. Glass beads with a defined particle diameter were used as test material. The results show that temperature differs in the circumferential and radial direction. In radial direction, the temperature decreases from the inner wall to the boundary line in the passive layer, however, the temperature increased from the boundary line to the bed surface in the active layer. The temperature gradient in the upper part is lesser than the lower part of the boundary layer due to mixing of particles. A normalized temperature difference was calculated to show the temperature difference over time during the heating phase of the drum. The result obtained from the normalized temperature difference can give insight on how to predict the temperature difference inside the bed for other temperature ranges. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在转鼓工艺中,床内的温度分布对于提高产品质量至关重要。固体床中的温差可能是由运动行为,化学反应和热传递引起的。使用15个K型热电偶测量间接加热的转鼓中的径向和圆周温度分布,这些K型热电偶安装在安装在转鼓内部的旋转杆和固定杆上。以恒定的填充度和恒定的转速进行实验。具有确定粒径的玻璃珠用作测试材料。结果表明,温度在圆周方向和径向方向上都不同。在径向方向上,温度从钝化层中的内壁到边界线降低,但是,温度从边界层到活性层中的床层表面升高。由于颗粒的混合,上部的温度梯度小于边界层的下部。计算归一化的温度差以显示滚筒加热阶段中随时间变化的温度差。从标准化的温差获得的结果可以为如何预测其他温度范围的床内温差提供深刻见解。 (C)2016 Elsevier Ltd.保留所有权利。

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