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Circulation of an object immersed in a bubbling fluidized bed

机译:浸入冒泡的流化床中的物体的循环

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The motion of a large object in a bubbling fluidized bed was experimentally studied using digital image analysis (DIA). The experiments were performed in a 2-D bubbling fluidized bed with glass spheres as bed material. The object motion was measured using non-intrusive tracking techniques, while independent measurements of the dense phase velocity (using Particle Image Velocimetry (PIV)) and bubble velocity (using DIA) were carried out. The effect of the dimensionless gas velocity on the object motion was also analyzed.This work characterizes the circulation patterns of an object with a density similar to that of the bed, but much larger in size. Object size and density remained constant throughout the experiments. A comparison between the motion of sinking objects and the motion of the dense phase provided evidence of the feeble effect of buoyant forces on the motion of sinking objects. In contrast, the motion of rising objects is linked to the motion of bubbles. It was found that objects may be raised to the surface of the bed either by the action of a single bubble (one-jump) or by several passing bubbles (multiple-jumps). Based on these results, the circulation time of objects throughout the bed is a function of two parameters: the maximum depth attained by an object and the number of jumps during its rising path. This relationship is presented along and the multiple-jumps phenomenon is studied in detail. Finally, an estimate of the circulation time of an object based on semi-empirical expressions is presented for different dimensionless gas velocities. The probability density function of the circulation time shows two different modes as the object was less prone to be raised at moderate depths. The estimate of the circulation time was found to be in good agreement with our experimental data.
机译:使用数字图像分析(DIA),通过实验研究了鼓泡流化床中大型物体的运动。实验在以玻璃球为床材料的二维鼓泡流化床中进行。使用非侵入式跟踪技术测量对象的运动,同时对稠密相速度(使用粒子图像测速(PIV))和气泡速度(使用DIA)进行独立测量。分析了无量纲气体速度对物体运动的影响。这项工作表征了物体的循环模式,其密度与床的密度相似,但尺寸更大。在整个实验过程中,物体的大小和密度保持不变。沉没物体运动与密相运动之间的比较提供了浮力对沉没物体运动的微弱影响的证据。相反,上升物体的运动与气泡的运动有关。已经发现,物体可能通过单个气泡(一个跳跃)或几个经过的气泡(多个跳跃)的作用而被提升到床的表面。根据这些结果,物体在整个床层中的循环时间是两个参数的函数:一个物体所能达到的最大深度以及其上升路径中的跳跃次数。同时介绍了这种关系,并详细研究了多跳现象。最后,针对不同的无量纲气体速度,提出了基于半经验表达式的物体循环时间的估计值。循环时间的概率密度函数显示出两种不同的模式,因为在中等深度下物体不易被抬起。发现循环时间的估计与我们的实验数据非常吻合。

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