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A new empirical equation for minimum spouting/spout-fluidization velocity in draft tube spout-fluid beds at elevated temperature

机译:高温下尾水管出水流化床最小出水/出水流化速度的新经验方程式

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Draft tube spout-fluid beds have been widely used in drying, coating, and granulation processes. In these processes, the spout-fluid reactor is always operated at gas temperatures that exceed ambient conditions. Therefore, one objective of draft tube spout-fluid bed research is to determine the critical factors that affect the minimum spouting velocity (U-ms) and the minimum spout-fluidization velocity (U-msf) at high temperatures. In this study, four types of particles were used to study the resulting pressure drops. U-ms and U-msf were used in a conical draft tube spout-fluid bed at temperatures of 293-500K. In addition, a series of operating conditions and geometric configurations were investigated to systematically study the factors that affect U-ms and U-msf. Overall, U-ms and U-msf increased as the static bed height, entrainment zone height, draft tube diameter, and particle diameter increased. In contrast, U-ms decreased as the superficial fluidizing gas velocity and spout nozzle diameter increased. In addition, U-msf increased as the superficial fluidizing gas velocity, spout nozzle diameter, and temperature increased. Furthermore, as the fluidizing gas flow increased, the minimum spouting velocity shifted from increasing to decreasing as the temperature gradually increased. Two general correlations between the U-ms and U-msf values and the above factors were proposed. In addition, the influences of operating conditions and geometrical parameters on the minimum spouting velocity should be considered in the design and use of draft tube spout-fluid beds.
机译:引流管喷流床已广泛用于干燥,包衣和制粒过程。在这些过程中,喷嘴流体反应器始终在超过环境条件的气体温度下运行。因此,引流管喷流床研究的目的之一是确定影响高温下最小喷流速度(U-ms)和最小喷流流化速度(U-msf)的关键因素。在这项研究中,使用了四种类型的颗粒来研究产生的压降。 U-ms和U-msf用于温度为293-500K的锥形引流管喷流床中。此外,还研究了一系列工作条件和几何构型,以系统地研究影响U-ms和U-msf的因素。总体而言,U-ms和U-msf随着静态床层高度,夹带区高度,引流管直径和颗粒直径的增加而增加。相反,随着表面流化气体速度和喷嘴直径的增加,U-ms减小。另外,随着表观流化气体速度,喷嘴直径和温度的升高,U-msf增大。此外,随着流化气流的增加,最小喷射速度随着温度的逐渐升高而从增加变为减少。提出了U-ms和U-msf值与上述因素之间的两个一般相关性。此外,在设计和使用尾水管出水流化床时,应考虑操作条件和几何参数对最小出水速度的影响。

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