化工学报 ›› 2008, Vol. 59 ›› Issue (10): 2490-2497.

• 多相流和计算流体力学 • 上一篇    下一篇

气固流化床中细长颗粒数量浓度分布的数值研究

蔡杰;吴晅;袁竹林   

  1. 东南大学能源与环境学院
  • 出版日期:2008-10-05 发布日期:2008-10-05

Number concentration of slender particles in gassolids circulating fluidized bed

CAI Jie; WU Xuan; YUAN Zhulin   

  • Online:2008-10-05 Published:2008-10-05

摘要:

细长颗粒的循环流化在工业生产中具有非常广泛的应用背景,如生物质秸秆在循环流化床中的燃烧、烟丝在循环流化床中的干燥或加湿等。由于细长颗粒具有六自由度,因此,其运动姿态比球形颗粒复杂,其在流化床内的流化特性也不同于球形颗粒。细长颗粒的数量浓度分布是细长颗粒流化特性的重要特征之一。根据直接模拟Monte Carlo(DSMC)方法的基本思想及刚体动力学原理,建立了考虑细长颗粒间相互碰撞的三维细长颗粒流化运动数学模型,并采用此模型对某一实际流化床内的气固两相流场进行了模拟研究。在实验提升管内,所有物料中小长径比的细长颗粒最先由提升管的近壁处到达提升管出口。细长颗粒在流化过程中有明显的迁移和絮团现象。在流化状态下,细长颗粒的数量浓度分布基本不随入口风速发生变化。

关键词:

细长颗粒, 循环流化, 数量浓度, 三维细长颗粒运动模型, 颗粒间碰撞, 絮团, 迁移

Abstract:

Circulating fluidization of slender particles is used widely in industrial production, for example, combustion of biomass stalks and drying or wetting of cuttobaccoThe movement attitude of slender particles is more complicated than that of the spherical particle owing to the slender particles〖DK〗’six degrees of freedom, and thus there are some differences in fluidizing behavior between slender particle and spherical particleNumber concentration is one of the most important features of fluidizing behavior of slender particlesBased on the direct simulation Monte Carlo (DSMC) method, rigid body dynamics and momentum conservation law, a three-dimensional motion model of slender particles, including the inter-particle collision mathematical model, was establishedThe gas-solids flow in an actual circulating fluidized bed was simulated by using the current model, and some number concentration features of slender particles were capturedIn the experimental riser, among all the slender particles, the slender particles with less slenderness firstly arrived at the exit from the near wall regions of the riserThere existed such evident phenomena as floc, migration and so on in the process of fluidizationIn the fluidization state, the number concentration of slender particles did not change evidently with entrance air speed.

Key words:

细长颗粒, 循环流化, 数量浓度, 三维细长颗粒运动模型, 颗粒间碰撞, 絮团, 迁移