首页> 外文期刊>Chemical Engineering Science >Extension and validation of the particle segregation model for bubbling gas-fluidized beds of binary mixtures
【24h】

Extension and validation of the particle segregation model for bubbling gas-fluidized beds of binary mixtures

机译:二元混合物鼓泡气化床颗粒分离模型的扩展和验证

获取原文
获取原文并翻译 | 示例
       

摘要

The present work elaborates on the Particle Segregation Model (PSM) recently developed (Di Maio et al., 2012. Powder Technology 226, 180-188) to address the prediction of the "segregation direction" in fluidized beds, i.e. the flotsam/jetsam behavior of the solid components in the bubbling bed. In the original derivation, the PSM was obtained in the limit of viscous flow, i.e. for particle Reynolds' number up to 5. In the present contribution we prove that its formulation is more general, and that it can be extended without modifications to any flow regime. Starting from the force balance on one particle, the competition of mechanisms in mixtures whose components' size difference effect counteracts that of density difference is contemplated. The macroscopic result is expressed, analytically and without adjustable parameters, in terms of the size ratio, density ratio, voidage and bed composition. The knowledge of the segregation direction can be combined with a comparison of the pure components' minimum fluidization velocities yielding, although only under the complete segregation hypothesis, a prediction of the different segregation/fluidization patterns. Extensive model validation is carried out by: (i) comparison of the predicted segregation direction against many experimental observations reported in the literature (53 systems) and with tests (7 systems) carried out in the present work; (ii) visualization in a 2D rig of segregated beds predicted to exhibit a layer fluidized below the stagnant rest of the material; (iii) observation of float/sink behavior of few large spheres immersed in the bubbling bed. Agreement for nearly all the considered systems is found, with remarkable segregation reversal predictions with bed composition for three of them.
机译:本工作阐述了最近开发的颗粒分离模型(PSM)(Di Maio等人,2012。Powder Technology 226,180-188),以解决流化床中的“分离方向”的预测问题,即浮选/喷射鼓泡床中固体成分的行为。在最初的推导中,PSM是在粘性流的极限下获得的,即对于雷诺数最大为5的颗粒。在目前的贡献中,我们证明了其公式更通用,并且可以扩展而无需修改任何流量政权。从对一个粒子的力平衡出发,可以考虑混合物中各组分的尺寸差异作用与密度差异相反的机理的竞争。宏观结果在尺寸比,密度比,空隙率和床组成方面以解析方式表示,没有可调整的参数。分离方向的知识可以与纯组分最小流化速度的比较相结合,尽管仅在完全分离假设下才能预测不同的分离/流化方式。通过以下方式进行广泛的模型验证:(i)将预测的偏析方向与文献(53个系统)中报道的许多实验观察结果以及本工作中进行的测试(7个系统)进行比较; (ii)在2D分离床设备中进行可视化处理,预计将在物料的停滞状态下流化一层; (iii)观察浸入冒泡床的几个大球体的漂浮/下沉行为。几乎所有已考虑的系统都达成了一致,其中三个组的床组成具有明显的偏析反转预测。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号