arrow
返回

Stability analysis in solid-liquid fluidized beds: Experimental and computational

delete2014-11-01
delete40
PRE
AI
S
Swapnil V. Ghatage
Z
Zhengbiao Peng
M
Mayur J. Sathe
E
Elham Doroodchi
N
Nitin Padhiyar
B
Behdad Moghtaderi
J
Jyeshtharaj B. Joshi
G
Geoffrey M. Evans *
DOI:10.1016/j.cej.2014.06.026delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
In this study the transition from homogeneous to heterogeneous flow in a solid-liquid fluidized bed (SLFB) is examined both experimentally and numerically. The experimental apparatus comprised a refractive index-matched SLFB, comprising 5 mm diameter borosilicate glass and sodium iodine solution, which allowed for both instantaneous particle image velocimetry of the liquid flow field and solids hold-up measurements to be undertaken for superficial liquid velocities in the range of 0.06-0.22 m/s. The motion of individual, spherical steel balls (with diameters 6, 7, 8, 9 mm) was then tracked as it settled through the fluidized bed for differing superficial liquid velocities. It was observed that, for all the steel balls covered in this work, there was a change in slope in their respective classification velocity curves at a superficial liquid velocity of 0.08 m/s. This value was very close to the critical velocity of 0.085 m/s predicted from 1-D linear stability analysis; and therefore deemed to be the critical condition that marked the transition from homogeneous to non-homogenous flow. It is proposed that the change in slope of the classification velocity curve is due to the encounter of the settling foreign particles with liquid bubbles whose presence marks the onset of heterogeneous flow. Additional computational analysis, involving both Eulerian-Eulerian (E-E) and Eulerian-Lagrangian (E-L) approaches, is used to confirm the presence of liquid bubbles at a critical liquid hold-up of 0.54, which corresponds to that predicted from 1-D linear stability analysis. In summary, the study has highlighted that experimentally the transition condition for a SLFB can be obtained simply by observing the behavior of the classification velocity of a single foreign particle at different superficial liquid velocities. This transition condition was found to agree with the 1D linear stability criterion, Eulerian-Eulerian CFD (3D) and Eulerian-Lagrangian DEM (3D) approaches. (C) 2014 Elsevier B.V. All rights reserved.
Keyword:
Fluidized beds
Stability
Computational fluid dynamics
Discrete element modeling
Particle image velocimetry
AI总结

AI总结

对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

Chemical Engineering Journal 封面图
Chemical Engineering Journal
IF:
13.2
论文数:
7.5W
被引数:
48.5W

机构

I
institute of chemical technology - mumbai
学者数:
3.5K
论文数: 3.3K
被引数: 4
I
indian institute of technology system (iit system)
学者数:
9.5W
论文数: 9.9W
被引数: 93
I
indian institute of technology (iit) - gandhinagar
学者数:
989
论文数: 804
被引数: 2
学者 查看更多机构
引用论文

引用论文

err分享
err收藏
Identification and characterization of flow structures in chemical process equipment using multiresolution techniques
err2008-11-01
err37
PREAI
errDeshpande, Sagar S.; Joshi, Jyeshtharaj B.; Kumar, V. Ravi; Kulkarni, B. D.
err分享
err收藏
err
IF0
err
err0
PREAI
err
err分享
err收藏
学者 查看更多内容