Flow development in a gas-solids downer fluidized bed

被引:35
作者
Zhang, H [1 ]
Zhu, JXJ [1 ]
Bergougnou, MA [1 ]
机构
[1] Univ Western Ontario, Dept Chem & Biochem Engn, London, ON N6A 5B9, Canada
关键词
downer reactor; flow development; cocurrent downflow; fluidized bed;
D O I
10.1002/cjce.5450770202
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The development of gas and solids flow structure was studied in a 9.5 m high and 0.10 m diameter, gas-solids cocurrent downflow circulating fluidized bed (downer). Local solids concentration and particle velocity were measured using two separate optical fibre probes at different radial positions on several axial levels along the downer. The results show that the flow development is significantly influenced by the operating conditions. For most of the conditions under which the experiments were conducted, the gas-solids flow reaches its fully developed zone within 3 to 8 m away from the entrance. On the other hand, the development zone can extend as long as the downer itself, under certain conditions. When the solids circulation rate is over 100 kg/m(2)s, an increasing solids circulation rate largely extends the length of radial flow development. It is found that the flow developments in the core and at the wall are not quite simultaneous. For solids concentration, the core develops more quickly at low gas velocities and the wall region develops faster at high gas velocities, For particle velocity, higher gas velocity speeds up the development of the wall region but does not significantly affect the development of the core region. The wall region is much more sensitive to the change of superficial gas velocity than the core region. At high superficial gas velocities (> 7 m/s), a "semi-dead" region is observed in the fully developed zone adjacent to the wall where the dilute solids are moving at a very low velocity.
引用
收藏
页码:194 / 198
页数:5
相关论文
共 10 条
[1]  
Hasatani M., 1991, CIRCULATING FLUIDIZE, P157
[2]   APPLICATION OF FIBER OPTIC REFLECTION PROBES TO THE MEASUREMENT OF LOCAL PARTICLE-VELOCITY AND CONCENTRATION IN GAS-SOLID FLOW [J].
HERBERT, PM ;
GAUTHIER, TA ;
BRIENS, CL ;
BERGOUGNOU, MA .
POWDER TECHNOLOGY, 1994, 80 (03) :243-252
[3]  
HERBERT PM, 1997, THESIS U W ONTARIO L
[4]   HYDRODYNAMICS OF COCURRENT DOWNFLOW CIRCULATING FLUIDIZED-BED (CDCFB) [J].
WANG, Z ;
BAI, D ;
JIN, Y .
POWDER TECHNOLOGY, 1992, 70 (03) :271-275
[5]   Effect of flow direction on axial solid dispersion in gas-solids cocurrent upflow and downflow systems [J].
Wei, F ;
Zhu, JX .
CHEMICAL ENGINEERING JOURNAL, 1996, 64 (03) :345-352
[6]  
Yang Y.L., 1991, CIRCULATING FLUIDIZE, VIII, P201
[7]   A novel calibration procedure for a fiber optic solids concentration probe [J].
Zhang, H ;
Johnston, PM ;
Zhu, JX ;
de Lasa, HI ;
Bergougnou, MA .
POWDER TECHNOLOGY, 1998, 100 (2-3) :260-272
[8]  
Zhu J.X., 1996, FLUIDIZATION, VVIII, P501
[9]   COCURRENT DOWNFLOW CIRCULATING FLUIDIZED-BED (DOWNER) REACTORS - A STATE-OF-THE-ART REVIEW [J].
ZHU, JX ;
YU, ZQ ;
JIN, Y ;
GRACE, JR ;
ISSANGYA, A .
CANADIAN JOURNAL OF CHEMICAL ENGINEERING, 1995, 73 (05) :662-677
[10]  
ZHU JX, 1999, UNPUB POWDER TECHNOL