A comprehensive pressure balance model of circulating fluidized beds

被引:44
作者
Lei, HW [1 ]
Horio, M [1 ]
机构
[1] Tokyo Univ Agr & Technol, Dept Chem Engn, Tokyo 184, Japan
关键词
hydrodynamics; pressure balance; circulating fluidized beds; solid inventory; reactor modeling;
D O I
10.1252/jcej.31.83
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Based on the concepts of clustering suspension and core-annulus flow in the riser, a pressure balance model for the entire loop of a circulating fluidized bed system was developed, where the gas now between the riser and the downcomer was first taken into account. For the present model, the following correlation for the decay factor of the voidage profile was developed within +/-30% accuracy: aD(R) = 0.019(G(s)/U-0 rho(g))(-0.22) (U-0/root gD(R))(-0.32) (rho(p) - rho(g)/rho(g))(0.41) The model was successfully validated by a comparison of the predicted pressure loop distribution, the maximum solid flux and the dense region height with the previous experimental results. By taking into account gas flow through the loop seal between the riser and the downcomer, it became possible to predict quantitatively and rigorously the effect of solid inventory on the axial voidage profiles in the riser reported by Weinstein et al. (1984) and Mori et al. (1989). It was also found that there is an operable extension of solid inventory for a given set of superficial gas velocity and solid circulating flux.
引用
收藏
页码:83 / 94
页数:12
相关论文
共 48 条
[1]   AXIAL VOIDAGE PROFILES IN FAST FLUIDIZED-BEDS [J].
ADANEZ, J ;
GAYAN, P ;
GARCIALABIANO, F ;
DEDIEGO, LF .
POWDER TECHNOLOGY, 1994, 81 (03) :259-268
[2]   HYDRODYNAMICS OF CIRCULATING FLUIDIZED-BEDS WITH RISERS OF DIFFERENT SHAPE AND SIZE [J].
ARENA, U ;
MARZOCCHELLA, A ;
MASSIMILLA, L ;
MALANDRINO, A .
POWDER TECHNOLOGY, 1992, 70 (03) :237-247
[3]  
BACHOVCHIN DM, 1979, AICHE 72 M SAN FRANC
[4]  
Bader R., 1988, CIRCULATING FLUIDIZE, P123
[5]   THE AXIAL DISTRIBUTION OF THE CROSS-SECTIONALLY AVERAGED VOIDAGE IN FAST FLUIDIZED-BEDS [J].
BAI, DR ;
JIN, Y ;
YU, ZQ ;
ZHU, JX .
POWDER TECHNOLOGY, 1992, 71 (01) :51-58
[6]  
BAI DR, 1994, P 7 SCEJ S CFB TOK, P137
[7]   HIGH-VELOCITY FLUIDIZED-BED HYDRODYNAMIC MODELING .2. CIRCULATING BED PRESSURE-DROP MODELING [J].
BREAULT, RW ;
MATHUR, VK .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1989, 28 (06) :688-693
[8]   FLUID DYNAMIC SIMILARITY OF CIRCULATING FLUIDIZED-BEDS [J].
CHANG, H ;
LOUGE, M .
POWDER TECHNOLOGY, 1992, 70 (03) :259-270
[9]   COCURRENT GAS AND PARTICLE FLOW DURING PNEUMATIC DISCHARGE FROM A BUNKER THROUGH AN ORIFICE [J].
DEJONG, JAH ;
HOELEN, QEJJM .
POWDER TECHNOLOGY, 1975, 12 (03) :201-208
[10]  
ERGUN S, 1952, CHEM ENG PROG, V48, P89