Numerical simulation of mixing process in a stirred tank agitated by side-entering agitators

Author(s):  
Jian Fang ◽  
Xiang Ling ◽  
Zhi-fu Sang ◽  
Quan-bao Yang
2011 ◽  
Vol 354-355 ◽  
pp. 559-563
Author(s):  
Lei Shi ◽  
Shen Jie Zhou ◽  
Feng Ling Yang ◽  
Fan Jin Hu

Mixing efficiency is an important parameter in the design of many industrial processes in stirred tanks. In this study, CFD technology was used to simulate the mixing process inside the stirred tank with dislocated blades and standard turbine. Calculations were performed to study the effects of agitator speed and the configuration of impellers on mixing efficiency. The results showed that the flow field in the stirred tank with the dislocated blades is better than the standard turbine, and the flow number of the dislocated blades had been improved while the power number had been reduced. According to calculation results of Wr, we found the mixing efficiency of the dislocated blades had been improved about 4 times than that of standard turbine.


2019 ◽  
Vol 360 ◽  
pp. 1177-1187 ◽  
Author(s):  
Xiaoxia Duan ◽  
Xin Feng ◽  
Zai-Sha Mao ◽  
Chao Yang

2017 ◽  
Vol 71 (10) ◽  
pp. 1863-1875 ◽  
Author(s):  
Liangchao Li ◽  
Bin Xu

2019 ◽  
Vol 37 ◽  
pp. 109-116
Author(s):  
Koorosh Zaheri ◽  
Morteza Bayareh ◽  
Afshin Nadooshan

1995 ◽  
Vol 38 (12) ◽  
pp. 2239-2250 ◽  
Author(s):  
E. Lang ◽  
P. Drtina ◽  
F. Streiff ◽  
M. Fleischli

2002 ◽  
Vol 45 (4) ◽  
pp. 752-758
Author(s):  
Shinichi YUU ◽  
Toshihiko UMEKAGE ◽  
Yoshinori NAKANO ◽  
Shinichiro KAWAKAMI

Author(s):  
Deyin Gu ◽  
Fenghui Zhao ◽  
Xingmin Wang ◽  
Zuohua Liu

Abstract The solid-liquid mixing characteristics in a stirred tank with pitched blade impellers, dislocated impellers, and dislocated guide impellers were investigated through using CFD simulation. The effects of impeller speed, impeller type, aperture ratio, aperture length, solid particle diameter and initial solid holdup on the homogeneity degree in the solid-liquid mixing process were investigated. As expected, the solid particle suspension quality was increased with an increase in impeller speed. The dislocated impeller could reduce the accumulation of solid particles and improve the cloud height compared with pitched blade impeller under the same power consumption. The dislocated guide impeller could enhance the solid particles suspension quality on the basis of dislocated impeller, and the optimum aperture ratio and aperture length of dislocated guide impeller were 12.25% and 7 mm, respectively, in the solid-liquid mixing process. Smaller solid particle diameter and lower initial solid holdup led to higher homogeneity degree of solid-liquid mixing system. The dislocated guide impeller could increase solid particle integrated velocity and enhance turbulent intensity of solid-liquid two-phase compared with pitched blade impeller and dislocated impeller under the same power consumption.


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