Effects of the Blade Shape on the Trailing Vortices in Liquid Flow Generated by Disc Turbines

被引:43
作者
Zhao Jing [1 ]
Gao Zhengming [1 ]
Bao Yuyun [1 ]
机构
[1] Beijing Univ Chem Technol, State Key Lab Chem Resource Engn, Beijing 100029, Peoples R China
基金
中国国家自然科学基金;
关键词
trailing vortices; disc turbine; particle image velocimetry; blade shape; PARTICLE IMAGE VELOCIMETRY; DUAL RUSHTON IMPELLER; STIRRED-TANK; PIV; TURBULENCE; DISPERSION; VESSELS; STREAM; VORTEX; FIELD;
D O I
10.1016/S1004-9541(11)60160-2
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Particle image velocimetry technique was used to analyze the trailing vortices and elucidate their relationship with turbulence properties in a stirred tank of 0.48 m diameter, agitated by four different disc turbines, including Rushton turbine, concaved blade disk turbine, half elliptical blade disk turbine, and parabolic blade disk turbine. Phase-averaged and phase-resolved flow fields near the impeller blades were measured and the structure of trailing vortices was studied in detail. The location, size and strength of vortices were determined by the simplified lambda(2)-criterion and the results showed that the blade shape had great effect on the trailing vortex characteristics. The larger curvature resulted in longer residence time of the vortex at the impeller tip, bigger distance between the upper and lower vortices and longer vortex life, also leads to smaller and stronger vortices. In addition, the turbulent kinetic energy and turbulent energy dissipation in the discharge flow were determined and discussed. High turbulent kinetic energy and turbulent energy dissipation regions were located between the upper and lower vortices and moved along with them. Although restricted to single phase flow, the presented results are essential for reliable design and scale-up of stirred tank with disc turbines.
引用
收藏
页码:232 / 242
页数:11
相关论文
共 30 条
[21]   PIV study of small-scale flow structure around a Rushton turbine [J].
Sharp, KV ;
Adrian, RJ .
AICHE JOURNAL, 2001, 47 (04) :766-778
[22]   A large eddy PIV method for turbulence dissipation rate estimation [J].
Sheng, J ;
Meng, H ;
Fox, RO .
CHEMICAL ENGINEERING SCIENCE, 2000, 55 (20) :4423-4434
[23]   MEAN VELOCITY-FIELD RELATIVE TO A RUSHTON TURBINE BLADE [J].
STOOTS, CM ;
CALABRESE, RV .
AICHE JOURNAL, 1995, 41 (01) :1-11
[24]   BEHAVIOR OF GAS-LIQUID MIXTURES NEAR RUSHTON TURBINE BLADES [J].
VANTRIET, K ;
SMITH, JM .
CHEMICAL ENGINEERING SCIENCE, 1973, 28 (04) :1031-&
[25]  
VANTRIET K, 1976, T I CHEM ENG-LOND, V54, P124
[26]   TRAILING VORTEX SYSTEM PRODUCED BY RUSHTON TURBINE AGITATORS [J].
VANTRIET, K ;
SMITH, JM .
CHEMICAL ENGINEERING SCIENCE, 1975, 30 (09) :1093-1105
[27]  
WARMOESKERKEN MMCG, 1989, CHEM ENG RES DES, V67, P193
[28]   LASER-DOPPLER MEASUREMENTS OF TURBULENT-FLOW PARAMETERS IN A STIRRED MIXER [J].
WU, H ;
PATTERSON, GK .
CHEMICAL ENGINEERING SCIENCE, 1989, 44 (10) :2207-2221
[29]   AN EXPERIMENTAL-STUDY OF THE STEADY AND UNSTEADY-FLOW CHARACTERISTICS OF STIRRED REACTORS [J].
YIANNESKIS, M ;
POPIOLEK, Z ;
WHITELAW, JH .
JOURNAL OF FLUID MECHANICS, 1987, 175 :537-555
[30]  
Yianneskis M., 1993, T CHEME, V17, P543