Determination of bubble characteristics in bubble columns using statistical analysis of acoustic sound measurements

被引:42
作者
Al-Masry, WA [1 ]
Ali, EM [1 ]
Aqeel, YM [1 ]
机构
[1] King Saud Univ, Dept Chem Engn, Riyadh 11421, Saudi Arabia
关键词
acoustic; bubble column; bubble size; flow regime; drift;
D O I
10.1205/cherd.05014
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
A systematic procedure to utilize experimental acoustic measurements in bubble columns for bubble characterization is given. Statistical tools based on zero crossings are employed to detect the bubble pulsation count and frequency. Autocorrelation functions are also exploited to provide accurate estimation of the bubble frequency. The detected bubble frequency can be used to compute the bubble size. On the other hand, the pulsation count is used to determine the bubble-size distribution. The homogeneous-heterogeneous regime transition was observed visually and confirmed by Richardson and Zaki (1954) and Ruzicka et al. (2001a) slip velocity models. Analysis of the column acoustics in the homogeneous flow regime showed a narrow bubble-size distribution, which confirms the findings from the slip velocity models. The root mean square of the acoustic pressure is used to estimate the void fraction, which revealed excellent agreement with the experimental values. The results show that acoustic hydrophones have strong potentials as 'information' sensors for on-line control of bubble columns operating at moderate conditions, and when foaming fouls classical sensors causing major control problems.
引用
收藏
页码:1196 / 1207
页数:12
相关论文
共 34 条
[1]   Effects of antifoam and scale-up on operation of bioreactors [J].
Al-Masry, WA .
CHEMICAL ENGINEERING AND PROCESSING-PROCESS INTENSIFICATION, 1999, 38 (03) :197-201
[2]  
ALMASRY WA, 1996, RES CONS REC, V28, P11
[3]   The uses of passive measurement of acoustic emissions from chemical engineering processes [J].
Boyd, JWR ;
Varley, J .
CHEMICAL ENGINEERING SCIENCE, 2001, 56 (05) :1749-1767
[4]   Sound measurement as a means of gas-bubble sizing in aerated agitated tanks [J].
Boyd, JWR ;
Varley, J .
AICHE JOURNAL, 1998, 44 (08) :1731-1739
[5]   DETERMINATION OF GAS-LIQUID BUBBLE COLUMN INSTANTANEOUS INTERFACIAL AREA AND VOID FRACTION BY A REAL-TIME NEUTRON RADIOGRAPHY METHOD [J].
CHANG, JS ;
HARVEL, GD .
CHEMICAL ENGINEERING SCIENCE, 1992, 47 (13-14) :3639-3646
[6]  
CONSTANTIDES A, 1999, NUMERICAL METHODS CH
[7]  
Deckwer W. D., 1992, BUBBLE COLUMN REACTO
[8]  
Forsman K., 1999, EUR CONTR C KARLSR G
[9]   A CONTROL-LOOP PERFORMANCE MONITOR [J].
HAGGLUND, T .
CONTROL ENGINEERING PRACTICE, 1995, 3 (11) :1543-1551
[10]   SOUND SPECTRA OF GAS DISPERSION IN AN AGITATED TANK [J].
HSI, R ;
TAY, M ;
BUKUR, D ;
TATTERSON, G ;
MORRISON, G .
CHEMICAL ENGINEERING JOURNAL AND THE BIOCHEMICAL ENGINEERING JOURNAL, 1985, 31 (03) :153-161