Bubble rise velocity and trajectory in xanthan gum crystal suspension


Autoria(s): Hassan, Nur M.S.; Khan, Masud M.K.; Rasul, Mohammad G.; Rackemann, Darryn W.
Data(s)

2010

Resumo

An experimental set-up was used to visually observe the characteristics of bubbles as they moved up a column holding xanthan gum crystal suspensions. The bubble rise characteristics in xanthan gum solutions with crystal suspension are presented in this paper. The suspensions were made by using different concentrations of xanthan gum solutions with 0.23 mm mean diameter polystyrene crystal particles. The influence of the dimensionless quantities; namely the Reynolds number, Re, the Weber number, We, and the drag co-efficient, cd, are identified for the determination of the bubble rise velocity. The effect of these dimensionless groups together with the Eötvös number, Eo, the Froude number, Fr, and the bubble deformation parameter, D, on the bubble rise velocity and bubble trajectory are analysed. The experimental results show that the average bubble velocity increases with the increase in bubble volume for xanthan gum crystal suspensions. At high We, Eo and Re, bubbles are spherical-capped and their velocities are found to be very high. At low We and Eo, the surface tension force is significant compared to the inertia force. The viscous forces were shown to have no substantial effect on the bubble rise velocity for 45 < Re < 299. The results show that the drag co-efficient decreases with the increase in bubble velocity and Re. The trajectory analysis showed that small bubbles followed a zigzag motion while larger bubbles followed a spiral motion. The smaller bubbles experienced less horizontal motion in crystal suspended xanthan gum solutions while larger bubbles exhibited a greater degree of spiral motion than those seen in the previous studies on the bubble rise in xanthan gum solutions without crystal.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/40047/

Publicador

Kerschensteiner Verlag GmbH

Relação

http://eprints.qut.edu.au/40047/1/c40047.pdf

DOI:10.3933/ApplRheol-20-65102

Hassan, Nur M.S. , Khan, Masud M.K., Rasul, Mohammad G., & Rackemann, Darryn W. (2010) Bubble rise velocity and trajectory in xanthan gum crystal suspension. Applied Rheology, 20(65102).

Direitos

Copyright 2010 Applied Rheology

Fonte

Centre for Tropical Crops and Biocommodities; Faculty of Science and Technology

Palavras-Chave #030699 Physical Chemistry not elsewhere classified #039903 Industrial Chemistry #090499 Chemical Engineering not elsewhere classified #crystal suspension #Rheology #massecuite #Bubble rise
Tipo

Journal Article