Pressure drop in two phase cocurrent upward flow in packed beds: Air/non-Newtonian liquid systems

Srinivas, K. V. ; Chhabra, R. P. (1994) Pressure drop in two phase cocurrent upward flow in packed beds: Air/non-Newtonian liquid systems The Canadian Journal of Chemical Engineering, 72 (6). pp. 1085-1091. ISSN 0008-4034

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Official URL: http://onlinelibrary.wiley.com/doi/10.1002/cjce.54...

Related URL: http://dx.doi.org/10.1002/cjce.5450720620

Abstract

New data on the two phase pressure drop for the concurrent upflow of air-liquid (Newtonian and non-Newtonian) mixtures through packed beds of spherical and non-spherical particles are presented. The results for single phase flows and for the air-Newtonian liquid mixtures have been used both to gauge the overall accuracy of the present experimental methods and to evaluate the validity of the predictive expressions available in the literature. The two phase pressure drop has been measured as a function of the liquid and gas flow rates, column diameter and the power law model constants. Depending upon a suitable combination of the gas and liquid fluxes and the power law index, the two phase pressure drop may be less than its value for the flow of liquid alone. A simple expression is proposed which correlates the present set of experiments (nearly 500 data points) with satisfactory levels of accuracy over the following ranges of conditions: 0.54 ≤ n ≤ 1; 0.001 ≤ ReL ≤ 50; 3.7 ≤ ReG ≤ 177 and 0.9 ≤ χ (Lockhart-Martinelli parameter) ≤ 104.

Item Type:Article
Source:Copyright of this article belongs to John Wiley and Sons.
Keywords:Two Phase Flow; Pressure Drop; Gas-non Newtonian Liquid Mixture; Friction Factor; Packed Bed
ID Code:78743
Deposited On:23 Jan 2012 03:26
Last Modified:23 Jan 2012 03:26

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