Cavern formation in pulp suspensions using side-entering axial-flow impellers

Author:

Hui Leo K.,Bennington Chad P.J.,Dumont Guy A.

Publisher

Elsevier BV

Subject

Applied Mathematics,Industrial and Manufacturing Engineering,General Chemical Engineering,General Chemistry

Reference20 articles.

1. A new mathematical model to predict cavern diameters in highly shear thinning, power law liquids using axial flow impellers;Amanullah;Chemical Engineering Science,1998

2. The yield stress of fibre suspensions;Bennington;Canadian Journal of Chemical Engineering,1990

3. Dietemann, P., Rueff, M., 2004. A study of fibre suspension flow by means of Doppler ultrasound velocimetry and image analysis. Annual Meeting—Technical Section, Pulp and Paper Technical Association of Canada (PAPTAC), Preprints, v. A, pp. 225–230.

4. Dynamic modeling of agitated pulp stock chests;Ein-Mozaffari;TAPPI Journal,2003

5. Suspension yield stress and the dynamic response of agitated pulp chests;Ein-Mozaffari;Chemical Engineering Science,2005

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