Article ID Journal Published Year Pages File Type
622410 Chemical Engineering Research and Design 2009 6 Pages PDF
Abstract

Two axial flow impellers commonly used in pulp agitation applications were characterized in hardwood and softwood low-consistency pulp fibre suspensions. The impellers operated in the laminar and transition-to-turbulence regimes with the suspension mass concentration significantly affecting both power and axial thrust numbers. Axial force numbers could be collapsed to a single operating curve using the yield stress Reynolds number, but the power number remained a function of suspension properties. CFD was used to model impeller flow using a Bingham approximation to describe the suspension rheology. Model agreement with the experimental measurements was generally good, with the values of NP and Nf determined to within 24 and 16%, respectively. The error can be explained by the uncertainty in the rheological characterization of the pulp suspension, particularly the yield stress.

Related Topics
Physical Sciences and Engineering Chemical Engineering Filtration and Separation
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