Article ID Journal Published Year Pages File Type
10378073 Journal of Colloid and Interface Science 2005 12 Pages PDF
Abstract
An experimental and computational investigation of the effects of local fluid shear rate on the aggregation and breakage of ∼10μm latex spheres suspended in an aqueous solution undergoing turbulent Taylor-Couette flow was carried out. First, computational fluid dynamics (CFD) simulations were performed and the flow field predictions were validated with data from particle image velocimetry experiments. Subsequently, the quadrature method of moments (QMOM) was implemented into the CFD code to obtain predictions for mean particle size that account for the effects of local shear rate on the aggregation and breakage. These predictions were then compared with experimental data for latex sphere aggregates (using an in situ optical imaging method). Excellent agreement between the CFD-QMOM and experimental results was observed for two Reynolds numbers in the turbulent-flow regime.
Related Topics
Physical Sciences and Engineering Chemical Engineering Colloid and Surface Chemistry
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