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Journal ArticleDOI

The shear-induced migration of particles in concentrated suspensions

David T. Leighton, +1 more
- 01 Sep 1987 - 
- Vol. 181, Iss: -1, pp 415-439
TLDR
In this article, it was shown that shear-induced migration of particles out of the sheared Couette gap and into the fluid reservoir, which reduces the particle concentration in the gap and thereby the observed viscosity, is consistent with a gap-limited shearinduced diffusion process normal to the plane of shear, with the relevant diffusion coefficient being proportional to the applied shear rate.
Abstract
In the course of viscometric measurements of concentrated suspensions of spheres in Newtonian fluids using a Couette device, Gadala-Maria & Acrivos (1980) observed a decrease in the suspension viscosity after long periods of shearing even though the viscosity of the pure suspending fluid remained constant under identical conditions. In the present work we demonstrate that this phenomenon is due to the shear-induced migration of particles out of the sheared Couette gap and into the fluid reservoir, which reduces the particle concentration in the gap and thereby the observed viscosity. We show further that this rate of viscosity decrease is consistent with a gap-limited shear-induced diffusion process normal to the plane of shear, with the relevant diffusion coefficient being proportional to is the applied shear rate.Additional experiments also uncovered a new phenomenon - a short-term increase in the viscosity upon initial shearing of a suspension in a Couette device - which was attributed to the diffusive migration of particles across the width of the Couette gap and thus was used to infer values of the corresponding diffusion coefficient within the plane of shear parallel to gradients in fluid velocity.In the theoretical part we demonstrate that the particle migrations that led to these observed phenomena may be explained in terms of the irreversible interparticle interactions that occur in these suspensions. From simple arguments, these interactions are shown to lead to effective diffusivities both normal to the plane of shear and normal to the direction of fluid motion within the plane of shear whose estimated magnitudes are comparable with those that were inferred from the experimental measurements. Furthermore, these interactions should induce, within a shear flow, particle drifts from regions of high to low shear stress, which are estimated to be of sufficient intensity to account for the observed initial viscosity increase mentioned above.

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Citations
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Shear-induced particle diffusivities from numerical simulations

TL;DR: In this article, the authors construct a method for computing the gradient diffusivity via simulations on a homogeneous suspension and, although their results are only approximate due to the small number of particles used in the simulations, they present here the first values of this important parameter, both along and normal to the plane of shear, to be obtained directly either experimentally or numerically.
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Cake growth mechanism in cross-flow microfiltration of mineral suspensions

TL;DR: In this paper, the porosity was calculated from Ergun's equation and found to be a function of the pressure gradient in the cake, which indicated that the cake growth was limited by the shear stress acting on its surface.
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Review of hypotheses for fouling during beer clarification using membranes

TL;DR: Comparison of the various hypotheses concerning the fouling of membranes during beer clarification via crossflow microfiltration with experimental data of dead-end filtration of beer shows that they are quite likely to be valid, and form a good basis for further model-based exploration of the optimization of the beer clarification process.
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Manipulating digestion with foods designed to change the physical characteristics of digesta.

TL;DR: Evidence is reviewed regarding the effects of supplementation with viscoactive agents on the flow and mixing of digesta in particular segments of the human gut that, by changing the rheology and liquid permeability in that segment, influence specific aspects of digestion and absorption.
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Direct visualization of flow-induced microstructure in dense colloidal gels by confocal laser scanning microscopy

TL;DR: In this article, the authors quantified flow-induced void and crack microstructures by locating all particle centroids with quantitative image processing, by performing Voronoi volume tessellation with computational geometry and by analyzing the particle number density fluctuations as a function of averaging volume.
References
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Journal ArticleDOI

Inertial migration of rigid spheres in two-dimensional unidirectional flows

TL;DR: In this article, the Segre-Silberberg effect of inertia-induced lateral migration of a neutrally buoyant rigid sphere in a Newtonian fluid is studied theoretically for simple shear flow and for two-dimensional Poiseuille flow.
Journal ArticleDOI

Shear‐Induced Structure in a Concentrated Suspension of Solid Spheres

TL;DR: In this article, a Couette device of a R•17 Weissenberg Rheogoniometer with suspensions of polystyrene spheres, 40-50 μm in diameter, suspended in a mixture of silicone oils at volume fractions 0⩽φ0.55 was used for steady and transient shear measurements.
Journal ArticleDOI

Measurement of shear-induced self-diffusion in concentrated suspensions of spheres

TL;DR: In this paper, a technique for determining the coefficient of shear-induced particle self-diffusion in concentrated suspensions of solid spheres, which relies on the fact that this coefficient can be computed from the measured variations in the time taken by a single marked particle in the suspension to complete successive circuits in a Couette device, was presented.
Journal ArticleDOI

Self-diffusion of particles in shear flow of a suspension

TL;DR: In this paper, a self-diffusion coefficient for lateral dispersion of spherical and disk-like particles in linear shear flow of a slurry at very low Reynolds number was determined experimentally.
Journal ArticleDOI

The kinetics of flowing dispersions

TL;DR: In this article, the velocity profiles of dilute suspensions of rigid spheres in Newtonian liquids undergoing Couette or Poiseuille flow were found to be identical with those predicted by the theory with no particles present.
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