Publication | Closed Access
Orientational Order and Alignment of Elongated Particles Induced by Shear
143
Citations
41
References
2012
Year
EngineeringFluid MechanicsMechanical EngineeringMicrorheologyParticle MethodGranular MediumSoft MatterRheological MeasurementMechanicsElongated ParticlesRheologyBiophysicsParticle-laden FlowElongated Particles InducedPhysicsShear AlignmentRheological Constitutive EquationFluid-solid InteractionMacroscopic Particles
Shear induced alignment of elongated particles is studied experimentally and numerically. We show that shear alignment of ensembles of macroscopic particles is comparable even on a quantitative level to simple molecular systems, despite the completely different types of particle interactions. We demonstrate that for dry elongated grains the preferred orientation forms a small angle with the streamlines, independent of shear rate across three decades. For a given particle shape, this angle decreases with increasing aspect ratio of the particles. The shear-induced alignment results in a considerable reduction of the effective friction of the granular material.
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