The migration and orientation dynamics of prolate spheroidal particles suspended in a viscoelastic liquid flowing in a square microchannel is experimentally investigated under inertialess flow conditions. The suspending fluid is an aqueous solution of PolyEthylene Oxyde at relatively high concentration characterized by a high level of elasticity and shear-thinning. Fluid viscoelasticity drives the spheroids towards the channel central region at relatively low flow rates when the particles explore the constant viscosity region of the fluid, without showing a preferential orientation. As the flow rate increases and the fluid enters in the shear-thinning region, a smaller fraction of particles migrates at the central channel region, reducing the focusing efficiency. The focused spheroids rotate sufficiently fast to attain a stable orientation with major axis aligned along the flow direction.

Dynamics of non-spherical particles in viscoelastic fluids flowing in a microchannel / Langella, A.; Franzino, G.; Maffettone, PIER LUCA; Larobina, D.; D’Avino, G.. - In: SOFT MATTER. - ISSN 1744-683X. - 19:48(2023), pp. 9541-9549. [10.1039/D3SM01399E]

Dynamics of non-spherical particles in viscoelastic fluids flowing in a microchannel

G. , Franzino;P. L. , Maffettone;D. , Larobina;G. , D’Avino
Ultimo
2023

Abstract

The migration and orientation dynamics of prolate spheroidal particles suspended in a viscoelastic liquid flowing in a square microchannel is experimentally investigated under inertialess flow conditions. The suspending fluid is an aqueous solution of PolyEthylene Oxyde at relatively high concentration characterized by a high level of elasticity and shear-thinning. Fluid viscoelasticity drives the spheroids towards the channel central region at relatively low flow rates when the particles explore the constant viscosity region of the fluid, without showing a preferential orientation. As the flow rate increases and the fluid enters in the shear-thinning region, a smaller fraction of particles migrates at the central channel region, reducing the focusing efficiency. The focused spheroids rotate sufficiently fast to attain a stable orientation with major axis aligned along the flow direction.
2023
Dynamics of non-spherical particles in viscoelastic fluids flowing in a microchannel / Langella, A.; Franzino, G.; Maffettone, PIER LUCA; Larobina, D.; D’Avino, G.. - In: SOFT MATTER. - ISSN 1744-683X. - 19:48(2023), pp. 9541-9549. [10.1039/D3SM01399E]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/952854
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