has been cited by the following article(s):
[1]
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Pressure-driven flow of the viscoelastic Oldroyd-B fluid in narrow non-uniform geometries: analytical results and comparison with simulations
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Journal of Fluid Mechanics,
2022 |
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[2]
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Hyperbolic contraction measuring systems for extensional flow
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Mechanics of Time-Dependent Materials,
2017 |
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[3]
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On the use of continuous spectrum and discrete-mode differential models to predict contraction-flow pressure drops for Boger fluids
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AIP Conference Proceedings,
2017 |
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[4]
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Cronfa-Swansea University Open Access Repository
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2016 |
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[5]
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Droplet formation in a flow focusing configuration: Effects of viscoelasticity
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AIP Conference Proceedings,
2016 |
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[6]
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The falling sphere problem and capturing enhanced drag with Boger fluids
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Journal of Non-Newtonian Fluid Mechanics,
2016 |
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[7]
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Predicting large experimental excess pressure drops for Boger fluids in contraction–expansion flow
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Journal of Non-Newtonian Fluid Mechanics,
2016 |
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[8]
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Numerical simulation of viscoelastic fluid flows using a robust FVM framework on triangular grid
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Journal of Non-Newtonian Fluid Mechanics,
2016 |
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[9]
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Influence of Local Inertia in the Forward Step Channel Filled with Porous Media
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2016 |
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[10]
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Pressure-drop and kinematics of viscoelastic flow through an axisymmetric contraction–expansion geometry with various contraction-ratios
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Journal of Non-Newtonian Fluid Mechanics,
2015 |
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[11]
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Extrusion instability in an aramid fibre spinning process
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2015 |
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[12]
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Viscoelastic entrance flow of Hydrolized Polyacrylamide (HPAAM)
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2015 |
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[13]
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Prediction of excess pressure drop in contraction–expansion flow by molecular dynamics: Axisymmetric and planar configurations
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Journal of Non-Newtonian Fluid Mechanics,
2014 |
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[14]
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Modelling polymeric flows in reverse roll coating processes with dynamic wetting lines and air-entrainment: FENE and PTT solutions
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2014 |
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[15]
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Elastic response from pressure drop measurements through planar contraction–expansion geometries by molecular dynamics: structural effects in melts and …
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Rheologica Acta,
2013 |
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[16]
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Elastic response from pressure drop measurements through planar contraction–expansion geometries by molecular dynamics: structural effects in melts and molecular origin of excess pressure drop
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Rheologica Acta,
2013 |
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[17]
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Numerical simulations of Boger fluids through different contraction configurations for the development of a measuring system for
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Rheologica acta,
2012 |
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[18]
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Computations with viscoplastic and viscoelastoplastic fluids
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Rheologica acta,
2011 |
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[19]
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Excess pressure drop and drag calculations for strain-hardening fluids with mild shear-thinning: Contraction and falling sphere
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Journal of Non-Newtonian Fluid Mechanics,
2011 |
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[20]
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Transient behaviour of branched polymer melts through planar abrupt and rounded contractions using pom–pom models
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Mechanics of Time-Dependent Materials,
2011 |
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[21]
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Numerical investigation of transient contraction flows for worm-like micellar systems using Bautista–Manero models
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Journal of Non-Newtonian Fluid Mechanics,
2011 |
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[1]
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On the use of continuous spectrum and discrete-mode differential models to predict contraction-flow pressure drops for Boger fluids
Physics of Fluids,
2017
DOI:10.1063/1.4991872
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[2]
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On the use of continuous spectrum and discrete-mode differential models to predict contraction-flow pressure drops for Boger fluids
Physics of Fluids,
2017
DOI:10.1063/1.4991872
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[3]
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Droplet formation in a flow focusing configuration: Effects of viscoelasticity
Physics of Fluids,
2016
DOI:10.1063/1.4971841
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|
[4]
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Droplet formation in a flow focusing configuration: Effects of viscoelasticity
Physics of Fluids,
2016
DOI:10.1063/1.4971841
|
|
|
[5]
|
Modelling polymeric flows in reverse roll coating processes with dynamic wetting lines and air-entrainment: FENE and PTT solutions
Journal of Non-Newtonian Fluid Mechanics,
2014
DOI:10.1016/j.jnnfm.2014.09.013
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[6]
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Excess pressure drop and drag calculations for strain-hardening fluids with mild shear-thinning: Contraction and falling sphere problems
Journal of Non-Newtonian Fluid Mechanics,
2011
DOI:10.1016/j.jnnfm.2011.04.009
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