1D simulations of second-grade fluids with shear-dependent viscosity

dc.contributor.authorCarapau, Fernando
dc.contributor.authorJanela, João
dc.contributor.authorSequeira, Adélia
dc.date.accessioned2012-11-14T12:13:24Z
dc.date.available2012-11-14T12:13:24Z
dc.date.issued2007-12-01
dc.description.abstractThe full 3D system of equations for the motion of a non-Newtonian incompressible second-grade fluid in an uniform rectilinear pipe is generalized by introducing a shear-dependent viscosity function of power law type. The system is then simplified using a 1D hierarchical model based on the director theory approach to fluid dynamics. An axisymmetric unsteady relationship between mean pressure gradient (wall shear stress, respectively) and volume flow rate over a finite section of the pipe is derived from this theory. Attention is focused on some numerical simulations of unsteady flows in pipes with rigid and impermeable walls and on the analysis od perturbed flows.por
dc.identifier.authoremailnd
dc.identifier.authoremailnd
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dc.identifier.citationWSEAS Transactions on Mathematics, Issue 1, Volume 6, pp. 151-158, 2007.por
dc.identifier.issn1109-2769
dc.identifier.scientificarea721por
dc.identifier.urihttp://hdl.handle.net/10174/5573
dc.language.isoporpor
dc.peerreviewedyespor
dc.rightsrestrictedAccesspor
dc.subjectCosserat theory,por
dc.subjectgeneralized second-grade fluid,por
dc.subjectaxisymmetric motion,por
dc.subjectpower law viscosity.por
dc.subjectunsteady rectilinear flow,por
dc.subjectpressure gradient,por
dc.subjectvolume flow rate,por
dc.title1D simulations of second-grade fluids with shear-dependent viscositypor
dc.typearticlepor

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