Please use this identifier to cite or link to this item:
http://hdl.handle.net/10174/21570
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Title: | Numerical simulations of a third-grade fluid flow on a tube through a contraction |
Authors: | Carapau, Fernando Correia, Paulo |
Keywords: | third-grade fluid Unsteady flow Hierarchical theory One-dimensional model |
Issue Date: | 8-Mar-2017 |
Publisher: | European Journal of Mechanics B/Fluids |
Citation: | Carapau, F., and Correia, P., Numerical simulations of a third-grade fluid flow on a tube through a contraction, European Journal of Mechanics B/Fluids, V. 65, pp. 45-53, 2017. |
Abstract: | Based on a director theory approach related to fluid dynamics we reduce the nonlinear three-dimensional equations governing the axisymmetric unsteady motion of a non-Newtonian incompressible third-grade fluid to a one-dimensional system of ordinary differential equations depending on time and on a single spatial variable. From this new system we obtain the unsteady equation for the mean pressure gradient and the wall shear stress both depending on the volume flow rate, Womersley number and viscoelastic parameters over a finite section of a straight, rigid and impermeable tube with variable circular cross-section. We present some numerical simulations of unsteady flows regimes through a tube with a contraction using a nine-directors theory. |
URI: | http://www.sciencedirect.com/science/article/pii/S0997754616300826?via%3Dihub http://hdl.handle.net/10174/21570 |
ISBN: | 0997-7546 |
Type: | article |
Appears in Collections: | CIMA - Publicações - Artigos em Revistas Internacionais Com Arbitragem Científica
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