Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/11422/8422
Especie: Artigo
Título : A finite difference technique for solving a time strain separable K-BKZ constitutive equation for two-dimensional moving free surface flows
Autor(es)/Inventor(es): Tomé, Murilo Francisco
Bertoco, Juliana
Oishi, Cassio Machiaveli
Araújo, Manoel Silvino Batalha de
Cruz, Daniel Onofre de Almeida
Pinho, Fernando Tavares de
Vynnycky, Michael
Resumen: Indisponível.
Resumen: This work is concerned with the numerical solution of the K-BKZ integral constitutive equation for two-dimensional time-dependent free surface flows. The numerical method proposed herein is a finite difference technique for simulating flows possessing moving surfaces that can interact with solid walls. The main characteristics of the methodology employed are: the momentum and mass conservation equations are solved by an implicit method; the pressure boundary condition on the free surface is implicitly coupled with the Poisson equation for obtaining the pressure field from mass conservation; a novel scheme for defining the past times is employed; the Finger tensor is calculated by the deformation fields method and is advanced in time by a second-order Runge–Kutta method. This new technique is verified by solving shear and uniaxial elongational flows. Furthermore, an analytic solution for fully developed channel flow is obtained that is employed in the verification and assessment of convergence with mesh refinement of the numerical solution. For free surface flows, the assessment of convergence with mesh refinement relies on a jet impinging on a rigid surface and a comparison of the simulation of a extrudate swell problem studied by Mitsoulis (2010) [44] was performed. Finally, the new code is used to investigate in detail the jet buckling phenomenon of K-BKZ fluids.
Materia: Integral K-BKZ constitutive equation
Deformation fields
Implicit method
Finite difference
Analytic solution in channel flow
Free surface
Jet buckling
Materia CNPq: CNPQ::CIENCIAS EXATAS E DA TERRA::FISICA::AREAS CLASSICAS DE FENOMENOLOGIA E SUAS APLICACOES::DINAMICA DOS FLUIDOS
Unidade de producción: Núcleo Interdisciplinar de Dinâmica dos Fluidos
Editor: Elsevier
Es parte de: Journal of Computational Physics
Volumen: 311
Fecha de publicación: 29-ene-2016
DOI: 10.1016/j.jcp.2016.01.032
País de edición : Brasil
Idioma de publicación: eng
Tipo de acceso : Acesso Aberto
ISSN: 0021-9991
Aparece en las colecciones: Engenharias

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