Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/11422/8824
Especie: Artigo
Título : Modelling of stratified gas–liquid two-phase flow in horizontal circular pipes
Autor(es)/Inventor(es): Sampaio, Paulo Augusto Berquo de
Faccini, José Luiz Horacio
Su, Jian
Resumen: Indisponível.
Resumen: This paper reports numerical and experimental investigation of stratified gas–liquid two-phase flow in horizontal circular pipes. The Reynolds averaged Navier–Stokes equations (RANS) with the k–ω turbulence model for a fully developed stratified gas–liquid two-phase flow are solved by using the finite element method. A smooth interface surface is assumed without considering the effects of the interfacial waves. The continuity of the shear stress across the interface is enforced with the continuity of the velocity being automatically satisfied by the variational formulation. For each given interface position and longitudinal pressure gradient, an inner iteration loop runs to solve the non-linear equations. The Newton–Raphson scheme is used to solve the transcendental equations by an outer iteration to determine the interface position and pressure gradient for a given pair of volumetric flow rates. Favorable comparison of the numerical results with available experimental results indicates that the k–ω model can be applied for the numerical simulation of stratified gas–liquid two-phase flow.
Materia: Gas–liquid two-phase flow
Smooth stratified flow
k–ω model
Finite element method
Computational simulation
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: International Journal of Heat and Mass Transfer
Volumen: 51
Número: 11-12
Fecha de publicación: 4-dic-2007
DOI: 10.1016/j.ijheatmasstransfer.2007.09.038
País de edición : Brasil
Idioma de publicación: eng
Tipo de acceso : Acesso Aberto
ISSN: 0017-9310
Aparece en las colecciones: Engenharias

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