info:eu-repo/semantics/article
Pressure driven lubrication flow of a Bingham fluid in a channel: A novel approach
Fecha
2015-07Registro en:
Fusi, Lorenzo; Farina, Angiolo; Rosso, Fabio; Roscani, Sabrina Dina; Pressure driven lubrication flow of a Bingham fluid in a channel: A novel approach; Elsevier Science; Journal Of Non-newtonian Fluid Mechanics; 221; 7-2015; 66-75
0377-0257
CONICET Digital
CONICET
Autor
Fusi, Lorenzo
Farina, Angiolo
Rosso, Fabio
Roscani, Sabrina Dina
Resumen
In this paper we present a novel approach for modelling the lubrication flow of a Bingham fluid in a channel whose amplitude is non uniform. The novelty consists in deriving the rigid plug equation using an integral approach based on Newton's second law, where the unyielded part is treated as an evolving non material volume. Such an approach leads to an integro-differential equation for the pressure that can be solved with an iterative procedure. We prove that a true unyielded plug exists even when the maximum width variation is not "small" and we find constraints on the amplitude of the channel that prevent the plug from "breaking". We also extend our model to the case of a pressure-dependent viscosity.