dc.contributor.authorSaeed, Rahman
dc.contributor.authorDíaz Palencia, José Luis
dc.date.accessioned2023-01-05T17:18:37Z
dc.date.available2023-01-05T17:18:37Z
dc.date.issued2022-12-10
dc.identifier.urihttp://hdl.handle.net/20.500.12226/1455
dc.description.abstractThe modeling of fluid flows with a p-Laplacian operator has attracted the interest of researchers to describe non-Newtonian fluids. One of the main reasons is the possibility of obtaining values for p (in the p-Laplacian) based on experimental settings. The main contributions of our study consist in providing analytical assessments of weak solutions, together with a numerical validating analysis, to a one-dimensional fluid in magnetohydrodynamics (MHD) flowing in porous media. We define a new Darcy–Forchheimer term and a generalized form of a constitutive kinematic that provides a p-Laplacian operator. Firstly, we discuss about the regularity and boundedness of weak solutions to support the existence and uniqueness analyses. Afterward, we explore solutions based on a selfsimilar profile. The resulting elliptic equation is solved based on the analytical perturbation technique. Eventually, a numerical analysis is provided with the intention of validating the analytical solution obtained. As a remarkable outcome, we establish minimum values in the selfsimilar variable for which the global distances between the analytical and the numerical solutions are below 10 ^− 2 and 10^− 3. Indeed, the convergence between both solutions is given under an asymptotic approach, where the decaying rates in the obtained solutions are sufficiently closees
dc.language.isoenes
dc.titleRegularity and analysis of solutions for a MHD flow with a p-Laplacian operator and a generalized Darcy–Forchheimer termes
dc.typearticlees
dc.description.course2022-23es
dc.identifier.doi10.1140/epjp/s13360-022-03555-0
dc.journal.titleThe European Physical Journal Pluses
dc.publisher.facultyFacultad de Ciencias Sociales y Humanidadeses
dc.rights.accessRightsopenAccesses
dc.subject.keywordp-Laplacianes
dc.subject.keywordFluid Mechanicses
dc.subject.keywordMagnetohydrodynamicses
dc.subject.keywordNon-linear Partial Differential Equationses
dc.volume.number137es


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