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Multiscale homogenization of a class of nonlinear equations with applications in lubrication theory and applications

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dc.contributor.author Almqvist, Andreas
dc.contributor.author Essel, Emmanuel Kwame
dc.contributor.author Fabricius, John
dc.contributor.author Wall, Peter
dc.date.accessioned 2021-08-31T10:09:35Z
dc.date.available 2021-08-31T10:09:35Z
dc.date.issued 2011
dc.identifier.issn 23105496
dc.identifier.uri http://hdl.handle.net/123456789/6010
dc.description 25p:, ill. en_US
dc.description.abstract We prove a homogenization result for monotone operators by using the method of multiscale convergence. More precisely, we study the asymptoticbehavior as ε → 0 of the solutions uε of the nonlinear equation div aε(x, ∇uε) = div bε, where both aε and bε oscillate rapidly on several microscopic scales and aε satisfies certain continuity, monotonicity and boundedness conditions. This kind of problem has applications in hydrodynamic thin flm lubrication where the bounding surfaces have roughness on several length scales. The homogenization result is obtained by extending the multiscale convergence method to the setting of Sobolev spaces W1,p 0 (Ω), where 1 <p<∞. In particular we give new proofs of some fundamental theorems concerning this convergence that were frst obtained by Allaire and Briane for the case p = 2 en_US
dc.language.iso en en_US
dc.publisher University of Cape Coast en_US
dc.subject Homogenization en_US
dc.subject Monotone operators en_US
dc.subject Multiscale convergence en_US
dc.subject Two-scale convergence en_US
dc.subject Hydrodynamic lubrication en_US
dc.subject Reynolds equation en_US
dc.subject Surface roughness en_US
dc.subject P-Laplacian en_US
dc.title Multiscale homogenization of a class of nonlinear equations with applications in lubrication theory and applications en_US
dc.type Article en_US


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