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  4. Asymptotic approximations for solutions to quasilinear and linear parabolic problems with different perturbed boundary conditions in perforated domains
 
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2011
Journal Article
Title

Asymptotic approximations for solutions to quasilinear and linear parabolic problems with different perturbed boundary conditions in perforated domains

Abstract
We consider quasilinear and linear parabolic problems with rapidly oscillating coefficients in a domain Oe that is e-periodically perforated by small holes of order. The holes are divided into three e-periodical sets depending on boundary conditions. The homogeneous Dirichlet boundary conditions are imposed for holes of one set, whereas, for holes in the remaining sets, different inhomogeneous Neumann and nonlinear Robin boundary conditions involving additional perturbation parameters are imposed. For a solution to the quasilinear problem we find the leading terms of the asymptotic expansion and prove asymptotic estimates that show the influence of perturbation parameters. In the linear case, we construct and justify a complete asymptotic expansion of the solution by using the two-scale asymptotic expansion method. Bibliography: 25 titles. Illustrations: 1 figure. Dedicated to Professor V. V. Zhikov on the occasion of his 70th birthday Translated from Problems in Mathematical Analysis59, July 2011, pp. 43-62.
Author(s)
Mel'nyk, T.A.
Sivak, O.A.
Journal
Journal of mathematical sciences  
DOI
10.1007/s10958-011-0447-y
Language
English
Fraunhofer-Institut für Techno- und Wirtschaftsmathematik ITWM  
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