• Media type: E-Article; Text
  • Title: Corrector Estimates for a Thermodiffusion Model with Weak Thermal Coupling
  • Contributor: Reichelt, Sina [Author]; Muntean, Adrian [Author]
  • imprint: Weierstrass Institute for Applied Analysis and Stochastics publication server, 2018
  • Language: English
  • DOI: https://doi.org/10.1137/16m109538x
  • Keywords: Homogenization -- corrector estimates -- periodic unfolding -- gradient folding operator -- perforated domain -- thermo-diffusion -- composite media ; article
  • Origination:
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  • Description: The present work deals with the derivation of corrector estimates for the two-scale homogenization of a thermodiffusion model with weak thermal coupling posed in a heterogeneous medium endowed with periodically arranged high-contrast microstructures. The term “weak thermal coupling” refers here to the variable scaling in terms of the small homogenization parameter $\varepsilon$ of the heat conduction-diffusion interaction terms, while the “high-contrast” is considered particularly in terms of the heat conduction properties of the composite material. As a main target, we justify the first-order terms of the multiscale asymptotic expansions in the presence of coupled fluxes, induced by the joint contribution of Sorret and Dufour-like effects. The contrasting heat conduction combined with cross coupling leads to the main mathematical difficulty in the system. Our approach relies on the method of periodic unfolding combined with $\varepsilon$-independent estimates for the thermal and concentration fields and for their coupled fluxes.