Homogenization of a reaction-diffusion system modeling sulfate corrosion of concrete in locally periodic perforated domains
DOI10.1007/s10665-010-9396-6zbMath1325.76197OpenAlexW2111580134MaRDI QIDQ718985
Adrian Muntean, Tasnim Fatima, Evgeny P. Zemskov, Nasrin Arab
Publication date: 27 September 2011
Published in: Journal of Engineering Mathematics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10665-010-9396-6
asymptotic homogenizationlocally periodic perforated medianonlinear Robin-type boundary conditionssemi-linear PDE-ODE systemsulfate corrosion
Reaction-diffusion equations (35K57) Reaction effects in flows (76V05) Homogenization in context of PDEs; PDEs in media with periodic structure (35B27) Homogenization applied to problems in fluid mechanics (76M50)
Related Items (22)
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Diffusion, convection, adsorption, and reaction of chemicals in porous media
- A two-scale reaction-diffusion system with micro-cell reaction concentrated on a free boundary
- A homogenisation-based two-scale model for reactive transport in media with evolving microstructure
- Heterogeneous medium. Is an equivalent macroscopic description possible?
- Asymptotic behavior of a solution to a boundary value problem in a perforated domain with oscillating boundary
- On a moving-boundary system modeling corrosion in sewer pipes
- On homogenization of problems in domains of the ``Infusorium type
- Crystal Precipitation and Dissolution in a Porous Medium: Effective Equations and Numerical Experiments
- Derivation of a Macroscopic Receptor-Based Model Using Homogenization Techniques
- Homogenization of Boundary-Value Problem in a Locally Periodic Perforated Domain
- Homogenization of a Phase Field Model for Binary Mixtures
- Reactive transport through an array of cells with semi-permeable membranes
- A Mathematical Model for the Sulphur Dioxide Aggression to Calcium Carbonate Stones: Numerical Approximation and Asymptotic Analysis
This page was built for publication: Homogenization of a reaction-diffusion system modeling sulfate corrosion of concrete in locally periodic perforated domains