Pages that link to "Item:Q2277082"
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The following pages link to Homogenization of the Navier-Stokes equations in open sets perforated with tiny holes. I: Abstract framework, a volume distribution of holes (Q2277082):
Displaying 50 items.
- Homogenization of the compressible Navier-Stokes equations in domains with very tiny holes (Q2109132) (← links)
- Convergence of the pressure in the homogenization of the Stokes equations in randomly perforated domains (Q2118890) (← links)
- Homogenization of the full compressible Navier-Stokes-Fourier system in randomly perforated domains (Q2131386) (← links)
- Large-time behavior of small-data solutions to the Vlasov-Navier-Stokes system on the whole space (Q2137780) (← links)
- Homogenization and low Mach number limit of compressible Navier-Stokes equations in critically perforated domains (Q2154515) (← links)
- Homogenization of Stokes equations in perforated domains: a unified approach (Q2199723) (← links)
- Layer potentials for Lamé systems and homogenization of perforated elastic medium with clamped holes (Q2217805) (← links)
- Corrector equations in fluid mechanics: effective viscosity of colloidal suspensions (Q2220648) (← links)
- Homogenization of stationary Navier-Stokes-Fourier system in domains with tiny holes (Q2223614) (← links)
- Classical and quantum mechanical models of many-particle systems. Abstracts from the workshop held November 29 -- December 5, 2020 (online meeting) (Q2232321) (← links)
- Uniform estimates for Stokes equations in a domain with a small hole and applications in homogenization problems (Q2236834) (← links)
- Modelling wave dispersion in fluid saturating periodic scaffolds (Q2245029) (← links)
- Permeability through a perforated domain for the incompressible 2D Euler equations (Q2259431) (← links)
- On the derivation of a Stokes-Brinkman problem from Stokes equations around a random array of moving spheres (Q2288116) (← links)
- Homogenization of the Navier-Stokes equations by means of the multi-scale virtual power principle (Q2308937) (← links)
- Existence results for a monophasic compressible Darcy-Brinkman's flow in porous media (Q2316106) (← links)
- Homogenisation for the Stokes equations in randomly perforated domains under almost minimal assumptions on the size of the holes (Q2334991) (← links)
- A derivation of the Vlasov-Stokes system for aerosol flows from the kinetic theory of binary gas mixtures (Q2411088) (← links)
- A note on the solute dispersion in a porous medium (Q2421384) (← links)
- Compression effects in heterogeneous media (Q2423227) (← links)
- A Brinkman law in the homogenization of the stationary Navier-Stokes system in a non-periodic porous medium (Q2423543) (← links)
- A note on the regularity of the holes for permeability property through a perforated domain for the 2D Euler equations (Q2423878) (← links)
- On the well-posed coupling between free fluid and porous viscous flows (Q2430028) (← links)
- Computations with finite element methods for the Brinkman problem (Q2430876) (← links)
- Homogenization of a non-stationary Stokes flow in porous medium including a layer (Q2481829) (← links)
- On boundary-value problems for the Laplacian in bounded and in unbounded domains with perforated boundaries (Q2568289) (← links)
- Impermeability through a perforated domain for the incompressible two dimensional Euler equations (Q2630264) (← links)
- Homogenization of the evolutionary Navier-Stokes system (Q2634743) (← links)
- Effects of the viscous dissipation on the Darcy-Brinkman flow: rigorous derivation of the higher-order asymptotic model (Q2656694) (← links)
- Homogenization and singular perturbation in porous media (Q2658857) (← links)
- Homogenization of evolutionary incompressible Navier-Stokes system in perforated domains (Q2680645) (← links)
- Inverse of divergence and homogenization of compressible Navier-Stokes equations in randomly perforated domains (Q2686985) (← links)
- Homogenization of ferrofluid flow models in porous media with Langevin magnetization law (Q2701292) (← links)
- Dilute emulsions with surface tension (Q2792381) (← links)
- Nonlinear Brinkman-type law as a critical case in the polymer fluid filtration (Q2795614) (← links)
- Corrector for a diffusion process in a rarefied binary structure (Q2817261) (← links)
- \(H(\mathop{div})\)-conforming finite elements for the Brinkman problem (Q2883365) (← links)
- Computation of the effective slip of rough hydrophobic surfaces via homogenization (Q2920913) (← links)
- Multiscale Model Reduction Methods for Flow in Heterogeneous Porous Media (Q3179676) (← links)
- On the effective viscosity of a periodic suspension - analysis of primal and dual formulations for Newtonian and non-Newtonian solvents (Q3188498) (← links)
- Self-propelled micro-swimmers in a Brinkman fluid (Q3304447) (← links)
- The topological asymptotic for the Navier-Stokes equations (Q3365406) (← links)
- On critical parameters in homogenization of perforated domains by thin tubes with nonlinear flux and related spectral problems (Q3450328) (← links)
- Diffusion in a highly rarefied binary structure of general periodic shape (Q3532640) (← links)
- Effective permeability of the boundary of a domain (Q4323357) (← links)
- Well-posed Stokes/Brinkman and Stokes/Darcy coupling revisited with new jump interface conditions (Q4631394) (← links)
- Unilateral problems for the<i>p</i>-Laplace operator in perforated media involving large parameters (Q4646816) (← links)
- Asymptotic heat equation for crossing superconductive thin walls (Q4650232) (← links)
- The Inertialess Limit of Particle Sedimentation Modeled by the Vlasov--Stokes Equations (Q4687570) (← links)
- A Unified Homogenization Approach for the Dirichlet Problem in Perforated Domains (Q4959842) (← links)