A multiscale theoretical model for fluid flow in cellular biological media
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Publication:1659819
DOI10.1016/j.ijengsci.2011.09.010zbMath1423.76521OpenAlexW2004522593MaRDI QIDQ1659819
Terpsichori S. Alexiou, Alkiviades C. Payatakes, George E. Kapellos
Publication date: 23 August 2018
Published in: International Journal of Engineering Science (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.ijengsci.2011.09.010
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Cites Work
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- Thermomechanical theories for swelling porous media with microstructure
- Theories of immiscible and structured mixtures
- On macroscopic equations governing multiphase flow with diffusion and chemical reactions in porous media
- Theoretical modeling of fluid flow in cellular biological media: an overview
- Incompressible porous media models by use of the theory of mixtures
- Momentum transfer at the boundary between a porous medium and a homogeneous fluid. I: Theoretical development. II: Comparison with experiment
- BiCGstab(\(l\)) and other hybrid Bi-CG methods
- Multiscale, hybrid mixture theory for swelling systems. I: Balance laws
- A multiscale theoretical model for diffusive mass transfer in cellular biological media
- The first effects of fluid inertia on flows in ordered and random arrays of spheres
- Slow flow through a periodic array of spheres
- A 2D constrained mixture model for arterial adaptations to large changes in flow, pressure and axial stretch
- Stokes flow through periodic arrays of spheres
- Laminar viscous flow through regular arrays of parallel solid cylinders
- CONTINUUM THEORIES OF MIXTURES: BASIC THEORY AND HISTORICAL DEVELOPMENT
- Review Paper: Continuum biomechanics of soft biological tissues
- Lattice-Boltzmann simulations of low-Reynolds-number flow past mono- and bidisperse arrays of spheres: results for the permeability and drag force
- Molecular dynamics and multiscale homogenization analysis of seepage/diffusion problem in bentonite clay
- A CONSTRAINED MIXTURE MODEL FOR GROWTH AND REMODELING OF SOFT TISSUES
- Modelling solid tumour growth using the theory of mixtures
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