We derive a new computational model for the simulation of viscous incompressible flows bounded by a thin, flexible, porous membrane. Our approach is grid-free and models the boundary forces with regularized Stokeslets. The flow across the porous membranes is modeled with regularized source doublets based on the notion that the flux velocity across the boundary can be viewed as the flow induced by a fluid source/sink pair with the sink on the high-pressure side of the boundary and magnitude proportional to the pressure difference across the membrane. Several validation examples are presented that illustrate how to calibrate the parameters in the model. We present an example consisting of flow in a closed domain that loses volume due to the f...
The problem of viscous incompressible flow in a periodic cell with a porous body is solved. The Stok...
The computational fluid dynamics (CFD) simulations are carried out for the membrane feed channel. T...
In this thesis, the coupling of the Stokes equations and the Biot poroelasticity equations for fluid...
A discrete-forcing immersed boundary method with permeable membranes is developed to investigate the...
The numerical solution of Stokes flow in a two dimensional channel in which a segment of one wall is...
We describe a generalization of the immersed boundary (IB) method for simulating fluid-structure int...
International audienceThe motion of particles in a viscous fluid close to a porous membrane is model...
International audienceThe motion of particles in a viscous fluid close to a porous membrane is model...
International audienceThe motion of particles in a viscous fluid close to a porous membrane is model...
International audienceThe motion of particles in a viscous fluid close to a porous membrane is model...
In this thesis, we studied numerical methods for the coupling of free fluid flow with porous medium ...
© 2017 Elsevier Ltd The problem of viscous incompressible flow in a periodic cell with a porous body...
Numerical models for the simulation of longitudinal and transverse Stokes flow in cylindrical period...
The present thesis is devoted to the derivation of Darcy's law for incompressible viscous fluid flow...
The present thesis is devoted to the derivation of Darcy's law for incompressible viscous fluid flow...
The problem of viscous incompressible flow in a periodic cell with a porous body is solved. The Stok...
The computational fluid dynamics (CFD) simulations are carried out for the membrane feed channel. T...
In this thesis, the coupling of the Stokes equations and the Biot poroelasticity equations for fluid...
A discrete-forcing immersed boundary method with permeable membranes is developed to investigate the...
The numerical solution of Stokes flow in a two dimensional channel in which a segment of one wall is...
We describe a generalization of the immersed boundary (IB) method for simulating fluid-structure int...
International audienceThe motion of particles in a viscous fluid close to a porous membrane is model...
International audienceThe motion of particles in a viscous fluid close to a porous membrane is model...
International audienceThe motion of particles in a viscous fluid close to a porous membrane is model...
International audienceThe motion of particles in a viscous fluid close to a porous membrane is model...
In this thesis, we studied numerical methods for the coupling of free fluid flow with porous medium ...
© 2017 Elsevier Ltd The problem of viscous incompressible flow in a periodic cell with a porous body...
Numerical models for the simulation of longitudinal and transverse Stokes flow in cylindrical period...
The present thesis is devoted to the derivation of Darcy's law for incompressible viscous fluid flow...
The present thesis is devoted to the derivation of Darcy's law for incompressible viscous fluid flow...
The problem of viscous incompressible flow in a periodic cell with a porous body is solved. The Stok...
The computational fluid dynamics (CFD) simulations are carried out for the membrane feed channel. T...
In this thesis, the coupling of the Stokes equations and the Biot poroelasticity equations for fluid...