Predicting the distribution of solutes or particles in flows within porous-walled tubes is essential to inform the design of devices that rely on cross-flow filtration, such as those used in water purification, irrigation devices, field-flow fractionation, and hollow-fibre bioreactors for tissue-engineering applications. Motivated by these applications, a radially averaged model for fluid and solute transport in a tube with thin porous walls is derived by developing the classical ideas of Taylor dispersion. The model includes solute diffusion and advection via both radial and axial flow components, and the advection, diffusion, and uptake coefficients in the averaged equation are explicitly derived. The effect of wall permeability, slip, an...
Equations are derived describing the dispersion of a permeable solute during Poiseuille flow in a ca...
The current work is devoted entirely to the study of passive transport phenomena, or more specifical...
The current work is devoted entirely to the study of passive transport phenomena, or more specifical...
Predicting the distribution of solutes or particles in flows within porous-walled tubes is essential...
We present a matched asymptotic analysis of the fluid flow and solute transport in a small aspect ra...
We present a matched asymptotic analysis of the fluid flow and solute transport in a small aspect ra...
A mathematical model for solute transfer in an ultrafiltering glomerular capillary has been proposed...
Tissue engineering has great potential as a method for replacing or repairing lost or damaged tissue...
A model to describe the transport across membranes of chemical species dissolved in an incompressibl...
A mathematical model (the Porous Medium Model, PMM) was developed to predict the fluid flow and sol...
A 2D model is developed for fluid flow, mass transport and cell distribution in a hollow fibre membr...
A mathematical model for solute transfer in blood flow through cylindrical tube with permeable wall ...
Presented in this paper is a theoretical analysis for longitudinal scalar spread of mean concentrati...
Cross-flow inside-out filtration is a pressure-driven separation and enrichment process of microgel ...
This is a study on the mass transport, accomplished by reaction, advection, and dispersion, of a sol...
Equations are derived describing the dispersion of a permeable solute during Poiseuille flow in a ca...
The current work is devoted entirely to the study of passive transport phenomena, or more specifical...
The current work is devoted entirely to the study of passive transport phenomena, or more specifical...
Predicting the distribution of solutes or particles in flows within porous-walled tubes is essential...
We present a matched asymptotic analysis of the fluid flow and solute transport in a small aspect ra...
We present a matched asymptotic analysis of the fluid flow and solute transport in a small aspect ra...
A mathematical model for solute transfer in an ultrafiltering glomerular capillary has been proposed...
Tissue engineering has great potential as a method for replacing or repairing lost or damaged tissue...
A model to describe the transport across membranes of chemical species dissolved in an incompressibl...
A mathematical model (the Porous Medium Model, PMM) was developed to predict the fluid flow and sol...
A 2D model is developed for fluid flow, mass transport and cell distribution in a hollow fibre membr...
A mathematical model for solute transfer in blood flow through cylindrical tube with permeable wall ...
Presented in this paper is a theoretical analysis for longitudinal scalar spread of mean concentrati...
Cross-flow inside-out filtration is a pressure-driven separation and enrichment process of microgel ...
This is a study on the mass transport, accomplished by reaction, advection, and dispersion, of a sol...
Equations are derived describing the dispersion of a permeable solute during Poiseuille flow in a ca...
The current work is devoted entirely to the study of passive transport phenomena, or more specifical...
The current work is devoted entirely to the study of passive transport phenomena, or more specifical...