There are many important systems which involve the flow of dense suspensions of deformable particles; blood is an example. However, the modeling of such materials represents a considerable challenge to established methods such as computational fluid dynamics (CFD). In this PhD project, work has been undertaken to extend the lattice Boltzmann method (LBM), and enable it to represent a large number of mutually immiscible, deformable, droplets (separated by narrow interfaces). The new method imposes a relatively small computational overhead and has been validated against experimental observations. The work has also led to very promising developments in the simulation of micro-fluidic systems, allowing much quicker simulations than tra...
This thesis describes investigations of several complex fluid effects., including hydrodynamic spino...
Accurate and reliable modeling of cardiovascular hemodynamics has the potential to improve understan...
Colloids are ubiquitous in the food, medical, cosmetics, polymers, water purification, and pharmaceu...
While blood at the macroscopic scale is frequently treated as a continuum by techniques such as comp...
Multi-component fluid flows are frequently seen in both nature and industry, such as gas-liquid flo...
Simulation of human blood flow is a demanding task both in terms of the complexity of applicable mod...
We review our recent multi-component lattice Boltzmann equation method for the simulation of a large...
Human blood flow is a multiscale problem: in first approximation, blood is a dense suspension of pla...
We present an improved lattice Boltzmann model of multi-component flow which permits practical, hydr...
The lattice Boltzmann method (LBM) for computational fluid dynamics benefits from a simple, explicit...
Change of title: Mesoscale hemodynamics with coarse-grained lattice Boltzmann-molecular dynamics sim...
We describe here a rigorous and accurate model for the simulation of three-dimensional deformable pa...
Human blood can be approximated as a dense suspension of red blood cells in plasma. Here, we present...
The dynamics of deformable liquid-filled bodies (e.g., droplets, capsules, lipid vesicles) suspended...
The dynamics of deformable liquid-filled bodies (e.g. droplets, capsules, lipid vesicles) suspended ...
This thesis describes investigations of several complex fluid effects., including hydrodynamic spino...
Accurate and reliable modeling of cardiovascular hemodynamics has the potential to improve understan...
Colloids are ubiquitous in the food, medical, cosmetics, polymers, water purification, and pharmaceu...
While blood at the macroscopic scale is frequently treated as a continuum by techniques such as comp...
Multi-component fluid flows are frequently seen in both nature and industry, such as gas-liquid flo...
Simulation of human blood flow is a demanding task both in terms of the complexity of applicable mod...
We review our recent multi-component lattice Boltzmann equation method for the simulation of a large...
Human blood flow is a multiscale problem: in first approximation, blood is a dense suspension of pla...
We present an improved lattice Boltzmann model of multi-component flow which permits practical, hydr...
The lattice Boltzmann method (LBM) for computational fluid dynamics benefits from a simple, explicit...
Change of title: Mesoscale hemodynamics with coarse-grained lattice Boltzmann-molecular dynamics sim...
We describe here a rigorous and accurate model for the simulation of three-dimensional deformable pa...
Human blood can be approximated as a dense suspension of red blood cells in plasma. Here, we present...
The dynamics of deformable liquid-filled bodies (e.g., droplets, capsules, lipid vesicles) suspended...
The dynamics of deformable liquid-filled bodies (e.g. droplets, capsules, lipid vesicles) suspended ...
This thesis describes investigations of several complex fluid effects., including hydrodynamic spino...
Accurate and reliable modeling of cardiovascular hemodynamics has the potential to improve understan...
Colloids are ubiquitous in the food, medical, cosmetics, polymers, water purification, and pharmaceu...