© 2019 Author(s). The use of magnetism for various microfluidic functions such as separation, mixing, and pumping has been attracting great interest from the research community as this concept is simple, effective, and of low cost. Magnetic control avoids common problems of active microfluidic manipulation such as heat, surface charge, and high ionic concentration. The majority of past works on micromagnetofluidic devices were experimental, and a comprehensive numerical model to simulate the fundamental transport phenomena in these devices is still lacking. The present study aims to develop a numerical model to simulate transport phenomena in microfluidic devices with ferrofluid and fluorescent dye induced by a nonuniform magnetic field. Th...
This thesis presents studies on different applications of magnetic force in microfluidic devices, in...
AbstractThis contribution addresses a possible solution for water purification from heavy metals by ...
Considerable efforts have been spent in the development of magnetic nanoparticles (MNPs) in the last...
The use of magnetism for various microfluidic functions such as separation, mixing, and pumping has ...
Achieving high efficiency and throughput in droplet-based mixing over a small characteristic length,...
Elucidating the microscale interaction between magnetism and fluid flow is of great importance for d...
Magnetic manipulation is a promising technique for lab-on-a-chip platforms. The magnetic approach ca...
High-throughput, rapid and homogeneous mixing of microdroplets in a small length scale such as that ...
AbstractPerformances of a micromixer based on ferrofluids are predicted numerically. A permanent mag...
Microfluidics is a branch of fluid dynamics which deals with investigations of fluid behavior at the...
A meshless numerical scheme [1] is developed in order to simulate the magnetically mediated separati...
A meshless numerical scheme is developed in order to simulate the magnetically mediated separation o...
A meshless numerical scheme [1] is developed in order to simulate the magnetically mediated separati...
A meshless numerical scheme is developed in order to simulate the magnetically mediated separation o...
A meshless numerical scheme is developed in order to simulate the magnetically mediated separation o...
This thesis presents studies on different applications of magnetic force in microfluidic devices, in...
AbstractThis contribution addresses a possible solution for water purification from heavy metals by ...
Considerable efforts have been spent in the development of magnetic nanoparticles (MNPs) in the last...
The use of magnetism for various microfluidic functions such as separation, mixing, and pumping has ...
Achieving high efficiency and throughput in droplet-based mixing over a small characteristic length,...
Elucidating the microscale interaction between magnetism and fluid flow is of great importance for d...
Magnetic manipulation is a promising technique for lab-on-a-chip platforms. The magnetic approach ca...
High-throughput, rapid and homogeneous mixing of microdroplets in a small length scale such as that ...
AbstractPerformances of a micromixer based on ferrofluids are predicted numerically. A permanent mag...
Microfluidics is a branch of fluid dynamics which deals with investigations of fluid behavior at the...
A meshless numerical scheme [1] is developed in order to simulate the magnetically mediated separati...
A meshless numerical scheme is developed in order to simulate the magnetically mediated separation o...
A meshless numerical scheme [1] is developed in order to simulate the magnetically mediated separati...
A meshless numerical scheme is developed in order to simulate the magnetically mediated separation o...
A meshless numerical scheme is developed in order to simulate the magnetically mediated separation o...
This thesis presents studies on different applications of magnetic force in microfluidic devices, in...
AbstractThis contribution addresses a possible solution for water purification from heavy metals by ...
Considerable efforts have been spent in the development of magnetic nanoparticles (MNPs) in the last...