Herein a magnetic actuation strategy is proposed to manipulate magnetic nanofluids in CPU thermal management applications. The proposed concept consists of a multi-circular microchannel unit and a rotating permanent magnet. A set of numerical simulations have been carried out to evaluate the influences of (i) magnet diameter, (ii) distance between the magnet and the microchannel, and (iii) shape of the magnet on magnetic flux densities (MFD) inside microchannels with Fe3O4 magnetic nanofluid. The results indicated that the MFD on the magnetic nanofluid significantly varies along with the radial position within the microchannel
In the present study, the two-dimensional jet flow of Fe3O4-H2O nanofluid was numerically investigat...
This thesis presents studies on different applications of magnetic force in microfluidic devices, in...
Ferrofluid contains magnetic nanoparticles in water-based solution that can interact with non-unifor...
Herein a magnetic actuation strategy is proposed to manipulate magnetic nanofluids in CPU thermal ma...
In this study, a novel rotating permanent magnetic actuator (PMA) system is proposed to manipulate m...
Electromagnetically actuated microflows are generated by using ferromagnetic nanofluids containing F...
One of the most important and promising research areas in biomedical and micropumping applications i...
We investigate the spreading phenomena caused by the interaction between a uniform magnetic field an...
Magnetofluidic spreading (MFS) is a phenomenon in which a uniform magnetic field is used to induce s...
Considerable efforts have been spent in the development of magnetic nanoparticles (MNPs) in the last...
We report on the magnetic actuation of superparamagnetic particles in a microfluidic channel. The fo...
The main purpose of this paper was to investigate an influence of various parameters on the heat tra...
This research deals with the analysis of magnetizable hybrid nanofluid of MWCNT-Fe3O4/H2O inside a c...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
The control and manipulation of superparamagnetic nanoparticles (SP-MNP) is a significant challenge ...
In the present study, the two-dimensional jet flow of Fe3O4-H2O nanofluid was numerically investigat...
This thesis presents studies on different applications of magnetic force in microfluidic devices, in...
Ferrofluid contains magnetic nanoparticles in water-based solution that can interact with non-unifor...
Herein a magnetic actuation strategy is proposed to manipulate magnetic nanofluids in CPU thermal ma...
In this study, a novel rotating permanent magnetic actuator (PMA) system is proposed to manipulate m...
Electromagnetically actuated microflows are generated by using ferromagnetic nanofluids containing F...
One of the most important and promising research areas in biomedical and micropumping applications i...
We investigate the spreading phenomena caused by the interaction between a uniform magnetic field an...
Magnetofluidic spreading (MFS) is a phenomenon in which a uniform magnetic field is used to induce s...
Considerable efforts have been spent in the development of magnetic nanoparticles (MNPs) in the last...
We report on the magnetic actuation of superparamagnetic particles in a microfluidic channel. The fo...
The main purpose of this paper was to investigate an influence of various parameters on the heat tra...
This research deals with the analysis of magnetizable hybrid nanofluid of MWCNT-Fe3O4/H2O inside a c...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
The control and manipulation of superparamagnetic nanoparticles (SP-MNP) is a significant challenge ...
In the present study, the two-dimensional jet flow of Fe3O4-H2O nanofluid was numerically investigat...
This thesis presents studies on different applications of magnetic force in microfluidic devices, in...
Ferrofluid contains magnetic nanoparticles in water-based solution that can interact with non-unifor...