This work reports numerical investigation of lateral migration of a paramagnetic microparticle of an elliptic shape in a plane Poiseuille flow of a Newtonian fluid under a uniform magnetic field by direct numerical simulation (DNS). A finite element method (FEM) based on the arbitrary Lagrangian–Eulerian (ALE) approach is used to study the effects of strength and direction of the magnetic field, particle–wall separation distance and particle shape on the lateral migration. The particle is shown to exhibit negligible lateral migration in the absence of a magnetic field. When the magnetic field is applied, the particle migrates laterally. The migration direction depends on the direction of the external magnetic field, which controls the symme...
A numerical model of particle motion in fluid flow under the influence of hydrodynamic and magnetic ...
This paper analyzes numerical simulations of the trajectories of magnetic beads in a microchannel, w...
Magnetic manipulation of non-spherical magnetic microparticles is important for applications in shap...
This work reports numerical investigation of lateral migration of a paramagnetic microparticle of an...
We study the rotational dynamics of magnetic prolate elliptical particles in a simple shear flow sub...
Under a uniform magnetic field, magnetic particles tend to form chains, clusters or columns due to p...
We present a simple method to control the position of ellipsoidal magnetic particles in microchannel...
We present a simple method to control the position of ellipsoidal magnetic particles in microchannel...
The manipulation of magnetic particles in a continuous flow with magnetic fields is central to sever...
The manipulation of magnetic particles in a continuous flow with magnetic fields is central to sever...
We present a simple method to control the position of ellipsoidal magnetic particles in microchannel...
We present a simple method to control the position of ellipsoidal magnetic particles in microchannel...
Manipulation of droplets based on physical properties (e.g., size, interfacial tension, electrical, ...
Considerable efforts have been spent in the development of magnetic nanoparticles (MNPs) in the last...
A numerical model of particle motion in fluid flow under the influence of hydrodynamic and magnetic ...
A numerical model of particle motion in fluid flow under the influence of hydrodynamic and magnetic ...
This paper analyzes numerical simulations of the trajectories of magnetic beads in a microchannel, w...
Magnetic manipulation of non-spherical magnetic microparticles is important for applications in shap...
This work reports numerical investigation of lateral migration of a paramagnetic microparticle of an...
We study the rotational dynamics of magnetic prolate elliptical particles in a simple shear flow sub...
Under a uniform magnetic field, magnetic particles tend to form chains, clusters or columns due to p...
We present a simple method to control the position of ellipsoidal magnetic particles in microchannel...
We present a simple method to control the position of ellipsoidal magnetic particles in microchannel...
The manipulation of magnetic particles in a continuous flow with magnetic fields is central to sever...
The manipulation of magnetic particles in a continuous flow with magnetic fields is central to sever...
We present a simple method to control the position of ellipsoidal magnetic particles in microchannel...
We present a simple method to control the position of ellipsoidal magnetic particles in microchannel...
Manipulation of droplets based on physical properties (e.g., size, interfacial tension, electrical, ...
Considerable efforts have been spent in the development of magnetic nanoparticles (MNPs) in the last...
A numerical model of particle motion in fluid flow under the influence of hydrodynamic and magnetic ...
A numerical model of particle motion in fluid flow under the influence of hydrodynamic and magnetic ...
This paper analyzes numerical simulations of the trajectories of magnetic beads in a microchannel, w...
Magnetic manipulation of non-spherical magnetic microparticles is important for applications in shap...