A simple and fast numerical method is developed capable of accurately determining the 3D rotational dynamics of a magnetic particle chain in an infinite fluid domain. The focus is to control the alternating breakup and reformation of the bead chain which we believe is essential to achieve effective fluid mixing at small scales. The numerical scheme makes use of magnetic dipole moments and extended forms of the Oseen-Burgers tensor to account for both the magnetic and hydrodynamic interactions between the particles. It is shown that the inclusion of hydrodynamic interaction between the particles is crucial to obtain a good description of the particle dynamics. Only a small error of deviation is observed when benchmarking the numerical scheme...
Super-paramagnetic colloidal particles aggregate into linear chains in the presence of a magnetic fi...
Super-paramagnetic colloidal particles aggregate into linear chains in the presence of a magnetic fi...
Super-paramagnetic colloidal particles aggregate into linear chains in the presence of a magnetic fi...
A simple and fast numerical method is developed capable of accurately determining the 3D rotational ...
A simple and fast numerical method is developed capable of accurately determining the 3D rotational ...
A simple and fast numerical method is developed capable of accurately determining the 3D rotational ...
A simple and fast numerical method is developed capable of accurately determining the 3D rotational ...
A simple and fast numerical method is developed capable of accurately determining the 3D rotational ...
A three-dimensional direct simulation method is developed to describe flows with paramagnetic partic...
A three-dimensional direct simulation method is developed to describe flows with paramagnetic partic...
A three-dimensional direct simulation method is developed to describe flows with paramagnetic partic...
A three-dimensional direct simulation method is developed to describe flows with paramagnetic partic...
A three-dimensional direct simulation method is developed to describe flows with paramagnetic partic...
ABSTRACT: The chain formation process of ferromagnetic particles under an applied magnetic field is ...
Chaotic mixing, induced by breakup and reformation of a magnetic chain under the influence of a rota...
Super-paramagnetic colloidal particles aggregate into linear chains in the presence of a magnetic fi...
Super-paramagnetic colloidal particles aggregate into linear chains in the presence of a magnetic fi...
Super-paramagnetic colloidal particles aggregate into linear chains in the presence of a magnetic fi...
A simple and fast numerical method is developed capable of accurately determining the 3D rotational ...
A simple and fast numerical method is developed capable of accurately determining the 3D rotational ...
A simple and fast numerical method is developed capable of accurately determining the 3D rotational ...
A simple and fast numerical method is developed capable of accurately determining the 3D rotational ...
A simple and fast numerical method is developed capable of accurately determining the 3D rotational ...
A three-dimensional direct simulation method is developed to describe flows with paramagnetic partic...
A three-dimensional direct simulation method is developed to describe flows with paramagnetic partic...
A three-dimensional direct simulation method is developed to describe flows with paramagnetic partic...
A three-dimensional direct simulation method is developed to describe flows with paramagnetic partic...
A three-dimensional direct simulation method is developed to describe flows with paramagnetic partic...
ABSTRACT: The chain formation process of ferromagnetic particles under an applied magnetic field is ...
Chaotic mixing, induced by breakup and reformation of a magnetic chain under the influence of a rota...
Super-paramagnetic colloidal particles aggregate into linear chains in the presence of a magnetic fi...
Super-paramagnetic colloidal particles aggregate into linear chains in the presence of a magnetic fi...
Super-paramagnetic colloidal particles aggregate into linear chains in the presence of a magnetic fi...