<p>We combine theory and numerical calculations to accurately predict the motion of anisotropic particles in shallow microfluidic channels, in which the particles are strongly confined in the vertical direction. We formulate an effective quasi-two-dimensional description of the Stokes flow around the particle via the Brinkman equation, which can be solved in a time that is two orders of magnitude faster than the three-dimensional problem. The computational speedup enables us to calculate the full trajectories of particles in the channel. To validate our scheme, we study the motion of dumbbell-shaped particles that are produced in a microfluidic channel using ‘continuous-flow lithography’. Contrary to what was reported in earlier work (Uspal...
\u3cp\u3eAt finite Reynolds numbers, Re, particles migrate across laminar flow streamlines to their ...
The specific equilibrium distance from the channel axis for particles in a laminar flow (Poiseuille ...
SUMMARY We study numerically the entire migration dynamics of spherical and oblate particles in stra...
We combine theory and numerical calculations to accurately predict the motion of anisotropic particl...
Comprehensive understanding of particle motion in microfluidic devices is essential to unlock additi...
The recent advancements in lab-on-a-chip technologies has led to numerous studies on the collective ...
In this dissertation, we investigate the effect of shape on the motion of microscopic particles that...
In this dissertation, we investigate the effect of shape on the motion of microscopic particles that...
Recent advances in microfluidic technologies have created a demand for techniques to control the mot...
In this paper, the hydrodynamic mechanism of moving particles in laminar micro-channel flows was num...
In this paper, the hydrodynamic mechanism of moving particles in laminar micro-channel flows was num...
The modelling-based design of microfluidic devices leads to highly efficient process intensification...
The behavior of confined particles in microchannels at moderate Reynolds number has received much at...
Transport of small particles, of micrometer and sub-micrometer size, by fluid occurs in many technol...
The low-Reynolds-number motion of a single spherical particle between parallel walls is determined f...
\u3cp\u3eAt finite Reynolds numbers, Re, particles migrate across laminar flow streamlines to their ...
The specific equilibrium distance from the channel axis for particles in a laminar flow (Poiseuille ...
SUMMARY We study numerically the entire migration dynamics of spherical and oblate particles in stra...
We combine theory and numerical calculations to accurately predict the motion of anisotropic particl...
Comprehensive understanding of particle motion in microfluidic devices is essential to unlock additi...
The recent advancements in lab-on-a-chip technologies has led to numerous studies on the collective ...
In this dissertation, we investigate the effect of shape on the motion of microscopic particles that...
In this dissertation, we investigate the effect of shape on the motion of microscopic particles that...
Recent advances in microfluidic technologies have created a demand for techniques to control the mot...
In this paper, the hydrodynamic mechanism of moving particles in laminar micro-channel flows was num...
In this paper, the hydrodynamic mechanism of moving particles in laminar micro-channel flows was num...
The modelling-based design of microfluidic devices leads to highly efficient process intensification...
The behavior of confined particles in microchannels at moderate Reynolds number has received much at...
Transport of small particles, of micrometer and sub-micrometer size, by fluid occurs in many technol...
The low-Reynolds-number motion of a single spherical particle between parallel walls is determined f...
\u3cp\u3eAt finite Reynolds numbers, Re, particles migrate across laminar flow streamlines to their ...
The specific equilibrium distance from the channel axis for particles in a laminar flow (Poiseuille ...
SUMMARY We study numerically the entire migration dynamics of spherical and oblate particles in stra...