Deterministic lateral displacement (DLD) microsystems are suitable for the size fractionation of particle suspensions in the size range of 0.1 to 10 µm. To be able to fractionate real particles beyond a laboratory scale, these systems have to be designed for higher throughputs. High flow resistances and increasing the clogging of the systems impose substantial challenges for industrial operation. Simulative parameter studies are suitable for improving the design of the systems; for example, the position and shape of the posts. A high-resolution, two-way coupled 6-DOF CFD-DEM approach was used to study the flow and particle behavior of different post shapes (circular and triangular) and post sizes at different Reynolds numbers. The results w...
The fractionation of small particles in a liquid based on their size in a micropost array by determi...
The advent of microfluidics in the 1990s promised a revolution in multiple industries from healthcar...
International audienceDeterministic lateral displacement (DLD) devices enable to separate nanometer ...
A pressure resistant and optically accessible deterministic lateral displacement (DLD) device was de...
A pressure resistant and optically accessible deterministic lateral displacement (DLD) device was de...
Deterministic lateral displacement (DLD) is a high-resolution passive microfluidic separation method...
Our investigation aims to apply Deterministic Lateral Displacement (DLD) to separate (deformable) pa...
Deterministic lateral displacement (DLD) is a size-based separation technique in microfluidic device...
Microfluidic particle separation technologies are useful for enriching rare cell populations for aca...
Deterministic lateral displacement (DLD) devices have great potential for the separation and sorting...
thesisUtilization of ultrafine particles becomes a major concern in the mineral processing industry ...
Deterministic Lateral Displacement (DLD) exploits the experimental observation that in microfluidics...
Deterministic lateral displacement (DLD), a hydrodynamic, microfluidic technology, was first reporte...
Deterministic lateral displacement (DLD) systems structure suspension flow in so called flow lanes.T...
Continuous separation of particles of different sizes and shapes is important in both clinical diagn...
The fractionation of small particles in a liquid based on their size in a micropost array by determi...
The advent of microfluidics in the 1990s promised a revolution in multiple industries from healthcar...
International audienceDeterministic lateral displacement (DLD) devices enable to separate nanometer ...
A pressure resistant and optically accessible deterministic lateral displacement (DLD) device was de...
A pressure resistant and optically accessible deterministic lateral displacement (DLD) device was de...
Deterministic lateral displacement (DLD) is a high-resolution passive microfluidic separation method...
Our investigation aims to apply Deterministic Lateral Displacement (DLD) to separate (deformable) pa...
Deterministic lateral displacement (DLD) is a size-based separation technique in microfluidic device...
Microfluidic particle separation technologies are useful for enriching rare cell populations for aca...
Deterministic lateral displacement (DLD) devices have great potential for the separation and sorting...
thesisUtilization of ultrafine particles becomes a major concern in the mineral processing industry ...
Deterministic Lateral Displacement (DLD) exploits the experimental observation that in microfluidics...
Deterministic lateral displacement (DLD), a hydrodynamic, microfluidic technology, was first reporte...
Deterministic lateral displacement (DLD) systems structure suspension flow in so called flow lanes.T...
Continuous separation of particles of different sizes and shapes is important in both clinical diagn...
The fractionation of small particles in a liquid based on their size in a micropost array by determi...
The advent of microfluidics in the 1990s promised a revolution in multiple industries from healthcar...
International audienceDeterministic lateral displacement (DLD) devices enable to separate nanometer ...