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A combined continuum/DSMC technique for multiscale analysis of microfluidic filters
Ozgur Aktas, N. R. Aluru
Mechanical Science and Engineering
Beckman Institute for Advanced Science and Technology
National Center for Supercomputing Applications (NCSA)
Bioengineering
Micro and Nanotechnology Lab
Industrial and Enterprise Systems Engineering
Electrical and Computer Engineering
Materials Research Lab
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Mathematics
Direct Simulation Monte Carlo
100%
Microfluidics
98%
Filter
54%
Continuum
54%
Stokes Equations
19%
Interpolate
13%
Schwarz Alternating Method
13%
Steady-state Analysis
12%
Trapping
11%
Monte Carlo Algorithm
10%
Fluid Model
10%
Simulation Methods
10%
Time Constant
10%
Monte Carlo method
9%
Membrane
8%
Subsystem
8%
Iteration
5%
Boundary conditions
5%
Simulation
5%
Physics & Astronomy
continuums
44%
filters
43%
simulation
23%
microfluidic devices
9%
classifying
8%
interpolation
7%
iteration
7%
time constant
7%
Monte Carlo method
7%
trapping
5%
membranes
5%
boundary conditions
5%
Engineering & Materials Science
Microfluidics
65%
Monte Carlo methods
16%
Sorting
15%
Interpolation
13%
Membranes
13%
Boundary conditions
11%
Fluids
9%