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Navier-stokes and burnett simulations of flows in microchannels
Keon Young Yun
,
Ramesh K. Agarwal
Department of Mechanical Engineering & Materials Science
Roy and Diana Vagelos Division of Biology & Biomedical Sciences (DBBS)
Research output
:
Contribution to conference
›
Paper
›
peer-review
8
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Scopus citations
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Keyphrases
Navier-Stokes
100%
Burnett Equations
100%
High Knudsen number
50%
Boltzmann Equation
33%
Direct Simulation Monte Carlo
33%
Moment Equations
33%
Slip Boundary Condition
33%
High-order
16%
Flow Variables
16%
Grad
16%
Equation Method
16%
Method of Moments
16%
Microdevice
16%
Physical Concerns
16%
Gas Flow
16%
Knudsen number
16%
Supersonic Flow
16%
Chapman-Enskog Expansion
16%
Navier-Stokes Solution
16%
Condition Simulation
16%
Particle Method
16%
Numerical Issues
16%
Continuum Equations
16%
Monte Carlo Solution
16%
Microchannel Flow
16%
Higher-order Continuum
16%
Continuum Approximation
16%
Subsonic Flow
16%
Paper History
16%
Compressible Navier Stokes Equations
16%
Mathematics
Direct Simulation Monte Carlo
100%
Boltzmann Equation
100%
Slip Boundary Condition
100%
Navier-Stokes Equation
50%
Monte Carlo Solution
50%
Physics
Burnett Equation
100%
Knudsen Flow
66%
Boundary Condition
33%
Boltzmann Equation
33%
Monte Carlo Method
33%
Supersonic Flow
16%
Navier-Stokes Equation
16%
Gas Flow
16%
Subsonic Flow
16%