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Slip-flow pressure drop in microchannels of general cross section
M. Bahrami, A. Tamayol, P. Taheri
Research output
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Contribution to journal
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Article
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peer-review
52
Scopus citations
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Keyphrases
Pressure Drop
100%
Slip Flow
100%
Flow Pressure Drop
100%
Arbitrary Cross-section
66%
First-order
33%
Square Root
33%
Argon
33%
Relative Velocity
33%
Geometrical Parameters
33%
Helium
33%
Cross-sectional Area
33%
Boundary Velocity
33%
Fully Developed
33%
Characteristic Length Scale
33%
Poisson Equation
33%
Knudsen number
33%
Constant Property
33%
Fully Developed Flow
33%
Trapezoidal Cross-section
33%
Maxwell
33%
Polar Moment of Inertia
33%
Slip Flow Regime
33%
Compact Analytical Model
33%
Slip Boundary Condition
33%
Homogeneous Boundary Condition
33%
No-slip Boundary Condition
33%
Axial Momentum
33%
Bulk Flow
33%
Engineering
Cross Section
100%
Microchannel
100%
Pressure Drop
100%
Slip Flow
100%
Flow Pressure
100%
Arbitrary Cross
50%
Boundary Condition
25%
Collected Data
25%
Geometrical Parameter
25%
Length Scale
25%
Boundary Velocity
25%
Characteristic Length
25%
Analytical Model
25%
Knudsen Number
25%
Relative Velocity
25%
Square Root
25%
Homogeneous Boundary Condition
25%
Moment of Inertia
25%
Polar Moment
25%
Slip Flow Regime
25%
Fully Developed Laminar Flow
25%
No-Slip Boundary Condition
25%
Bulk Flow
25%