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Numerical simulations of resonant heat transfer augmentation at low Reynolds numbers
Miles Greiner
,
Paul F. Fischer
, Henry Tufo
Research output
:
Contribution to journal
›
Conference article
›
peer-review
Overview
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Dive into the research topics of 'Numerical simulations of resonant heat transfer augmentation at low Reynolds numbers'. Together they form a unique fingerprint.
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Keyphrases
Numerical Simulation
100%
Low Reynolds number
100%
Heat Transfer
100%
Heat Transfer Enhancement
100%
Pumping Power
100%
Transfer Level
66%
Natural Frequency
66%
Order of Magnitude
33%
Two Dimensional
33%
Effective Method
33%
Heat Transfer Applications
33%
Forcing Frequency
33%
Spectral Element
33%
Power Required
33%
Critical Reynolds number
33%
Number System
33%
Flow Rate Modulation
33%
Passage System
33%
Microscale Heat Transfer
33%
Flow Rate Pulses
33%
Engineering
Pumping Power
100%
Computer Simulation
100%
Flow Rate
66%
Flow Velocity
66%
Resonant Frequency
66%
Two Dimensional
33%
Hydrodynamics
33%
Reynolds' Number
33%
Heat Transfer Enhancement
33%
Forcing Frequency
33%
Number System
33%
Physics
Flow Velocity
100%
Resonant Frequency
100%
Numerical Simulation
100%
Heat Transfer Augmentation
100%
Reynolds Number
50%
Heat Transfer Enhancement for Application
50%
Hydrodynamics
50%