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Enhancement of heat transfer over a cylinder by acoustic excitation
J. H. Su, C. Gau, C. S. Yang
Department of Aeronautics and Astronautics
International Bachelor Degree Program on Energy Engineering
Research output
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Article
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peer-review
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Citation (Scopus)
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Physics & Astronomy
acoustic excitation
100%
heat transfer
58%
vortex shedding
54%
augmentation
45%
acoustics
34%
sound pressure
30%
synchronism
26%
Reynolds number
25%
sound generators
24%
wall temperature
17%
wind tunnels
17%
flow visualization
17%
wakes
14%
resonant frequencies
13%
energy spectra
12%
interference
10%
excitation
7%
Earth & Environmental Sciences
heat transfer
65%
acoustics
61%
vortex shedding
59%
acoustic wave
52%
sound
36%
Reynolds number
28%
wind tunnel
15%
physical process
13%
visualization
12%
experiment
11%
energy
7%
comparison
6%
temperature
5%
effect
3%
Chemical Compounds
Heat Transfer
80%
Cylinder
80%
Sound Property
63%
Reynolds Number
41%
Acoustic Impedance
38%
Flow
19%
Energy
7%
Engineering & Materials Science
Acoustics
61%
Acoustic waves
59%
Heat transfer
50%
Vortex shedding
43%
Acoustic generators
21%
Reynolds number
21%
Synchronization
19%
Flow visualization
14%
Wind tunnels
11%
Natural frequencies
10%
Experiments
8%
Temperature
4%