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Forced convection heat transfer of Nano-Encapsulated Phase Change Material (NEPCM) suspension in a mini-channel heatsink
C. J. Ho, Yen Chung Liu, Mohammad Ghalambaz, Wei Mon Yan
機械工程學系
研究成果
:
Article
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143
引文 斯高帕斯(Scopus)
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Physics & Astronomy
phase change materials
77%
forced convection
74%
microchannels
51%
heat transfer
47%
working fluids
44%
nanoparticles
32%
latent heat
29%
heat
24%
performance
21%
convection
20%
water
20%
heating
15%
formaldehyde
14%
releasing
14%
wall temperature
14%
high Reynolds number
13%
low Reynolds number
13%
Nusselt number
13%
hydraulics
12%
solid phases
11%
aspect ratio
11%
heat flux
10%
flow velocity
9%
viscosity
8%
copper
8%
augmentation
7%
fluids
7%
coefficients
6%
liquids
6%
Engineering & Materials Science
Forced convection
69%
Phase change materials
67%
Microchannels
53%
Nanoparticles
48%
Heat transfer
40%
Working fluids
37%
Convection
24%
Reynolds number
20%
Water
19%
Hot Temperature
17%
Heating
17%
Formaldehyde
15%
Coefficient of performance
14%
Nusselt number
12%
Particle size
11%
Aspect ratio
11%
Heat flux
10%
Copper
9%
Viscosity
9%
Hydraulics
9%
Flow rate
9%
Liquids
8%
Fluids
7%
Temperature
4%
Chemical Compounds
Convective Heat Transfer
100%
Phase Change Material
76%
Heat Transfer
65%
Suspension
47%
Heat
45%
Reynolds Number
27%
Nanoparticle
20%
Nusselt Number
18%
Formaldehyde
8%
Plate Like Crystal
7%
Flow Kinetics
7%
Reduction
4%