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A mathematical model for frost growth and densification on flat surfaces
Amne El Cheikh,
Anthony Jacobi
Mechanical Science and Engineering
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peer-review
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Physics & Astronomy
air
30%
boundary conditions
14%
cold surfaces
30%
densification
70%
flat surfaces
62%
frost
100%
gradients
6%
heat
6%
heat flux
9%
heat transfer
7%
humidity
9%
mathematical models
58%
predictions
5%
saturation
7%
supersaturation
11%
surface temperature
19%
temperature
5%
vapors
7%
water vapor
20%
Engineering & Materials Science
Atmospheric humidity
12%
Boundary conditions
21%
Densification
80%
Heat transfer
9%
Hot Temperature
6%
Mathematical models
48%
Saturation (materials composition)
30%
Supersaturation
20%
Temperature
22%
Water vapor
31%
Chemical Compounds
Densification
77%
Heat
34%
Heat Transfer
25%
Surface
22%
Water Vapor
44%