Classification of frost formation style interacting with mist formation on a flat plate with temperatures ranging from general-low to cryogenic using optical measurements
Author:
Affiliation:
1. Graduate School of Fundamental Science and Engineering, Waseda University
2. School of Fundamental Science and Engineering, Waseda University
Publisher
Japan Society of Mechanical Engineers
Link
https://www.jstage.jst.go.jp/article/jtst/19/1/19_24-00071/_pdf
Reference22 articles.
1. Barron, R.F. and Han, L.S., Heat and Mass Transfer to a Cryosurface in Free Convection, Journal of Heat Transfer. Vol. 87, No. 4 (1965), pp. 499–506.
2. Byun, S., Jeong, H., Hyeon, S., and Lee, K.-S., Quantitative analysis of frosting characteristics at ultra-low temperatures under forced convection conditions, Energy and Buildings, Vol. 248, (2021a), p. 111186.
3. Byun, S., Jeong, H., Kim, D.R., and Lee, K.-S., Frost layer growth behavior on ultra-low temperature surface with a superhydrophobic coating, International Communications in Heat and Mass Transfer, Vol. 128, (2021b), p. 105641.
4. Byun, S., Jeong, H., Son, H., Kim, D.R., and Lee, K.-S., Frost formation from general-low to ultra-low temperatures: A review, International Journal of Heat and Mass Transfer, Vol. 195, (2022), p. 123164.
5. Fukiba, K., Sato, T., Tsuboi, N., and Kobayashi, H., Mass Transfer around a Cold Cylinder with Condensation of Vapor (2nd Report), Journal of the Japan Society for Aeronautical and Space Sciences, Vol. 54, No. 629 (2006), pp. 257–265 (in Japanese).
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