Numerical simulation on the freezing of deposited or impinged water droplets on a cold surface

Author:

UTSUMI Daichi1,FUJII Seia1,HAGIWARA Yoshimichi2

Affiliation:

1. Graduate School of Science and Technology, Kyoto Institute of Technology

2. Faculty of Mechanical Engineering, Kyoto Institute of Technology

Publisher

Japan Society of Mechanical Engineers

Subject

Engineering (miscellaneous),Instrumentation,General Materials Science,Atomic and Molecular Physics, and Optics

Reference41 articles.

1. Archer, D. G. and Carter, R. W., Thermodynamic properties of the NaCl+H2O System. 4. Heat capacities of H2O and NaCl(aq) in cold-stable and supercooled states, Journal of Physical Chemistry, B, Vol. 104 (2000), pp. 8563–8584.

2. Le Bot, C., Vincent, S. and Arquis, E., Impact and solidification of indium droplets on a cold substrate, International Journal of Thermal Sciences, Vol. 44 (2005), pp. 219–233.

3. Briant, A. J., Papatzacos, P. and Yeomans, J. M., Lattice Boltzmann simulations of contact line motion in a liquid-gas system, Philosophical Transactions of the Royal Society A, Vol. 360 (2002), pp. 485–495.

4. Chiu, P. H. and Lin, Y. T., A conservative phase field method for solving incompressible two-phase flows, Journal of Computational Physics, Vol. 230 (2011), pp. 185–204.

5. Dehaoui, A., Issenmann, B. and Caupin, F. Viscosity of deeply supercooled water and its coupling to molecular diffusion, the Proceedings of National Academy of Science, Vol. 112 (2015), pp. 12020–12025.

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