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Zbl 1078.76074
Myers, T.G.; Charpin, J.P.F.
A mathematical model for atmospheric ice accretion and water flow on a cold surface.
(English)
[J] Int. J. Heat Mass Transfer 47, No. 25, 5483-5500 (2004). ISSN 0017-9310

Summary: A mathematical model is developed to describe ice accretion and water flow on a cold substrate of arbitrary shape. It is shown how the model may be applied to practical substrate shapes, such as flat surface, cylinder and aerofoil. A numerical scheme to solve the governing equations is then described. Results are presented for an aerofoil under conditions appropriate to in-flight icing and for a cylinder in conditions for atmospheric icing.
MSC 2000:
*76T99 None of the above, but in this section
76M12 Finite volume methods
80A22 Stefan problems, etc.
80A20 Heat and mass transfer
86A40 Glaciology

Keywords: Lubrication theory; Solidification; Roe-Sweby scheme

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Highlights
Scientific prize winners of the ICM 2010
Overhang
Lie groups, physics and geometry. An introduction for physicists, engineers and chemists.

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