The long-wave approximation of a falling film down an inclined plane with constant temperature is used to investigate the volumetric averaged entropy production. The velocity and temperature fields are numerically computed by the evolution equation at the deformable free interface. The dynamics of a falling film have an important role in the entropy production. When the layer shows an unstable evolution, the entropy production by fluid friction is much larger than that of the film with a stable flat interface. As the heat transfers actively from the free surface to the ambient air, the temperature gradient inside flowing films becomes large and the entropy generation by heat transfer increases. The contribution of fluid friction on the volumetric averaged entropy production is larger than that of heat transfer at moderate and high viscous dissipation parameters.
机构:
Univ Cape Town, Ctr Res Computat & Appl Mech, ZA-7701 Rondebosch, South Africa
Univ Cape Town, Dept Math & Appl Math, ZA-7701 Rondebosch, South AfricaUniv Cape Town, Ctr Res Computat & Appl Mech, ZA-7701 Rondebosch, South Africa
Khan, Idrees
Chinyoka, Tiri
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Univ Cape Town, Ctr Res Computat & Appl Mech, ZA-7701 Rondebosch, South Africa
Univ Cape Town, Dept Math & Appl Math, ZA-7701 Rondebosch, South AfricaUniv Cape Town, Ctr Res Computat & Appl Mech, ZA-7701 Rondebosch, South Africa
Chinyoka, Tiri
Gill, Andrew
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Ctr High Performance & Comp, Council Sci & Ind Res, Rosebank, ZA-7700 Cape Town, South AfricaUniv Cape Town, Ctr Res Computat & Appl Mech, ZA-7701 Rondebosch, South Africa
机构:
Vilnius University, 03225 Vilnius, Naugarduko Str.Vilnius University, 03225 Vilnius, Naugarduko Str.
Pileckas K.
Solonnikov V.A.
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St.Petersburg Department of VA, Steklov Institute of Mathematics of the Russian Academy of Sciences, St. Petersburg, 191023Vilnius University, 03225 Vilnius, Naugarduko Str.