Title of article :
Finite element simulation of thin liquid film flow and heat transfer including a hydraulic jump
Author/Authors :
C. J. Sung، نويسنده , , H. G. Choi، نويسنده , , J. Y. Yoo
، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1999
Abstract :
A numerical simulation has been performed to investigate planar and radial #ows of thin liquid "lm subject
to constant wall temperature or constant wall heat #ux, considering the surface tension e!ect. To simulate
the variation of the "lm height including a hydraulic jump, an Arbitrary Lagrangian}Eulerian (ALE)
method is adopted in describing the governing equations. An iterative split algorithm is used to improve the
continuity constraint in time marching of the governing equations which are discretized by Streamline
Upwind Petrov}Galerkin (SUPG) "nite element method. It has been shown clearly that the surface tension
has to be considered in order to describe realistically a hydraulic jump preceded by a capillary ripple. The
variation of the "lm height is in good agreement with the existing experimental data. Physical aspects of how
the #owrate as well as temperature-dependent #uid properties a!ect the formation of the hydraulic jump and
the variation of the Nusselt number are discussed rationally
Keywords :
Arbitrary Lagrangian}Eulerian (ALE) method , thin liquid "lm , hydraulic jump , surface tension , capillary ripple , temperature-dependent #uid property
Journal title :
International Journal for Numerical Methods in Engineering
Journal title :
International Journal for Numerical Methods in Engineering