Author:
F. Oztop Hakan,Lioua Kolsi,Mohamad Naceur Borjini,Al-Salem Khaled
Abstract
Purpose
– The main purpose of this paper is to conduct on three-dimensional buoyancy and thermocapillary convection in an enclosure. Entropy generation is obtained from the calculated values of velocities and temperatures.
Design/methodology/approach
– As numerical method, the vorticity-vector potential formalism allows, in a three-dimensional configuration, the elimination of the pressure, which is a delicate term to treat. The control volume finite difference method is used to discretize equations. The central-difference scheme for treating convective terms and the fully implicit procedure to discretize the temporal derivatives are retained. The grid is uniform in all directions with additional nodes on boundaries. The successive relaxation iterating scheme is used to solve the resulting non-linear algebraic equations.
Findings
– Results are presented via entropy generation due to heat transfer, entropy generation due to fluid friction and total entropy generation. It is found that Marangoni number becomes more effective parameter on total entropy generation for lower values of Rayleigh numbers.
Practical implications
– In any thermal system under buoyancy induced and thermocapillary flow.
Originality/value
– It is believed that this is the first paper on three-dimensional solution of entropy generation in a cubical cavity under thermocapillary buoyancy flow.
Subject
Applied Mathematics,Computer Science Applications,Mechanical Engineering,Mechanics of Materials
Reference29 articles.
1. Babu, V.
and
Korpela, S.A.
(1990), “Three-dimensional thermocapillary convection in a cavity”, Computers Fluids, Vol. 18, pp. 229-238.
2. Behnia, M.
,
Stella, F.
and
Guj, G.
(1995), “A numerical study of three-dimensional combined buoyancy and thermocapillary convection”, Int. J. Multiphase Flow, Vol. 21, pp. 529-542.
3. Bejan, A.
(1982), Entropy Generation Through Heat and Fluid Flow, Wiley, New York, NY.
4. Bergman, T.L.
and
Keller, J.R.
(1988), “Combined buoyancy, surface tension flow in liquid metals”, J. Num. Heat Transfer, Vol. 13, pp. 49-63.
5. Carey, G.F.
,
McLay, R.
,
Bicken, G.
,
Barth, B.
,
Swift, S.
and
Ardelea, A.
(1999), “Parallel finite element solution of three-dimensional Rayleigh-Bénard-Marangoni flows”, Int. J. Num. Meth. Fluids, Vol. 31, pp. 37-52.
Cited by
18 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献