Numerical computation of natural convection inside a curved-shape nanofluid-filled enclosure with nonuniform heating of the bottom wall

被引:8
|
作者
Yahiaoui, Abdellaziz [1 ]
Djezzar, Mahfoud [1 ]
Naji, Hassane [2 ,3 ]
机构
[1] Freres Mentouri Constantine 1 Univ, Energy Phys Lab, Fac Exact Sci, Constantine 25000, Algeria
[2] Univ Artois, Lab Civil Engn & Geoenvironm LGCgE EA 4515, Technoparc Futura, F-62400 Bethune, France
[3] Lille Univ Northern France, 1 Rue Prof Calmette, F-59000 Lille, France
来源
INTERNATIONAL JOURNAL OF MODERN PHYSICS C | 2019年 / 30卷 / 01期
关键词
Natural convection; H2O-Cu nanofluid; enclosures; heat transfer; curved walls; numerical simulation; TILTED HEMISPHERICAL ENCLOSURES; WATER NANOFLUID; TRANSFER ENHANCEMENT; VISCOSITY; CAVITIES; FLOW;
D O I
10.1142/S0129183119500062
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
This paper performs a numerical analysis of the natural convection within two-dimensional enclosures (square enclosure and enclosures with curved walls) full of a H2O-Cu nanofluid. While their vertical walls are isothermal with a cold temperature T-c, the horizontal top wall is adiabatic and the bottom wall is kept at a sinusoidal hot temperature. The working fluid is assumed to be Newtonian and incompressible. Three values of the Rayleigh number were considered, viz., 10(3), 10(4), 10(5), the Prandtl number is fixed at 6.2, and the volume fraction phi is taken equal to 0% (pure water), 10% and 20%. The numerical simulation is achieved using a 2D-in-house CFD code based on the governing equations formulated in bipolar coordinates and translated algebraically via the finite volume method. Numerical results are presented in terms of streamlines, isotherms and local and average Nusselt numbers. These show that the heat transfer rate increases with both the volume fraction and the Rayleigh number, and that the average number of Nusselt characterizing the heat transfer raises with the nanoparticles volume fraction.
引用
收藏
页数:23
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