Galerkin finite element analysis of magneto-hydrodynamic natural convection of Cu-water nanoliquid in a baffled U-shaped enclosure

被引:86
|
作者
Zaim, A. [1 ]
Aissa, A. [2 ]
Mebarek-Oudina, F. [3 ,4 ]
Mahanthesh, B. [5 ]
Lorenzini, G. [6 ]
Sahnoun, M. [2 ]
El Ganaoui, M. [7 ]
机构
[1] Univ Mascara, Fac Sci & Technol, BLSTE Lab, Mascara, Algeria
[2] Univ Mustapha Stambouli Mascara, Lab Phys Quant Mat & Modelisat Math LPQ3M, Mascara, Algeria
[3] Univ 20 Aout 1955 Skikda, Fac Sci, Dept Phys, Skikda 2100, Algeria
[4] Univ 20 Aout 1955 Skikda, Lab Mat & Genie Energet LMGE, Skikda 2100, Algeria
[5] CHRIST, Dept Math, Bangalore 560029, Karnataka, India
[6] Univ Parma, Dept Engn & Architecture, Parco Area Sci 181-A, I-43124 Parma, Italy
[7] Univ Lorraine, Lab Energet Longwy FJV LERMAB, Lorraine, France
关键词
Natural convection; Nanoliquid; Rayleigh number; Baffled U-shaped; Nusselt number; Galerkin finite element method; NANOFLUID HEAT-TRANSFER; SQUARE CAVITY; MAGNETIC-FIELD; FLOW; GENERATION; SINGLE; BLOCK; CFD;
D O I
10.1016/j.jppr.2020.10.002
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
In this paper, single-phase homogeneous nanofluid model is proposed to investigate the natural convection of magneto-hydrodynamic (MHD) flow of Newtonian Cu-H2O nanoliquid in a baffled U-shaped enclosure. The Brinkman model and Wasp model are considered to measure the effective dynamic viscosity and effective thermal conductivity of the nanoliquid correspondingly. Nanoliquid's effective properties such as specific heat, density and thermal expansion coefficient are modeled using mixture theory. The complicated PDS (partial differential system) is treated for numeric solutions via the Galerkin finite element method. The pertinent parameters Hartmann number (1 <= Ha <= 60), Rayleigh number (10(3) <= Ra <= 10(6)) and nanoparticles volume fraction (0% <= phi <= 4%) are taken for the parametric analysis, and it is conducted via streamlines and isotherms. Excellent agreement between numerical results and open literature. It is ascertained that heat transfer rate enhances with Rayleigh number Ra and volume fraction 4), however it is diminished for larger Hartmann number Ha. (C) 2020 Beihang University. Production and hosting by Elsevier B.V. on behalf of KeAi.
引用
收藏
页码:383 / 393
页数:11
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