Hybrid Solution for the Analysis of MHD Micropolar Fluid Flow in a Vertical Porous Parallel-Plates Duct

被引:4
|
作者
Miyagawa, Helder K. [1 ]
Curcino, Ingrid, V [2 ]
Pontes, Fabio A. [1 ]
Macedo, Emanuel N. [1 ,2 ]
Pontes, Pericles C. [3 ]
Quaresma, Joao N. N. [1 ,2 ]
机构
[1] Univ Fed Para, Grad Program Nat Resource Engn Amazon, PRODERNA ITEC UFPA, BR-66075110 Belem, Para, Brazil
[2] Univ Fed Para, Sch Chem Engn, FEQ ITEC UFPA, BR-66075110 Belem, Para, Brazil
[3] Univ Sul & Sudeste Para, Araguaia Inst Engn, IEA UNIFESSPA, Campus Santana do Araguaia,Rua Albino Malzoni, BR-68560000 Santana Do Araguaia, PA, Brazil
关键词
Generalized Integral Transform Technique (GITT); Magnetohydrodynamic (MHD); Micropolar Fluid; Parallel Porous Walls; Radiation Heat Transfer; INTEGRAL TRANSFORM SOLUTION; HEAT-TRANSFER; BOUNDARY-CONDITIONS; FREE-CONVECTION; NATURAL-CONVECTION; OSCILLATORY FLOW; MASS-TRANSFER; RADIATION; CHANNEL;
D O I
10.22055/JACM.2020.31972.1947
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
In this paper, we analyze the transient magnetohydrodynamic (MHD) flow of an incompressible micropolar fluid between a porous parallel-plates channel. The fluid is electrically-conducting subjected to radiation described by the Cogley-Vincent-Gilles formulation and with convective thermal boundary conditions at the plates. The solution methodology employed is the hybrid numerical-analytical approach known as the Generalized Integral Transform Technique (GITT). The consistency of the integral transform method in handling such a class of problem is illustrated through convergence analyses, and the influence of physical parameters such as radiation, and micropolar parameters, and Hartman number. The wall shear stress, the coupled stress coefficient, and heat flux at the walls were also calculated, demonstrating that increasing the gyroviscosity decreases the wall stresses magnitudes. Furthermore, the results show that increasing the radiation heat transfer decreases the fluid temperature distribution. Additionally, the velocity is damped, and the angular velocity is increased by the Lorentz force in the presence of a magnetic field.
引用
收藏
页码:1107 / 1124
页数:18
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