Influence of Magnetic Wire Positions on free convection of Fe3O4-Water nanofluid in a Square Enclosure Utilizing with MAC Algorithm
Journal: Journal of Computational Applied Mechanics (Vol.51, No. 2)Publication Date: 2020-12-01
Authors : K VENKATADRI; A Shobha; C Venkata Lakshmi; V Ramachandra Prasad; B. Md Hidayathulla Khan;
Page : 323-331
Keywords : MAC Method; Magnetizable Fluid; magnetic sources; enclosure; Nanofluid;
Abstract
The augment of heat transfer and fluid of buoyancy-driven flow of Fe3O4-Water nanofluid in a square cavity under the influence of an external magnetic field is studied numerically. Cold temperature is applied on the side (vertical) walls and high temperature is imposed on the bottom wall while the top wall is kept at thermally insulated. The governing non-dimensional differential equations are solved using Marker and Cell (MAC) Algorithm. The developed MATLAB code is validated with previous literature and it gives good agreement. The effects of Rayleigh number Ra, Prandtl number Pr and Hartmann number Ha on the flow and heat transfer characteristics are analyzed. Results indicate that the temperature gradient is an increasing function of the buoyancy force. The heat transfer characteristics and flow behavior are presented in the form of streamlines and isotherms. The position of magnetic wire is played a vital role in controlling of heat transfer rate.
Other Latest Articles
- Analysis of the nonlinear axial vibrations of a cantilevered pipe conveying pulsating two-phase flow
- Elzaki transform method for finding solutions to two-dimensional elasticity problems in polar coordinates formulated using Airy stress functions
- Comparison study between layered and functionally graded composite beams for static deflection and stress analyses
- Mechanical properties of CNT reinforced nano-cellular polymeric nanocomposite foams
- Parametric study of nonlinear buckling capacity of short cylinders with Hemispherical heads under hydrostatic pressure
Last modified: 2022-06-23 04:23:33