Heatline and massline analysis due to magnetohydrodynamic double diffusive natural convection in a trapezoidal enclosure with various aspect ratios

被引:0
作者
Mahapatra T.R. [1 ]
Mondal P. [1 ]
机构
[1] Department of Mathematics, Visva-Bharati (A Central University), Santiniketan, 731 235, West-Bengal
关键词
Aspect ratio; Heat transfer; Heatline; Magnetic field; Mass transfer; Massline; Natural convection flow; Trapezoidal enclosure;
D O I
10.1007/s40819-019-0657-4
中图分类号
学科分类号
摘要
As streamlines are the utmost visualization tools of fluid flow and not the isobars, heatlines and masslines are the sufficient visualization tools of heat and mass transfers and not the isotherms and isoconcentrations respectively. Motivated by various applications of conjugate heat and mass transfer in drying, cooling, sterilization process etc., the present work aims to find out the detailed analysis of conjugate heat and mass transfer using heatlines and masslines in a trapezoidal enclosure with different heating and various massive walls in the presence of magnetic field. The main impact of the paper is the analysis of heatlines and masslines with different aspect ratios of the cavity, which has not been considered by any earlier researcher. The second order accurate finite difference approximation streamfunction—velocity formulation of full Navier Stokes equations has been used to find out the numerical solutions. The discretised non-homogeneous system of linear equations are solved by Biconjugate Gradient Stabilized method. © Springer Nature India Private Limited 2019.
引用
收藏
相关论文
共 39 条
[1]  
White F.M., Viscous Fluid Flow, (1977)
[2]  
Eckert E.R.G., Drake R.M., Analysis of Heat and Mass Transfer (Chap. 1), (1972)
[3]  
Swenson D., Hardeman B., The effects of thermal deformation on flow in a jointed geothermal reservoir, Int. J. Rock Mech. Min. Sci., 34, pp. e1-e308, (1997)
[4]  
O'Mahoney D., Browne D.J., Use of experiment and an inverse method to study interface heat transfer during solidification in the investment casting process, Exp. Therm. Fluid Sci., 22, pp. 111-122, (2000)
[5]  
Joudi K.A., Hussein I.A., Farhan A.A., Computational model for a prism shaped storage solar collector with a right triangular cross-section, Energy Convers. Manag., 45, pp. 391-409, (2004)
[6]  
Akterian S.G., Fikiin K.A., Numerical simulation of unsteady heat conduction in arbitrary shaped canned foods during sterilization processes, J. Food Eng., 21, pp. 343-354, (1994)
[7]  
Park R.J., Kim S.B., Kim H.D., Choi S.M., Natural convection heat transfer with crust formation in the molten metal pool, Nucl. Technol., 127, pp. 66-80, (1999)
[8]  
Mishra B., Olson D.L., Molten salt applications in materials processing, J. Phys. Chem. Solids, 66, pp. 396-401, (2005)
[9]  
Roy S., Basak T., Finite element analysis of natural convection flows in a square cavity with non-uniformly heated wall(s), Int. J. Eng. Sci., 43, pp. 668-680, (2005)
[10]  
Lee K., Tsai H., Yan W., Mixed convection heat and mass transfer in vertical rectangular ducts, Int. J. Heat Mass Transf., 40, 7, pp. 1621-1631, (1997)