Investigation of Hydromagnetic flow and heat transfer in a Boussinesq - Stokes suspension over an exponentially stretching sheet
Keywords:
MHD, MHD, Chandrasekhar Number,, Chandrasekhar Number,, Differential Transform Method, Differential Transform Method, Couple stress, Couple stress, Prandtl number, Prandtl number, Eckert number, Eckert numberAbstract
The investigation of velocity profiles and heat transfer properties in a hydromagnetic Boussinesq-Stokes suspension (BSS) flow over an exponentially stretching impermeable sheet is presented in this paper. Partial differential equations are the fundamental formulas that control flow and heat transfer. A suitable local similarity transformation has been applied to convert the equations into nonlinear ordinary differential equations. The differential transform method (DTM) is used to obtain the series solutions of the transformed equations with guaranteed convergence. On velocity profiles and heat transfer, the influence of the Chandrasekhar number, couple stress parameter, Prandtl number, and Eckert number are examined. The conclusions are explained graphically.
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References
L. J. Crane, Fast flow stretching plate, J. Appl. Math. Phys. (ZAMP), 21(1970), 645−647.
E. M. A. Elbashbeshy, Heat transfer over an exponentially stretching continuous surface with suction, Arch Mech., 53(6) (2001), 643−651.
M. A. EL-Aziz, Radiation effect on the flow and heat transfer over an unsteady sheet, Int. communications in Heat and Mass Transfer, 36 (2009), 521−524.
Emmanuel Sanjayanand and Sujit Kumar Khan, on heat and mass transfer in a viscoelastic boundary layer flow over an exponentially stretching sheet, Int. J. of Thermal Sciences, 45 (2006), 819-828.
A.Ishak, Radiation effect on the flow and heat transfer over a moving plate in a parallel stream., Chinese Physics Letters, 26 (2009), 034701.
V. Kumaran and G. Ramanaiah., A note on the flow over a stretching sheet, Acta Mech., 116(1996), 229-233.
E. Magyari and B. Keller, Heat and Mass transfer in the boundary layer on an exponential continuous surface, J. Phys.D: Appl. Phys., 32(5) (1999), 577.
M. K. Partha, P. V. S. N. Murthy and G. P. Rajasekhar, Effect of viscous dissipation on the mixed convection heat transfer from an exponentially stretching surface, Heat and Mass Transfer, 41(2005), 360-366.
M. Sajid and T. Hayat, Influence of thermal radiation on the boundary layer flow due to an exponentially stretching sheet, Int. communications in Heat and Mass Transfer, 35 (2008), 347−356.
P. G. Siddheshwar and U. S. Mahabaleshwar, Effects of radiation and heat source on MHD flow of a viscoelastic liquid and heat transfer over a stretching sheet, Int. J. of Non-linear mechanics, 40(2005), 807−820.
Sujit Kumar Khan and Emmanuel Sanjay Anand, Viscoelastic boundary layer flow and heat transfer over an exponential stretching sheet, Int. J. of Heat and Mass Transfer, 48 (2005), 1534 - 1542.
Xuehui Chen, LiancumZheng and Xinxin Zhang., An efficient analytical decomposition and numerical procedure for boundary layer flow on a continuous stretching surface, J. of University of Science and Technology Beijing, 13(5) (2006), 401.
P. G. Siddheshwar, G. N. Sekhar and A. S. Chethan Flow and Heat Transfer in a Newtonian Liquid with Temperature Dependent Properties over an Exponential Stretching Sheet, J of Applied Fluid Mechanics, Vol. 7, No. 2, pp. 367-374, 2014.
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