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SCATTERING OF A THIN LAYER OVER A NONLINEAR RADIALLY EXTENDING SURFACE WITH MAGNETO HYDRODYNAMIC AND THERMAL DISSIPATION

Taza Gul
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Taza Gul: Department of Mathematics, City University of Science and Information Technology (CUSIT), Peshawar, Pakistan2Higher Education Department, Khyber Pukhtunkhwa, Peshawar, Pakistan

Surface Review and Letters (SRL), 2019, vol. 26, issue 01, 1-7

Abstract: The recent research is allied with the analysis of a thin layer, spreading over the nonlinear surface of a radially extended sheet. The temperature field has been taken with the accumulation of dissipation term. The similarity variables have been used to transform the basic flow equations into a set of nonlinear differential equations. The thickness of the spreading phenomenon has been taken as a variable. The approximate outcomes of the problem have been achieved using the optimal approach of the homotopy analysis method (HAM). The convergence of the HAM has been computed with numerical method. The impact of the variable thickness parameter β, generalized magnetic parameter M, Eckert number Ec and Pr on the spreading pattern and temperature field has been calculated and discussed. The attention has been paid to the important physical quantities of interest like the skin friction and Nusselt number under the effect of various embedded parameters.

Keywords: Spreading of a variable thin layer; nonlinear radially extending surface; magnetic field; skin friction and Nusselt number; HAM and numerical method (search for similar items in EconPapers)
Date: 2019
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DOI: 10.1142/S0218625X18501238

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