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Effect of temperature dependent viscosity on revolving axi-symmetric ferrofluid flow with heat transfer

Effect of temperature dependent viscosity on revolving axi-symmetric ferrofluid flow with heat transfer
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摘要 The prime objective of the present study is to examine the effect of temperature dependent viscosity μ(T ) on the revolving axi-symmetric laminar boundary layer flow of an incompressible, electrically non-conducting ferrofluid in the presence of a stationary plate subjected to a magnetic field and maintained at a uniform temperature. To serve this purpose, the non-linear coupled partial differential equations are firstly converted into the ordinary differential equations using well-known similarity transformations. The popular finite difference method is employed to discretize the non-linear coupled differential equations. These discretized equations are then solved using the Newton method in MATLAB, for which an initial guess is made with the help of the Flex PDE Solver. Along with the velocity profiles, the effects of temperature dependent viscosity are also examined on the skin friction, the heat transfer, and the boundary layer displacement thickness. The obtained results are presented numerically as well as graphically. The prime objective of the present study is to examine the effect of tempera- ture dependent viscosity/z(T) on the revolving axi-symmetric laminar boundary layer flow of an incompressible, electrically non-conducting ferrofiuid in the presence of a stationary plate subjected to a magnetic field and maintained at a uniform temperature. To serve this purpose, the non-linear coupled partial differential equations are firstly converted into the ordinary differential equations using well-known similarity transformations. The popular finite difference method is employed to discretize the non-linear coupled differ- ential equations. These discretized equations are then solved using the Newton method in MATLAB, for which an initial guess is made with the help of the Flex PDE Solver. Along with the velocity profiles, the effects of temperature dependent viscosity are also examined on the skin friction, the heat transfer, and the boundary layer displacement thickness. The obtained results are presented numerically as well as graphically.
作者 P. RAM V. KUMAR
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2012年第11期1441-1452,共12页 应用数学和力学(英文版)
关键词 FERROFLUID temperature dependent viscosity boundary layer axi-symmetry magnetic field ferrofluid, temperature dependent viscosity, boundary layer, axi-symmetry,magnetic field
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参考文献17

  • 1Rosensweig, R. E. Ferrohydrodynamics, Cambridge University Press, Cambridge (1985).
  • 2Schlichting, H. Boundary Layer Theory, McGraw-Hill Book Company, New York (1960).
  • 3Karman, V. Uber laminate und turbulente Reibung. Zeitschrift fiir Angewandte Mathmatik und Mechanik, 1(4), 233-252 (1921).
  • 4Cochran, W. G. The flow due to a rotating disk. Proceedings of the Cambridge Philosophical Society, 30, 365-375 (1934).
  • 5Benton, E. R. On the flow due to a rotating disk. Journal of Fluid Mechanics, 24(4), 781-800 (1966).
  • 6Attia, H. A. Transient flow of a conducting fluid with heat transfer due to an infinite rotating disk. International Communications in Heat and Mass Transfer, 28(3), 439-448 (2001).
  • 7Kafoussias, N. G. and Williams, E. W. The effect of temperature dependent viscosity on free-forced convective laminar boundary layer flow past a vertical isothermal flat plate. Acta Mechanica, 110, 123-137 (1995).
  • 8Attia, H. A. Influence of temperature dependent viscosity on the MHD-channel flow of dusty fluid with heat transfer. Acta Mechanica, 151, 89-101 (2001).
  • 9Maleque K. A. and Sattar, M. A. Steady laminar convective flow with variable properties due to a porous rotating disk. Transactions of ASME, 127, 1406-1409 (2005).
  • 10Ramanathan, A. and Muchikel, N. Effect of temperature-dependent viscosity on ferroconvection in a porous medium. International Journal of Applied Mechanics and Engineering, 11(1), 93-104 2006 .

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