期刊文献+

Thermal radiation effect on flow and heat transfer of unsteady MHD micropolar fluid over vertical heated nonisothermal stretching surface using group analysis

Thermal radiation effect on flow and heat transfer of unsteady MHD micropolar fluid over vertical heated nonisothermal stretching surface using group analysis
在线阅读 下载PDF
导出
摘要 The aim of this paper is to study the thermal radiation effects on the flow and heat transfer of an unsteady magnetohydrodynamic (MHD) micropolar fluid over a vertical heated nonisothermal stretching surface in the presence of a strong nonuniform magnetic field. The symmetries of the governing partial differential equations are de- termined by the two-parameter group method. One of the resulting systems of reduced nonlinear ordinary differential equations are solved numerically by the Chebyshev spec- tral method. The effects of various parameters on the velocity, the angular velocity, and the temperature profiles as well as the skin-friction coefficient, the wall couple stress co- efficient, and the Nusselt number are studied. The aim of this paper is to study the thermal radiation effects on the flow and heat transfer of an unsteady magnetohydrodynamic (MHD) micropolar fluid over a vertical heated nonisothermal stretching surface in the presence of a strong nonuniform magnetic field. The symmetries of the governing partial differential equations are de- termined by the two-parameter group method. One of the resulting systems of reduced nonlinear ordinary differential equations are solved numerically by the Chebyshev spec- tral method. The effects of various parameters on the velocity, the angular velocity, and the temperature profiles as well as the skin-friction coefficient, the wall couple stress co- efficient, and the Nusselt number are studied.
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2013年第6期703-720,共18页 应用数学和力学(英文版)
关键词 thermal radiation micropolar fluid unsteady flow group theoretic method Chebyshev spectral method thermal radiation, micropolar fluid, unsteady flow, group theoretic method,Chebyshev spectral method
  • 相关文献

参考文献18

  • 1Hayat, T., Abbas, Z_, and Javed, T. Mixed convection flow of a micropolar fluid over a non-linearlystretching sheet. Physics Letters A, 372, 637-647 (2008).
  • 2Ishak, A. Thermal boundary layer flow over a stretching sheet in a micropolar fluid with radiationeffect. Meccanica, 45, 367-373 (2010).
  • 3Mahmoud, M. A. A. and Waheed, S. E. MHD flow and heat transfer of a micropolar fluid over anonlinear stretching surface with variable surface heat flux and heat generation. Canadian Journalof Chemical Engineering, 89, 1408-1415 (2011).
  • 4Eringen, A. Simple microfluids. International Journal of Engineering Science^ 2,205-217 (1964).
  • 5Eringen, A, Theory of micropolar fluids. Journal of Mathematics and Mechanics, 16, 1-18 (1966).
  • 6Eringen, A. Theory of thermomicropolar fluids. Journal of Mathematical Analysis and Applica-tions, 9, 480-496 (1972).
  • 7Agarwal, R. S. and Dhanapal, C. Numerical solution of unsteady flow and heat transfer in amicropolar fluid past a porous flat plate. Indian Journal of Pure and Applied Mathematics^ 20,513-520 (1989).
  • 8Damesh, R. A., Al-Azab, T. A., Shannak,B. A., and Al-Husein, M. Unsteady natural convectionheat transfer of micropolar fluid over a vertical surface with constant heat flux. Turkish Journalof Engineering and Environmental Sciences, 31,225-233 (2007).
  • 9Nazar, R.,Ishak, A., and Pop,I. Unsteady boundary layer flow over a stretching sheet in amicropolar fluid. International Journal of Engineering and Natural Sciences, 2, 161-165 (2008).
  • 10Nazar, R.,Ishak, A., Darus, M,, and Pop, I. Unsteady boundary layer flow and heat transferover a stretching surface in a micropolar fluid. Proceedings of the 13th WSEAS InternationalConference on Applied Mathematics (Mathr0S)., World Scientific and Engineering Academy andSociety (WSEAS). Stevens Point, Wisconsin, 273—278 (2008).

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部