期刊文献+

Exact solutions for the flow of Casson fluid over a stretching surface with transpiration and heat transfer effects

Exact solutions for the flow of Casson fluid over a stretching surface with transpiration and heat transfer effects
原文传递
导出
摘要 The effects of transpiration on forced convection boundary layer non-Newtonian fluid flow and heat transfer toward a linearly stretching surface are reported. The flow is caused solely by the stretching of the sheet in its own plane with a velocity varying linearly with the distance from a fixed point. The constitutive relationship for the Casson fluid is used. The governing partial differential equations corresponding to the momentum and energy equations are converted into non-linear ordinary differential equations by using similarity transformations. Exact solutions of the resulting ordinary differential equations are obtained. The effect of increasing Casson parameter, i.e., with decreasing yield stress (the fluid behaves as a Newtonian fluid as the Casson parameter becomes large), is to suppress the velocity field. However, the temperature is enhanced as the Casson parameter increases. It is observed that the effect of transpiration is to decrease the fluid velocity as well as the temperature. The skin-friction coefficient is found to increase as the transpiration parameter increases. The effects of transpiration on forced convection boundary layer non-Newtonian fluid flow and heat transfer toward a linearly stretching surface are reported. The flow is caused solely by the stretching of the sheet in its own plane with a velocity varying linearly with the distance from a fixed point. The constitutive relationship for the Casson fluid is used. The governing partial differential equations corresponding to the momentum and energy equations are converted into non-linear ordinary differential equations by using similarity transformations. Exact solutions of the resulting ordinary differential equations are obtained. The effect of increasing Casson parameter, i.e., with decreasing yield stress (the fluid behaves as a Newtonian fluid as the Casson parameter becomes large), is to suppress the velocity field. However, the temperature is enhanced as the Casson parameter increases. It is observed that the effect of transpiration is to decrease the fluid velocity as well as the temperature. The skin-friction coefficient is found to increase as the transpiration parameter increases.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第11期356-361,共6页 中国物理B(英文版)
基金 Project supported by UGC (New Delhi,India) through the Special Assistance Programme DSA Phase 1
关键词 stretching surface TRANSPIRATION Casson fluid heat transfer stretching surface, transpiration, Casson fluid, heat transfer
  • 相关文献

参考文献34

  • 1Pal D 2009 Meccanica 44 145.
  • 2Mahapatra T R, Dholey S and Gupta A S 2007 Int. J. Non-Linear Me- chanics 42 484.
  • 3Sajid M, Hayat T and Asghar S 2007 Int. J. Heat Mass Transfer 50 1723.
  • 4Crane L J 1970 Zeit. Angew. Math. Mech. 21 645.
  • 5Carragher P and Crane L J 1982 Zeit. Angew. Math. Mech. 62 564.
  • 6Gupta P S and Gupta A S 1977 Can. J. Chem. Engng. 55 744.
  • 7Abel M S, Datti P S and Mahesha N 2009 Int. J. Heat Mass Transfer 52 2902.
  • 8Mukhopadhyay S 2010 Chin. Phys. Lett. 27 124401.
  • 9Bhattacharyya K, Mukhopadhyay S and Layek G C 2011 Chin. Phys. Lett. 28 094702.
  • 10Bhattacharyya K, Hayat T and Alsaedi A 2013 Chin. Phys. B 22 024702.

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