Radiation effects on the thermal boundary layer flow over a moving plate with convective boundary condition

Meccanica - 2011
Anuar Mohd Ishak1, Nor Azizah Yacob2, Norfifah Bachok3
1School of Mathematical Sciences, Universiti Kebangsaan Malaysia, UKM Bangi, Malaysia
2Faculty of Computer and Mathematical Sciences, Universiti Teknologi MARA Pahang, Bandar Jengka, Malaysia
3Department of Mathematics, Faculty of Science, Universiti Putra Malaysia, UPM, Serdang, Malaysia

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Tài liệu tham khảo

Bataller RC (2008) Radiation effects in the Blasius flow. Appl Math Comput 198:333–338

Cortell R (2008) A numerical tackling on Sakiadis flow with thermal radiation. Chin Phys Lett 25:1340–1342

Abdelhafez TA (1985) Skin friction and heat transfer on a continuous flat surface moving in a parallel free stream. Int J Heat Mass Transf 28:1234–1237

Aziz A (2009) A similarity solution for laminar thermal boundary layer over a flat plate with a convective surface boundary condition. Commun Nonlinear Sci Numer Simul 14:1064–1068

Magyari E (2010) Comment on “A similarity solution for laminar thermal boundary layer over a flat plate with a convective surface boundary condition” by A. Aziz. Commun Nonlinear Sci Numer Simul. doi: 10.1016/j.cnsns.2010.03.020

Bataller RC (2008) Radiation effects for the Blasius and Sakiadis flows with a convective surface boundary condition. Appl Math Comput 206:832–840

Afzal N, Badaruddin A, Elgarvi AA (1993) Momentum and transport on a continuous flat surface moving in a parallel stream. Int J Heat Mass Transf 36:3399–3403

Ishak A, Nazar R, Pop I (2007) Boundary layer on a moving wall with suction and injection. Chin Phys Lett 24:2274–2276

Rosseland S (1936) Theoretical astrophysics. Oxford University, New York

Siegel R, Howell JR (1992) Thermal radiation: heat transfer, 3rd edn. Hemisphere, Washington

Bataller RC (2008) Similarity solutions for boundary layer flow and heat transfer of a FENE-P fluid with thermal radiation. Phys Lett A 372:2431–2439

Bataller RC (2008) Similarity solutions for flow and heat transfer of a quiescent fluid over a nonlinearly stretching surface. J Mater Process Technol 203:176–183

Pal D (2009) Heat and mass transfer in stagnation-point flow towards a stretching surface in the presence of buoyancy force and thermal radiation. Meccanica 44:145–158

Pal D, Mondal H (2009) Radiation effects on combined convection over a vertical flat plate embedded in a porous medium of variable porosity. Meccanica 44:133–144

Mukhopadhyay S, Layek GC (2009) Radiation effect on forced convective flow and heat transfer over a porous plate in a porous medium. Meccanica 44:587–597

Ishak A (2010) Thermal boundary layer flow over a stretching sheet in a micropolar fluid with radiation effect. Meccanica 45:367–373

Ishak A, Nazar R, Pop I (2008) Local similarity solutions for laminar boundary layer flow along a moving cylinder in a parallel stream. LNCS Comput Math 5081:224–235

Blasius H (1908) Grenzschichten in flüssigkeiten mit kleiner reibung. Z Math Phys 56:1–37

Sakiadis BC (1961) Boundary-layer behaviour on continuous solid surfaces: I. Boundary-layer equations for two-dimensional and axisymmetric flow. AIChE J 7:26–28

Ishak A, Nazar R, Pop I (2006) Mixed convection boundary layers in the stagnation-point flow towards a stretching vertical sheet. Meccanica 41:509–518

Ishak A, Nazar R, Pop I (2008) Mixed convection stagnation point flow of a micropolar fluid towards a stretching sheet. Meccanica 43:411–418

Yacob NA, Ishak A (2010) Stagnation-point flow towards a strecthing surface immersed in a micropolar fluid with prescribed surface heat flux. Sains Malays 39:285–290

Bachok N, Ishak A (2010) Flow and heat transfer over a stretching cylinder with prescribed surface heat flux. Malays J Math Sci 4(2):159–170

Bachok N, Ishak A, Pop I (2010) Mixed convection boundary layer flow near the stagnation point on a vertical surface embedded in a porous medium with anisotropy effect. Transp Porous Med 82:363–373

Bachok N, Ishak A, Pop I (2010) Boundary-layer flow of nanofluids over a moving surface in a flowing fluid. Int J Thermal Sci. 49:1663–1668

Klemp JB, Acrivos A (1972) A method for integrating the boundary-layer equations through a region of reverse flow. J Fluid Mech 53:177–191

Merkin JH (1985) On dual solutions occurring in mixed convection in a porous medium. J Eng Math 20:171–179