Numerical study of nanoparticles aggregation on radiative 3D flow of maxwell fluid over a permeable stretching surface with thermal radiation and heat source/sink
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference58 articles.
1. MHD flow past a stretching permeable sheet;Kumaran;Appl. Math. Comput.,2009
2. Slip flow and heat transfer of a second grade fluid past a stretching sheet through a porous space;Hayat;Int. J. Heat Mass Tran.,2008
3. Heat transfer over an unsteady stretching permeable surface with prescribed wall temperature;Ishak;Nonlinear Anal. RWA,2009
4. Magnetohydrodynamic stagnationpoint flow of a power-law fluid towards a stretching surface;Mahapatra;Int. J. Non Lin. Mech.,2009
5. Heat and mass transfer characteristics of the self-similar boundary-layer flows induced by continuous surfaces stretched with rapidly decreasing velocities;Magyari;Heat Mass Tran.,2001
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