Journal
PHYSICA B-CONDENSED MATTER
Volume 537, Issue -, Pages 116-126Publisher
ELSEVIER
DOI: 10.1016/j.physb.2018.01.052
Keywords
Third grade nanofluid; Brownian movement; Thermophoresis; Rotating stretchable disk; Heat generation; Chemical reaction
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This article addresses flow of third grade nanofluid due to stretchable rotating disk. Mass and heat transports are analyzed through thermophoresis and Brownian movement effects. Further the effects of heat generation and chemical reaction are also accounted. The obtained ODE's are tackled computationally by means of homotopy analysis method. Graphical outcomes are analyzed for the effects of different variables. The obtained results show that velocity reduces through Reynolds number and material parameters. Temperature and concentration increase with Brownian motion and these decrease by Reynolds number.
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