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Vol. 4  No. 6 (2018) · Articles

Impact of Chemical Reaction on Radiating Falkner-Skan Flow over a Wedge Moving in a Carreau Nanofluid with Convective Condition

K. Subbarayudu
Research Scholar, Department of Applied Mathematics, Yogi Vemana University, Kadapa-516 005, A.P. India , IN

S. Suneetha
Research Scholar, Department of Applied Mathematics, Yogi Vemana University, Kadapa-516 005, A.P. India , IN

L. Wahidunnisa
Research Scholar, Department of Applied Mathematics, Yogi Vemana University, Kadapa-516 005, A.P. India , IN

P. Bala Anki Reddy
Research Scholar, Department of Applied Mathematics, Yogi Vemana University, Kadapa-516 005, A.P. India , IN

📅 Published: June 2018

Keywords: Carreau nanofluid, Convective Boundary condition, MHD, radiation, Static/Moving wedge, chemical reaction.

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Abstract

The present endeavour is to investigate the numerical analysis of the two-dimensional unsteady flow of a Falkner-Skan radiative magnetohydrodynamic flow past over a wedge in a Carreau nanofluid by considering the convective boundary condition and chemical reaction. The governing equations of the problem are altered into dimensionless form by using the transformations. The resulting system of differential equations are solved by MATLAB bvp4c solver. The effect of significant parameters has been studied and numerical results are presented in graphs and tables. The numerical results are revealed in close relation with previously published works.

How to Cite

K. Subbarayudu, S. Suneetha, L. Wahidunnisa, P. Bala Anki Reddy, “Impact of Chemical Reaction on Radiating Falkner-Skan Flow over a Wedge Moving in a Carreau Nanofluid with Convective Condition,” International Journal of Technical Innovation in Modern Engineering & Science, vol. 4, no. 6, pp. 1353-1362, June 2018.

References

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