Effects Of Higher Order Chemical Reactions and Slip Boundary Conditions on Nanofluid Flow

Abstract

We investigate the effects of higher order chemical reactions on coupled heat and mass transfer from a permeable stretching sheet in nanofluid flow with slip boundary conditions. Nanofluids play an important role in emerging nanotechnology and biotechnology industries where they find application in heat transfer processes. We study the effects of the order of the chemical reaction and chemical reaction parameter. The highly nonlinear and coupled governing differential equations were solved numerically. The solution depends on Brownian motion number, thermophoresis number, thermal convective parameter, mass convective parameter and double diffusive buoyancy parameter. The effects of various engineering parameters are investigated.

Authors and Affiliations

D. Rajani, K. Hemalatha, M. V. D. N. S. Madhavi

Keywords

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  • EP ID EP391383
  • DOI 10.9790/9622-0705053645.
  • Views 119
  • Downloads 0

How To Cite

D. Rajani, K. Hemalatha, M. V. D. N. S. Madhavi (2017). Effects Of Higher Order Chemical Reactions and Slip Boundary Conditions on Nanofluid Flow. International Journal of engineering Research and Applications, 7(5), 36-45. https://europub.co.uk/articles/-A-391383