Analysis of Casson Nanofluid Flow and Heat Transfer Across a Non-linear Stretching Sheet Adopting Keller Box Finite Difference Scheme

Author:

Jain Shalini,Kumari Ranjana

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,Computational Mathematics

Reference16 articles.

1. Choi, S.U., Eastman, J.A.: Enhancing thermal conductivity of fluids with nanoparticles. Technical report, Argonne National Lab.(ANL), Argonne, IL (United States) (1995)

2. Dodda, R., Chamkha, A., Raju, R.S., Rao, J.A.: Effect of velocity and thermal wall slips on mhd boundary layer viscous flow and heat transfer of a nanofluid over a nonlinearly-stretching sheet: a numerical study. Propuls. Power Res. J. (2017)

3. Abolbashari, M.H., Freidoonimehr, N., Nazari, F., Rashidi, M.M.: Analytical modeling of entropy generation for casson nano-fluid flow induced by a stretching surface. Adv. Powder Technol. 26(2), 542–552 (2015)

4. Shah, Z., Kumam, P., Deebani, W.: Radiative mhd casson nanofluid flow with activation energy and chemical reaction over past nonlinearly stretching surface through entropy generation. Sci. Rep. 10(1), 1–14 (2020)

5. Obalalu, A.M.: Chemical entropy generation and second-order slip condition on hydrodynamic casson nanofluid flow embedded in a porous medium: a fast convergent method. J. Egyptian Math. Soc. 30(1), 1–25 (2022)

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