A novel multi fractional comparative analysis of second law analysis of MHD flow of Casson nanofluid in a porous medium with slipping and ramped wall heating

Author:

Khan Dolat1ORCID,Kumam Poom123,Watthayu Wiboonsak1,Yassen Mansour F.45

Affiliation:

1. Fixed Point Research Laboratory Fixed Point Theory and Applications Research Group Center of Excellence in Theoretical and Computational Science (TaCS‐CoE) Faculty of Science King Mongkut's University of Technology Thonburi (KMUTT) Thung Khru Bangkok Thailand

2. Center of Excellence in Theoretical and Computational Science (TaCS‐CoE) Faculty of Science King Mongkut's University of Technology Thonburi (KMUTT) Thung Khru Bangkok Thailand

3. Department of Medical Research China Medical University Hospital China Medical University Taichung Taiwan

4. Department of Mathematics College of Science and Humanities in Al‐Aflaj Prince Sattam Bin Abdulaziz University Al‐Aflaj Saudi Arabia

5. Department of Mathematics Faculty of Science Damietta University New Damietta Damietta Egypt

Abstract

AbstractFractional calculus gets more attention in applied and pure science from the last two decay due to their valuable contribution. Due to extensive applications of fractional derivatives, the main aim of this article is focused on the multi fractional comparative study of entropy generation of magnetohydrodynamic (MHD) flow of Casson nanofluid with slipping and ramped wall heating effect on the plate. Set of partial differential equations forms governing equation and by using constant proportional–Caputo hybrid (CPC), Atangana–baleanu (AB) and Caputo Fabrizio (CF) fractional derivative generalized the model. Using the Laplace transform approach, a closed form of the solution is attained. Entropy production for Casson nanofluid is explored and compared using triple fractional modelled and for four different nanoparticles. Furthermore, the Bejan number is compared for the previously mentioned fractional derivatives. The graphs depict the effect of several parameters on the minimization and maximisation of multi generalised entropy generation. Instead of Atangana–baleanu and Caputo Fabrizio fractional operators, the newly proportional Caputo hybrid operator has a strong memory effect. It is concluded that CPC fractional model is more realistic then other two fractional model in case of ramped wall temperature while in case of isothermal wall temperature the results are vice versa.

Funder

King Mongkut's University of Technology Thonburi

Publisher

Wiley

Subject

Applied Mathematics,Computational Mechanics

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