A generalized perspective of Fourier and Fick’s laws: Magnetized effects of Cattaneo-Christov models on transient nanofluid flow between two parallel plates with Brownian motion and thermophoresis

Author:

Shankar Usha12,Naduvinamani Neminath B.1,Basha Hussain3

Affiliation:

1. Department of Mathematics, Gulbarga University, Kalaburagi-585 106, Karnataka, India

2. Department of Karnataka Power Corporation Limited, Raichur Thermal Power Station, Shaktinagar, Raichur-584 170, India

3. Department of Mathematics, Central University of Karnataka, Kalaburagi-585 367, Karnataka, India

Abstract

AbstractPresent research article reports the magnetized impacts of Cattaneo-Christov double diffusion models on heat and mass transfer behaviour of viscous incompressible, time-dependent, two-dimensional Casson nanofluid flow through the channel with Joule heating and viscous dissipation effects numerically. The classical transport models such as Fourier and Fick’s laws of heat and mass diffusions are generalized in terms of Cattaneo-Christov double diffusion models by accounting the thermal and concentration relaxation times. The present physical problem is examined in the presence of Lorentz forces to investigate the effects of magnetic field on double diffusion process along with Joule heating. The non-Newtonian Casson nanofluid flow between two parallel plates gives the system of time-dependent, highly nonlinear, coupled partial differential equations and is solved by utilizing RK-SM and bvp4c schemes. Present results show that, the temperature and concentration distributions are fewer in case of Cattaneo-Christov heat and mass flux models when compared to the Fourier’s and Fick’s laws of heat and mass diffusions. The concentration field is a diminishing function of thermophoresis parameter and it is an increasing function of Brownian motion parameter. Finally, an excellent comparison between the present solutions and previously published results show the accuracy of the results and methods used to achieve the objective of the present work.

Publisher

Walter de Gruyter GmbH

Subject

Computer Networks and Communications,General Engineering,Modelling and Simulation,General Chemical Engineering

Reference108 articles.

1. Sulla conduzionedelcalore;Atti del Seminario Maermatico e Fisico, dell Universita di Modena e Reggio Emilia,1948

2. Approximate analysis of MHD squeeze flow between two parallel disks with suction or injection by homotopy perturbation method;Math. Prob. Eng.,2009

3. Unsteady squeezing flow of a viscous MHD fluid between parallel plates, a solution using the homotopy perturbation method;Math. Model. Anal.,2008

4. Applications of nanoparticles in biology and medicine;J. Nanobiotechnology,2004

5. Defence applications of polymer nanocomposites;Defence Sci. J.,2010

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