Cattaneo-Christov and Darcy-Forchheimer Heat Flux on Reiner-Philippoff Fluid with Velocity and Thermal Slip Boundary Condition Under Heat Sink/Source

Author:

Warraich Sanaullah1,Ayub Nadia2,Qadeer Fatima3,Umar Irfan4

Affiliation:

1. National University of Modern Languages

2. University of Management and Technology Sialkot

3. Institute of Space Technology

4. Capital University of Science and Technology

Abstract

Abstract

Reiner–Philippoff (RP) fluid flow above a heated sheet concluded the model of Cattaneo–Christov heat flux for Darcy-Forchheimer is implemented in this work. The influences of thermal radiation, heat source/sink, velocity, and thermal slip boundary conditions are also deliberated. The transformations are used to convert obtained PDEs into a set of ordinary differential equations, and they are solved numerically using the shooting method (RK-4) solver with the help of the computational software MATLAB. The dimensionless temperature and velocity numbers are further developed. More engineering curiosity of local Nusselt and Skin frictions are tabulated, depicted, and interpreted.

Publisher

Springer Science and Business Media LLC

Reference45 articles.

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2. Dispersion of solutes in non-Newtonian flows through a circular tube;Ghoshal S;Chem Eng Sci,1971

3. Boundary layer flow of Reiner-Philippoff fluids;Na T-Y;Int J Non-Linear Mech,1994

4. Boundary-layer flow of Reiner–Philippoff fluids past a stretching wedge;Yam K;Int J Non-Linear Mech,2009

5. Flow control of non-Newtonain fluid using Riga plate: Reiner-Phillipoff and Powell-Eyring viscosity models;Ahmad A;J Appl Fluid Mech,2019

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