Active and passive controls of magnetized Buongiorno Reiner–Phillipoff nanofluid

Author:

Duraihem Faisal Z.1ORCID,Upadhya S. M.2ORCID,Selvi P. D.3ORCID,Babu K. R.4ORCID,Raju C. S. K.5ORCID

Affiliation:

1. Department of Mathematics, College of Science, King Saud University, P. O. Box 2455, Riyadh 11451, Saudi Arabia

2. School of Management, Kristu Jayanti College, Autonomous, P. O. K. Narayanapura, Kothanur, Bengaluru, Karnataka 560077, India

3. Department of Applied Mathematics, Sri Padmavati Mahila Visva Vidyalayam, Tirupati, Andhra Pradesh 517502, India

4. Department of Humanities & Science, Annamacharya Institute of Technology, Rajampeta, India

5. Department of Mathematics, GITAM Deemed to be University, Bengaluru-Campus, Nagadenahalli, Karnataka, India

Abstract

This attempt demonstrates the nature of mass and heat transportation in non-Newtonian Reiner–Philippoff liquid flow over moving surface by considering zero and nonzero normal mass flux conditions and transverse magnetic field. Thermophoresis and Brownian movement is accounted due to the Buongiorno model of nanofluid. The expressions of flow are reframed through appropriate variables into pairs of self-similar expressions. Further, these self-similar expressions are executed numerically through the Shooting procedure (Runge–Kutta 4th order). Numerical benchmarks and graphical illustrations are prepared to visualize the role of influential constraints on interesting quantities. It is observed that Lorentz force is beneficial in obtaining effective velocity and heat transfer. Improvement in thermophoresis factor enriches temperature field in case of active control while reverse nature is observed in passive control situation.

Publisher

World Scientific Pub Co Pte Ltd

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