Impact of entropy generation and temperature gradient heat source on Couette flow in a permeable magnetic field

Author:

Varma Nadimpalli Udaya Bhaskara1,Ramaprasad Jupudi Lakshmi2ORCID,Balamurugan Kuppareddy Subramanyam3

Affiliation:

1. Department of Engineering Mathematics & Humanities SRKR Engineering College Bhimavaram Andhra Pradesh India

2. Department of Mathematics P B Siddhartha College of Arts & Science Vijayawada Andhra Pradesh India

3. Department of Mathematics & Humanities RVR & JC College of Engineering Guntur India

Abstract

AbstractThis research paper focused on investigating the influence of various factors on steady Couette flow beneath a permeable bed. Factors studied included aligned magnetic field, thermal radiation, temperature gradient heat source, viscous dissipation, and Joules dissipation. The momentum and energy equations governing flow and heat transmission were analytically solved to predict the generation of entropy. The findings were visually presented through graphical representations, which effectively demonstrated the effect of these factors on the fluid's velocity, temperature, entropy production, and Bejan number. In addition, the shear stress and rate of heat transfer coefficient at the channel walls were computed and their behavior was documented in tables to provide further insights.

Publisher

Wiley

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