Numerical heat featuring in Blasius/Sakiadis flow of advanced nanofluid under dissipation and convective heat condition effects

Author:

Adnan 1ORCID,Mishra Nidhish Kumar2,Mahmood Ishtiaque3,Abbas Waseem1,Bani‐Fwaz Mutasem Z.4ORCID,Eldin Sayed M.5

Affiliation:

1. Department of Mathematics Mohi‐ud‐Din Islamic University Nerian Sharif AJ&K Pakistan

2. Basic Science Department College of Science and Theoretical Studies Saudi Electronic University Riyadh Saudi Arabia

3. Punjab University of Technology Rasul Mandi Bahauddin Pakistan

4. Department of Chemistry College of Science King Khalid University Abha Saudi Arabia

5. Center of Research Faculty of Engineering Future University in Egypt New Cairo Egypt

Abstract

AbstractThe study of advanced nanofluids termed as Tetra nanofluid is of potential interest now a days. These fluids are upgraded generation of conventional nano to ternary hybrid nanofluids with outstanding characteristics. Applications of this class frequently occur in applied thermal engineering, nano‐lubrication, chemo‐therapy, chemical engineering, oil paint industry, coolant of nuclear plant and many other applied research areas. This study concerns with the development of innovative thermophysical rules for Tetra Hybrid nanofluid and their utilization in advanced heat transfer model. The governing laws updated through addition of thermal condition, dissipation effects, thermal radiations and upgraded nanofluid properties. Finally, the Blasius and Sakiadis model achieved and analyzed the heat transfer trends through numerical technique. Keen analysis of the drawn results show that Blasius model has much ability to transfer the heat than Sakiadis model. Induction of thermal radiations, dissipation effects and thermal convective condition is like a catalysis in the study of advanced tetra nanofluid model and boosts the temperature.

Publisher

Wiley

Subject

Applied Mathematics,Computational Mechanics

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