Solar energy improvement in solar HVAC using Sutterby magneto‐ternary hybrid nanofluid flow with Smoluchowski temperature conditions: A solar thermal application

Author:

Nabwey Hossam A.12ORCID,Khan Waqar A.3,Rashad Ahmed M.4ORCID,Elmeky Hamed4,Abdelnaem Shereen4,Hawsah Miad Abu1

Affiliation:

1. Department of Mathematics, College of Science and Humanities in Al‐Kharj Prince Sattam bin Abdulaziz University Al‐Kharj Saudi Arabia

2. Department of Basic Engineering Science, Faculty of Engineering Menoufia University Shebin El‐Kom Egypt

3. Department of Mechanical Engineering, College of Engineering Prince Mohammad Bin Fahd University Al Khobar Saudi Arabia

4. Department of Mathematics Aswan University, Faculty of Science Aswan Egypt

Abstract

AbstractThis study investigates the radiative flow of rotating Sutterby magneto‐ternary hybrid nanofluids traveling along a stretchy surface in solar heating, ventilation, and air conditioning (HVAC). The investigation includes a colloidal mixture of three district types of particles, and impacts such as thermal radiative fluxing and activation energy. This model is used for the Sutterby model, and the flow and heat transfer analysis developed the new idea of tri‐hybrid nanofluid for highlighting some unique thermal properties in the fluid flow problems. The tri‐hybrid nanofluid is formed by suspending the three different nanoparticles for advanced cooling purposes. In the present work, we have considered Molybdenum disulfide (MoS2), Graphene oxide (GO), and Multi‐walled carbon nanotubes (MCNT) in water for advanced cooling. The study uses the Runge‐Kutta‐Fehlberg method to simulate the system and analyzes physical attributes such as skin friction coefficient and Nusselt and Sherwood numbers. The results suggest that increasing activation energy leads to an increase in the concentration of nanoparticles, and increasing rotational parameters leads to an increase in radial skin friction but a decrease in Nusselt numbers. The study also found that ternary nanofluids are more effective than base fluids in enhancing convective heat and mass transfer

Funder

Prince Sattam bin Abdulaziz University

Publisher

Wiley

Subject

Applied Mathematics,Computational Mechanics

Reference43 articles.

1. Numerical simulation of blood nanofluid flow over three different geometries by means of gyrotactic microorganisms: Applications to the flow in a circulatory system, Proc;Basha H.T.;Inst. Mech. Eng. Part C J.Mech. Eng. Sci.,2020

2. An updated review on the properties, fabrication and application of hybrid-nanofluids along with their environmental effects

3. Dual solutions for mixed convection flow of SiO2−Al2O3/water hybrid nanofluid near the stagnation point over a curved surface

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