Simultaneous Features of CC Heat Flux on Dusty Ternary Nanofluid (Graphene + Tungsten Oxide + Zirconium Oxide) through a Magnetic Field with Slippery Condition

نویسندگان

چکیده

The purpose of this work is to offer a unique theoretical ternary nanofluid (graphene/tungsten oxide/zirconium oxide) framework for better heat transfer. This model describes how create conduction than hybrid nanofluid. Three different nanostructures with chemical and physical bonds are suspended in water the oxide). Toxic substances broken down, air purified, other devices cooled thanks synergy these nanoparticles. properties nanofluids discussed article, including their thermal conductivity, specific capacitance, viscosity, density. In addition, transport phenomena explained by Cattaneo–Christov (CC) flow theory. modeling under investigation, impacts nonlinear radiation velocity slip considered. By using right transformations, flow-generating PDEs converted into ordinary differential equations. parameters’ on temperature fields analyzed detail. modeled problem graphically handled MATLAB numerical technique (BVP4c). Graphical representations important factors affecting illustrated through graphs. findings disclose that performance phase transfer improved compared dusty performance. Furthermore, magnetic parameter both experience slowing-down effect respective velocities.

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ژورنال

عنوان ژورنال: Mathematics

سال: 2023

ISSN: ['2227-7390']

DOI: https://doi.org/10.3390/math11030554