Several characteristics of the resulting fluid are influenced by the nanoparticle suspension. Understanding the heat transfer mechanism in nanofluids is necessary for many production and manufacturing applications. The current study examines the effects of mixed convection MHD and Joule heating on the flow of ( TiO
Saeed Islam, Amjid Rashid
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Artificial neural network-based analysis of Cattaneo-Christov heat flux and Stratified Casson fluid flow over a stretching sheet with variable thermal conductivity [PDF]
The growing use of artificial intelligence in fluid mechanics research has resulted in scientists accepting soft-computing methods to correctly measure nonlinear transport phenomena.
M. Farooq, Samaira Arshad, Hashim
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Deep learning analysis for enhanced prediction of heat transfer in Maxwell hybrid nanofluids with non-Fourier law and radiation effects [PDF]
Nanofluids have emerged as promising heat transfer media due to their superior thermal performance associated to conventional fluids, yet their behavior under mutual impacts of radiation, heat source/sink, and magnetic fields remains an active area of ...
Norah Salem Alsaiar +7 more
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Heat transfer has a major effect on material selection and mechanical efficiency. The importance of peristaltic fluid motion in transmitting heat is obvious in the domains of biomedical research through the processes of metabolic heat generation, blood transportation, capillary dehydration, thermal control, and bio-heat exchange pathways.
Bander Almutairi +2 more
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The main goal of this study is to create a computational solver that analyzes the effects of magnetohydrodynamics (MHD) on heat radiation in Cu–water-based Prandtl nanofluid flow using artificial neural networks. Copper nanoparticles are utilized to boost the water-based fluid’s thermal effect.
Fehaid Alshammari +2 more
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This research focuses on enhancing fluid mobility by optimizing heat transfer, a crucial aspect in various industrial applications, including oil recovery. The study introduces an innovative framework that integrates microorganisms, hybrid nanoparticles, non-Newtonian fluid properties, a power law model, and inclined magnetic fields.
Chepkonga David +3 more
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Computational study to heat and mass transfer analysis of blood-based Maxwell ternary hybrid nanofluid with nonlinear thermal radiation and exponential heat source [PDF]
This study presents a ternary hybrid nanofluid model exhibiting superior thermal performance as compared to conventional fluids. The ternary hybrid nanofluid is formulated by suspending alumina Al2O3, silicon dioxide (SiO2), and Titanium dioxide (TiO2 ...
Ibrahim Mahariq +7 more
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Heat Transfer Effects on Carbon Nanotubes Along a Moving Flat Plate Subjected to Uniform Heat Flux
In the present paper, a theoretical analysis is made to investigate fluid flow and heat energy transformation features of single and multi-walled water functionalized carbon nanotubes (CNTs) with uniform heat inconstancy boundary conditions onward a flat
M. Ferdows +3 more
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An investigation of the MHD Cu-Al2O3H2O hybrid-nanofluid in a porous medium across a vertically stre
The thermal aspects of 𝐶𝑢 − 𝐴𝑙2𝑂3/𝑤𝑎𝑡𝑒𝑟 hybrid nanofluid in a porous medium across a ver-tically stretched cylinder with the incorporation of heat sink/source impact are investigated in this numerical study.
Ashish PAUL +2 more
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Effects of Radiation and Heat Dissipation on MHD Convective Flow in Presence of Heat Sink
The paper examines heat and mass transfer in MHD convective flow across a vertical porous plate in presence of radiation, heat sink, and dissipation of heat.
Salma Akhtar +2 more
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