On heat transfer in Carreau fluid flow with thermal slip: An artificial intelligence (AI) based decisions integrated with Lie symmetry
Author:
Funder
Prince Sultan University
Publisher
Elsevier BV
Reference40 articles.
1. A comparative study on the rheological properties of upper convected Maxwell fluid along a permeable stretched sheet;Abdelsalam;Heliyon,2023
2. Prediction of Mechanical Properties of Rubberized Concrete Incorporating Fly Ash and Nano Silica by Artificial Neural Network Technique;Adamu;Axioms,2023
3. Thermal and velocity slip effects on the peristaltic flow of a six constant Jeffrey’s fluid model;Akbar;Int. J. Heat Mass Transf.,2012
4. Onset modules of heat source and generalized Fourier’s law on Carreau fluid flow over an inclined nonlinear stretching sheet;Akolade;Int. J. Model. Simul.,2024
5. Viscoelastic thermal nanofluid flow and heat mass transfer due to a stretching sheet with slip velocity phenomenon and convective heating;Alrehili;International Journal of Thermofluids,2023
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1. Implementation of finite element scheme to study thermal and mass transportation in water-based nanofluid model under quadratic thermal radiation in a disk;Mechanics of Time-Dependent Materials;2024-08-23
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