
Nanofluid Applications in Thermal Engineering
Advanced Numerical Investigations
by Sabyasachi Mondal
1st Edition
Publisher: Elsevier
Book Details
| Print ISBN | 9780443404818 |
| eText ISBN | 9780443404825 |
| Publisher | Elsevier |
| Publishing Year | 2026 |
| Edition | 1st Edition |
| Language | English |
| Pages | 456 |
Edited by Sabyasachi Mondal, Nanofluid Applications in Thermal Engineering: Advanced Numerical Investigations, 1st Edition, presents advanced numerical modeling techniques for evaluating thermal transport in engineering systems. The volume establishes computational methods to analyze heat transfer performance across diverse nanofluid media.
The material opens with thermophysical and rheological analyses of unitary, hybrid, and ternary nanofluids. It advances into computational simulations of thermal performance under complex electromagnetic conditions, specifically evaluating magnetic power-law hybrid nanofluids influenced by Hall and ion slip. Later sections incorporate artificial intelligence and machine learning approaches to refine nanofluid heat transfer simulations for renewable energy applications.
A key element of the text is its focus on computational simulations for optimizing heat transfer across multi-component nanofluid mixtures. This work offers intended support for postgraduate students, academicians, thermal engineers, and nanofluids researchers applying numerical methods to complex thermal problems.
Table of Contents
Chapter 1: Thermophysical and Rheological Analysis of Unitary, Hybrid and Ternary Nanofluids
Chapter 2: Thermal Performance of Magnetic Power-Law Hybrid Nanofluid with Hall and Ion Slip
Chapter 3: A Computational Proposal for the Different Nanoparticles in the Engine Oil–Based Hybrid Nanofluid
Chapter 4: Advanced Numerical Modeling of Hybrid Nanofluids’ Flow and Heat Transfer
Chapter 5: Advanced Numerical Modeling of Ternary Nanofluids’ Flow and Heat Transfer
Chapter 6: Effects on Binary Hybrid Nanofluid Due to Internal Heat Generation and Homogeneous Chemical Reaction in Porous Media
Chapter 7: Analysis of Activation Energy on Couple Stress Hybrid and Ternary Nanofluids with Heat Generation
Chapter 8: Hydro Magneto Thermal Aspects of Ternary Composite Nanomaterial Influenced by Linear and Nonlinear Slips
Chapter 9: Thermal Performance of Nonlinear Radiative Ternary Hybrid Nanofluid Flow with Different Applications
Chapter 10: Darcy-Forchheimer Hybrid Nanofluid Flow with Marangoni Convection Over a Disk
Chapter 11: Numerical Analysis on Darcy-Forchheimer Casson Binary Hybrid Nanofluid Flow with Cattaneo-Christov Flux
Chapter 12: Numerical Analysis on Thermal Control for Casson Hybrid Nanofluid Flow with Interfacial Nanolayer Thickness
Chapter 13: Influence of AI on Advanced Nanofluid Models
Chapter 14: Recent Advances in Machine Learning Research for Nanofluid Heat Transfer in Renewable Energy
Chapter 15: Investigation on the Development of Advanced Nanofluid Flow Models and Real-Life Applications
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- Book Resources
- Applications of Nanofluids - PMC - NIH
- Applications of Nanofluid in the thermal devices: A Review
- Nanofluid Applications in Thermal Engineering
- NANOFLUIDS WITH RECENT APPLICATION & FUTURE ...
- Nanofluid Applications in Thermal Engineering
- Application Of Nanofluid For Heat Transfer Enhancement
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