Hybrid Nanofluids for Convection Heat Transfer
Hybrid Nanofluids for Convection Heat Transfer discusses how to maximize heat transfer rates with the addition of nanoparticles into conventional heat transfer fluids. The book addresses definitions, preparation techniques, thermophysical properties and heat transfer characteristics with mathematical models, performance-affecting factors, and core applications with implementation challenges of hybrid nanofluids. The work adopts mathematical models and schematic diagrams in review of available experimental methods. It enables readers to create new techniques, resolve existing research problems, and ultimately to implement hybrid nanofluids in convection heat transfer applications. - Provides key heat transfer performance and thermophysical characteristics of hybrid nanofluids - Reviews parameter selection and property measurement techniques for thermal performance calibration - Explores the use of predictive mathematical techniques for experimental properties
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Hybrid Nanofluids for Convection Heat Transfer
Hybrid Nanofluids for Convection Heat Transfer discusses how to maximize heat transfer rates with the addition of nanoparticles into conventional heat transfer fluids. The book addresses definitions, preparation techniques, thermophysical properties and heat transfer characteristics with mathematical models, performance-affecting factors, and core applications with implementation challenges of hybrid nanofluids. The work adopts mathematical models and schematic diagrams in review of available experimental methods. It enables readers to create new techniques, resolve existing research problems, and ultimately to implement hybrid nanofluids in convection heat transfer applications. - Provides key heat transfer performance and thermophysical characteristics of hybrid nanofluids - Reviews parameter selection and property measurement techniques for thermal performance calibration - Explores the use of predictive mathematical techniques for experimental properties
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Hybrid Nanofluids for Convection Heat Transfer

Hybrid Nanofluids for Convection Heat Transfer

by Hafiz Muhammad Ali (Editor)
Hybrid Nanofluids for Convection Heat Transfer

Hybrid Nanofluids for Convection Heat Transfer

by Hafiz Muhammad Ali (Editor)

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Overview

Hybrid Nanofluids for Convection Heat Transfer discusses how to maximize heat transfer rates with the addition of nanoparticles into conventional heat transfer fluids. The book addresses definitions, preparation techniques, thermophysical properties and heat transfer characteristics with mathematical models, performance-affecting factors, and core applications with implementation challenges of hybrid nanofluids. The work adopts mathematical models and schematic diagrams in review of available experimental methods. It enables readers to create new techniques, resolve existing research problems, and ultimately to implement hybrid nanofluids in convection heat transfer applications. - Provides key heat transfer performance and thermophysical characteristics of hybrid nanofluids - Reviews parameter selection and property measurement techniques for thermal performance calibration - Explores the use of predictive mathematical techniques for experimental properties

Product Details

ISBN-13: 9780128192818
Publisher: Elsevier Science & Technology Books
Publication date: 05/15/2020
Sold by: Barnes & Noble
Format: eBook
Pages: 300
File size: 20 MB
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About the Author

Hafiz Muhammad Ali is an associate professor of Mechanical Engineering at King Fahd University of Petroleum and Minerals, Saudi Arabia. He earned his Ph.D. in Mechanical Engineering from Queen Mary University of London in 2011 and completed a postdoc at the University of California, Merced, in 2015-16. His primary research areas include thermal sciences, heat transfer, and solar energy. Over his career, he has supervised numerous students and published over 400 papers in reputable international journals, with citations exceeding 30,000. He has received several awards, including the 2017 “Best Young Research Scholar” from the Higher Education Commission of Pakistan, and recognition as a highly cited researcher in 2021 and 2022 by Clarivate. Ali has represented his institution and Pakistan at various international conferences, delivering keynote and invited talks. His research interests also encompass electronics cooling, condensation, nanofluids, heat transfer devices, and thermal management. Additionally, he serves on editorial boards for several prominent journals, contributing to the advancement of thermal sciences research.

Table of Contents

1. History and introduction2. Hybrid nanofluids preparation method3. Thermophysical and rheological properties of hybrid nanofluids4. Hybrid nanofluids as a heat transferring media 5. Performance effecting parameters of hybrid nanofluids6. Applications of hybrid nanofluids in different fields7. Barriers and challenges in hybrid nanofluids development and implementation

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Reviews key preparation techniques, thermophysical properties, heat transfer characteristics, and stability issues surrounding engineered hybrid nanofluids and their applications

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