Advanced Thermal Engineering
Efficiency Enhancement, Emission Reduction, and Renewable Energy Integration
Elsevier (Publisher)
Will be published approx. on 1. January 2027
Book
Paperback/Softback
400 pages
978-0-443-31534-3 (ISBN)
Description
Advanced Thermal Engineering: Efficiency Enhancement, Emission Reduction, and Renewable Energy Integration provides a comprehensive overview of advanced thermal engineering and its applications in energy systems, focusing on environmental sustainability. This book offers in-depth information on technologies used to design and analyze thermal systems, discussing technical, economic, and environmental advantages and disadvantages of transitioning as technology evolves. Topics covered include heat transfer enhancement, renewable energy integration, emission reduction, waste heat recovery, nanotechnology, machine learning, environmental sustainability, case studies, and future trends. Other important points in the book include the interdisciplinary approach to thermal engineering, making it relevant for researchers, engineers, policymakers, and students.
Other sections address practical applications and future trends, offering a thorough treatment of efficiency enhancement, emission reduction, renewable energy integration, and emerging technologies. The book's focus on environmental and economic considerations also ensures it is pertinent to global citizens seeking an up-to-date understanding of advanced thermal engineering principles and practices.
Other sections address practical applications and future trends, offering a thorough treatment of efficiency enhancement, emission reduction, renewable energy integration, and emerging technologies. The book's focus on environmental and economic considerations also ensures it is pertinent to global citizens seeking an up-to-date understanding of advanced thermal engineering principles and practices.
More details
Series
Language
English
Place of publication
Philadelphia
United States
Target group
Professional and scholarly
Product notice
Paperback (trade)
Unsewn / adhesive bound
Dimensions
Height: 229 mm
Width: 152 mm
Weight
450 gr
ISBN-13
978-0-443-31534-3 (9780443315343)
Copyright in bibliographic data is held by Nielsen Book Services Limited or its licensors: all rights reserved.
Schweitzer Classification
Persons
Omid Mahian has received his Ph.D. in Mechanical Engineering (Energy Conversion) and currently is a professor at School of Chemical Engineering, Xi'an Jiaotong University, China. Professor Mahian interests are solar desalination and application of nanotechnology for heat transfer enhancement that includes the increase of water evaporation rate. His Ph.D. dissertation was about the investigation of nanotechnology application for water evaporation rate enhancement in solar stills. He is currently an editorial board of Energy (Elsevier), Renewable Energy (Elsevier), senior associate editor of Journal of Thermal Analysis and Calorimetry (Springer) and associate editor of Journal of Thermal Science. He has published more than 150 peer reviewed articles in prestigious journals and serving as a potential reviewer in more than 100 international journals. Recently, he has focused on the methods for steam generation (water desalination) enhancement using nanoparticles. He has been selected as highly cited researcher since 2018. Somchai Wongwises is currently a Professor of Mechanical Engineering, Faculty of Engineering at King Mongkut's University of Technology Thonburi, Bangmod, Thailand. He received his Doktor Ingenieur (Dr.-Ing.) in Mechanical Engineering from the University of Hannover, Germany, in 1994. He has published more than 400 articles in archival journals and international conferences. His research interests include Renewable Energy, Gas-Liquid Two-Phase Flow, Heat Transfer Enhancement, and Thermal System Design. Professor Wongwises is the head of the Fluid Mechanics, Thermal Engineering, and Multiphase Flow Research Laboratory (FUTURE). Professor Wongwises has been selected as highly cited researcher since 2017.
Editor
Professor, School of Chemical Engineering, Xi'an Jiaotong University, China
Professor of Mechanical Engineering, Faculty of Engineering, King Mongkut's University of Technology, Thonburi, Bangmod, Thailand
Content
1. Introduction to advanced thermal engineering and its applications in energy systems
2. Heat transfer enhancement techniques for advanced thermal systems
3. Integration of renewable energy sources with thermal systems
4. Emission reduction technologies for thermal systems
5. Waste heat recovery and energy storage systems
6. Nanotechnology for advanced thermal engineering
7. Machine learning in advanced thermal systems
8. Environmental sustainability in advanced thermal engineering
9. Case studies and practical applications of advanced thermal engineering
10. Future trends and directions in advanced thermal engineering
2. Heat transfer enhancement techniques for advanced thermal systems
3. Integration of renewable energy sources with thermal systems
4. Emission reduction technologies for thermal systems
5. Waste heat recovery and energy storage systems
6. Nanotechnology for advanced thermal engineering
7. Machine learning in advanced thermal systems
8. Environmental sustainability in advanced thermal engineering
9. Case studies and practical applications of advanced thermal engineering
10. Future trends and directions in advanced thermal engineering