Plate Heat Exchanger Enhancement Techniques: in Support of the Energy Transition and a Circular Economy provides fundamental knowledge on the applications of the plate heat exchanger (PHE) and how it can be optimized to make energy conversion more efficient. In addition, it introduces relevant studies that explain the heat transfer mechanism of the PHE, its design, and how developing more compact and evolved heat exchangers contributes to a sustainable, cleaner, and more energy-efficient future. Researchers, scientists, engineers, professionals, and students working in nanotechnology, materials science, and sustainability will find this volume valuable to their work.
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1. Basic and Fundamental Principles of Plate Heat Exchangers (PHEs): Thermal Storage and Sustainable Development 2. Recent Progress in PHEs 3. Basic Equations for Design and Predicting Performance of PHEs 4. Heat Transfer Enhancement Techniques in PHEs (Types of Inserts and tubes) 5. Numerical Study of Heat Transfer Enhancement in PHEs 6. Finite Time Thermodynamics Analysis and Research in PHEs 7. Methods of Process Parameters Optimization in Performance of PHEs 8. Fouling and Corrosion Problems and Prevention of PHEs 9. Industrial PHEs: Operation and Maintenance Towards Energy Perspectives 10. Scale Up and Commercialization of PHEs—State of the Art Initiatives and Issues 11. Consecutive Charging and Discharging of PCM-based PHE 12. Time-dependent Simulation Model for the PCM Phase Transition in PHEs 13. Nanofluids with Nano-and Microstructure Surface in PHEs 14. Process Intensification of PHEs in the Industry Sector 15. Thermal Performance of Prototype PHE with Minichannels 16. Heat transfer augmentation techniques in PHEs 17. Micro-and Nanoscale Heat Transfer and Fluid Flow in PHEs 18. PHEs in Power Generation and Energy Storage 19. Usage of Radiation Shielding Materials and Heat Transfers in PHEs 20. Recent Advances in Different Machine Learning Techniques in PHEs 21. Applications of Neural Networks and Fuzzy-based Algorithms for Nanofluid-based Heat Transfer Studies in PHEs 22. Bottlenecks Approach for Achieving Circular Economy and the Energy Transition 23. Exergoeconomic Analysis of PHEs based on Joule/Brayton Cycle and Rankine Cycle 24. Integration of Industrial Waste Heat Recover Through PHE Based Systems, Circular Economy and Efficiency Measures
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Introduces the basics and fundamental concepts of plate heat exchanger enhancement towards a sustainable future
Covers the fundamentals, concepts, and energy materials for all pillars of a circular economy Includes state-of-the-art green technologies and energy materials that are outlined with specific applications for energy systems and economic and societal benefits Examines an inter-knitted focus on energy materials and technologies – with an emphasis on reuse and recycling materials in support of conservation, efficiency, and sustainability Evaluates specific topics related to the synthesis and application of energy materials and their recycle, reuse, and lifecycle Outlines future perspectives, need, and scope of the circular economy
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Produktdetaljer

ISBN
9780443288562
Publisert
2025-11-01
Utgiver
Elsevier - Health Sciences Division; Elsevier - Health Sciences Division
Høyde
229 mm
Bredde
152 mm
Aldersnivå
P, 06
Språk
Product language
Engelsk
Format
Product format
Heftet
Antall sider
500

Om bidragsyterne

Dr. Sasan Zahmatkesh currently holds a researcher position in the Department of Chemical Engineering, School of Engineering and Science, Tecnológico de Monterrey, Puebla Campus, Mexico. His research interests include wastewater, microplastics, membranes, biomass conversion to biofuels, biodiesel synthesis and cleaner biofuel processes. He is the author of more than 50 peer-reviewed journal publications, 15 international conference proceedings, and one Iranian patent. He currently serves as a reviewer for 5 international journals in the field of engineering and sciences. Dai-Viet N. Vo is deputy director of the Institute of Applied Technology and Sustainable Development, Nguyen Tat Thanh University, in Vietnam. He worked as the principal investigator and co-investigator for 23 different funded research projects related to sustainable and alternative energy, and published two books, 15 book chapters, more than 300 peer-reviewed journals including 101 prestigious review articles, and more than 80 conference proceedings. Dr. Vo is an assistant subject editor for the International Journal of Hydrogen Energy (Elsevier) and guest editor for several special issues in high-impact factor journals such as the International Journal of Hydrogen Energy (Elsevier), Comptes Rendus Chimie (Elsevier), Chemical Engineering Science (Elsevier), and Topics in Catalysis (Springer), amongst others. Prof. Suresh Sundaramurthy is Head of the Department of Chemical Engineering at Maulana Azad National Institute of Technology, Bhopal, India. He completed his Ph.D. in Chemical Engineering from IIT Roorkee and has held postdoctoral and visiting faculty, research positions at international and national institutions (CUNY, USA, AIT Thailand, JNCASR, Bengaluru, IIT Kanpur, Pondicherry University). His research interests include catalysts, reactor design, environmental biotechnology, waste-to-energy, nanoengineered materials, biofuels, decarbonation and green hydrogen. He has supervised numerous Ph.D. and master's students and has substantial experience in R&D projects. He has undertaken several Energy & Environment consultancy projects and technical services including Gas Authority of India Limited, NCAP-MoEFF&CC, Central Effluent Treatment Plant (Indore), CITIIS 2.0 (Ujjain), M.P. Pollution Control Board, Directorate of Urban Administration & Development, State Co-operative Dairy Federation, Animal & Poultry Development Corporation, C-STEP Pvt Ltd. He has published over 130 research papers in SCI-indexed journals, authored/edited 14 books and 41 book chapters/encyclopedia and holds four patents. He has been technical expert member of A.I.C.T.E and Bureau of Indian Standards. He has hosted and lead different technical industry-academia conference/webinars including ‘CO2 Reduction Processes for Future Energy Development’ involving participation from different industry experts with emphasis on conversion of CO2 into value added products, coal gasification and H2 as the source for future energy. He has received awards from SERB-IUSSTF, Ministry of Education, DST-Uttarakhand Council of Science and Technology, Institute of Engineers. He honoured as Fellow member of Society of Energy Engineers and Managers & Institution of Engineers (India). Affiliations and expertise Head of Department of Chemical Engineering, Maulana Azad National Institute of Technology, Bhopal, India Mohammad Reza Sarmasti Emami is a PhD student at Sistan and Baluchestan University of Zahedan, Iran, where received his master’s degree and licentiate degree. He is currently working on two-phase close thermosyphons and their optimization. He has authored more than 50 peer-reviewed journal publications, 20 international conference proceedings, three Malaysian patents, and four book. He currently serves as a reviewer for five international high impact journals in the field of engineering and sciences.