Energy Science

AAP Advances in Green Technologies for Sustainable Energy Solutions

Nanofluid Dynamics for Next-Generation Green Technologies
Sustainable Heat Transfer Advancements, Challenges, and Solutions

Editors: Dr. Dhananjay Yadav
Dr. Mukesh Kumar Awasthi
Dr. Abdul Adheem Mohamad
Dr. Khalifa Al Shaqsi

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Nanofluid Dynamics for Next-Generation Green Technologies

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Series: AAP Advances in Green Technologies for Sustainable Energy Solutions

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Short description about the volume:

This forthcoming book, Nanofluid Dynamics for Next-Generation Green Technologies: Sustainable Heat Transfer Advancements, Challenges, and Solutions, will provide a comprehensive and interdisciplinary treatment of the fundamental principles, mathematical modeling, computational methodologies, experimental developments, and engineering applications of nanofluid dynamics for sustainable thermal management. It will cover the entire spectrum of nanofluid research, beginning with the thermophysical properties, transport mechanisms, and heat transfer characteristics of conventional and advanced nanofluids, followed by sustainable nanoparticle synthesis, stability analysis, mathematical modeling, and similarity solutions.

The volume will further explore convective heat transfer enhancement, hybrid and ternary nanofluids, transport phenomena in porous media and complex geometries, magnetohydrodynamic and electrohydrodynamic nanofluid flows, renewable energy applications, thermal energy storage technologies, industrial heat exchangers, electronic cooling systems, and battery thermal management.

In addition, the book will present state-of-the-art computational approaches, including computational fluid dynamics (CFD), finite element and finite volume methods, lattice Boltzmann methods, molecular dynamics simulations, multiscale modeling, and artificial intelligence (AI)-assisted predictive frameworks. It also will address critical challenges associated with commercialization, environmental sustainability, economic feasibility, and future innovations such as smart nanofluids, nano-lubricants, hydrogen energy systems, and carbon-neutral thermal technologies.

This edited volume aims to bring together researchers, academicians, engineers, materials scientists, computational scientists, mathematicians, energy technologists, and industrial practitioners to present the latest theoretical advances, computational techniques, experimental investigations, and practical engineering applications in nanofluid dynamics.

By integrating mathematical modeling with modern computational intelligence, advanced numerical simulations, and sustainable engineering practices, the book will provide a unified platform for understanding complex heat and mass transfer phenomena and developing high-performance thermal management solutions for next-generation green technologies. The volume plans to bridge the gap between fundamental scientific concepts and industrial implementation by highlighting the role of nanofluids in improving energy efficiency, reducing carbon emissions, and supporting environmentally responsible technological development.

The proposed volume will serve as an invaluable reference for graduate students, researchers, faculty members, scientists, and professionals working in thermal sciences, fluid mechanics, heat transfer, renewable energy engineering, mechanical engineering, chemical engineering, materials science, computational engineering, and sustainable manufacturing. It will emphasize interdisciplinary research by combining physics-based transport models, advanced computational methods, high-performance computing, optimization techniques, machine learning, and experimental validation to address challenging thermal engineering problems.

By presenting both established knowledge and emerging research directions, the book offers readers a comprehensive understanding of nanofluid technologies and their transformative potential in achieving energy-efficient, environmentally sustainable, and intelligent thermal systems for future engineering applications.

Coverage

Submission of book chapters should be focused on the following key highlights:

Section I: Fundamentals of Nanofluid Dynamics

Chapter 1: Introduction to Nanofluid Dynamics and Sustainable Heat Transfer

Chapter 2: Green Nanofluids: Synthesis, Characterization, Stability, and Environmental Impact

Chapter 3: Mathematical Modeling and Governing Equations for Nanofluid Transport

Section II: Advanced Heat Transfer and Transport Phenomena

Chapter 4: Convective Heat Transfer Enhancement Using Nanofluids

Chapter 5: Hybrid and Ternary Nanofluids for High-Performance Thermal Systems

Chapter 6: Nanofluid Flow in Porous Media and Complex Geometries

Chapter 7: Magnetohydrodynamic and Electrohydrodynamic Nanofluid Flows

Section III: Green Energy and Sustainable Technologies

Chapter 8: Nanofluids in Solar Thermal and Photovoltaic Thermal Systems

Chapter 9: Nanofluids for Thermal Energy Storage and Phase Change Materials

Chapter 10: Nanofluid Applications in Heat Exchangers and Industrial Thermal Systems

Chapter 11: Nanofluid-Based Cooling Technologies for Electronics, Data Centers, and Electric Vehicles

Section IV: Emerging Trends, Challenges, and Future Directions

Chapter 12: Artificial Intelligence and Machine Learning in Nanofluid Heat Transfer

Chapter 13: Computational Methods for Nanofluid Dynamics

Chapter 14: Challenges in Commercialization and Sustainable Deployment of Nanofluids

Chapter 15: Future Perspectives of Nanofluid Dynamics for Next-Generation Green Technologies




Important Dates:
Abstract Submission (200 – 300 words) Deadline: August 30th, 2026
Notification of Acceptance: September 30th, 2026
Full Chapter (5,000 – 6,000 words) Submission Due: On or before November 30th, 2026

Submission procedure:
We invite researchers and practitioners to contribute original chapters to this book. Prospective authors are encouraged to submit a one-page chapter proposal or abstract outlining the proposed chapter’s content, objectives, and methodology by August 30th, 2026. Please include the chapter title and author details within the proposal. Authors will be notified regarding the acceptance of their proposals by September 30th, 2026. Accepted authors will be required to submit completed chapters of 18 to 22 pages by November 30th, 2026. All submitted chapters will undergo a rigorous peer-review process.

To submit your proposal or full-length chapter, please send a Word document attachment to editors: dhananjayadav@gmail.com

Authors must refer to the following link for detailed guidelines for chapter preparation:https://appleacademicpress.com/download/AAP_MS_INSTRUX.pdf

Note: Authors submitting manuscripts to this book do not incur any publication fees. To ensure the originality and quality of the content, all submissions must be previously unpublished and not under consideration for publication in any other venue.


About the Authors / Editors:
Editors: Dr. Dhananjay Yadav

Dr. Dhananjay Yadav received his PhD degree from the Department of Mathematics, Indian Institute of Technology (IIT) Roorkee, India in 2013 and post-graduation (MSc) in Mathematics from DDU University Gorakhpur, India in 2007. Currently, he is working as an Associate Professor in Department of Mathematics at University of Nizwa, Oman. Prior to his appointment to University of Nizwa, Oman, he had worked as Principal Research Scientist at Athabasca University, Canada, Yonsei University, South Korea and Jeju National University, South Korea. He is a leading expert in CO 2 capture, storage and oil recovery, Computational sustainability and environmental analytics, Fluid mechanics, Numerical analysis, Hydrodynamic and Hydromagnetic stability, Nanofluids and Fluid flow in porous media. He has published more than 100 research articles (high impact factor) in various reputed international journals. He is also listed in the top 2% influential researchers in the World prepared by Stanford University based on Scopus data.

Dr. Mukesh Kumar Awasthi

Dr. Mukesh Kumar Awasthi has done his PhD on the topic “Viscous Correction for the Potential Flow Analysis of Capillary and Kelvin-Helmholtz instability”. He is working as an Assistant Professor in the Department of Mathematics at Babasaheb Bhimrao Ambedkar University, Lucknow. Dr. Awasthi is specialized in the mathematical modeling of flow problems. He has taught courses of Fluid Mechanics, Discrete Mathematics, Partial differential equations, Abstract Algebra, Mathematical Methods, and Measure theory to postgraduate students. He has acquired excellent knowledge in the mathematical modeling of flow problems and he can solve these problems analytically as well as numerically. He has a good grasp of the subjects like viscous potential flow, electro-hydrodynamics, magneto-hydrodynamics, heat, and mass transfer. He has excellent communication skills and leadership qualities. He is self-motivated and responds to suggestions in a more convincing manner. Dr. Awasthi has qualified National Eligibility Test (NET) conducted on all India level in the year 2008 by the Council of Scientific and Industrial Research (CSIR) and got Junior Research Fellowship (JRF) and Senior Research Fellowship (SRF) for doing research. He has published 135 plus research publications (journal articles/books/book chapters/conference articles) in Elsevier, Taylor & Francis, Springer, Emerald, World Scientific, and many other national and international journals and conferences. Also, he has published 22 books. He is also a series editor of Artificial Intelligence and Machine Learning for Intelligent Engineering Systems published by CRC Press (Taylor & Francis USA. He has attended many symposia, workshops, and conferences in mathematics as well as fluid mechanics. He has got the “Research Awards” consecutively four times from 2013-2016 by the University of Petroleum and Energy Studies, Dehradun, India. He has also received the start-up research fund for his project “Nonlinear study of the interface in multilayer fluid system” from UGC, New Delhi. He is also listed among the top 2% of influential researchers in the world, as prepared by Stanford University based on Scopus data for the years 2022 and 2023. His Orcid is 0000-0002-6706-5226, Google Scholar web link is https://scholar.google.co.in/citations?user=Dj3ktGAAAAAJ and research gate web link ishttps://www.researchgate.net/profile/Mukesh-Awasthi-2.

Dr. Abdul Adheem Mohamad

Dr. Abdul Adheem Mohamad received his PhD in Mathematics from the University of Auckland in 1999 under the supervision of Professor David Gauld& Dr Dave McIntyre, MSc in Mathematics and B.Sc. in Mathematics from the University of Baghdad.His research interests are Analysis, Algebra, Geometry, Topology and their Applications.He was granted NZ postdoctoral fellowship at University of Pittsburgh and University of Auckland 2001-2002. He has worked as a faculty member at University of Auckland, NZ and Sultan Qaboos University prior to his joining University of Nizwa. He was on research collaboration visits at Oxford University, University of South Carolina, University of Birmingham and University of Galway.

Dr. Khalifa Al Shaqsi

Dr. Khalifa Al Shaqsi received a PhD in Mathematics from the National University of Malaysia in 2009 and M.S.c in Mathematics from the National University of Malaysia in 2006. He is working as an Associate Professor in the Department of Mathematical and Physical Sciences at University of Nizwa, Oman from 2021. His research interests are geometric function theory and its application, complex analysis and real analysis.




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