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Tripathi / Sahariya / Gajjar | Advances in Nanofluids | Buch | 978-981-9263-40-0 | www.sack.de

Buch, Englisch, Format (B × H): 155 mm x 235 mm

Tripathi / Sahariya / Gajjar

Advances in Nanofluids

Modeling, Simulation, Experimentation, and Applications
Erscheinungsjahr 2027
ISBN: 978-981-9263-40-0
Verlag: Springer

Modeling, Simulation, Experimentation, and Applications

Buch, Englisch, Format (B × H): 155 mm x 235 mm

ISBN: 978-981-9263-40-0
Verlag: Springer


This book presents a comprehensive overview of recent developments in nanofluids research, integrating theoretical modeling, advanced computational simulations, and experimental investigations to provide a holistic understanding of nanofluid behavior. It covers key topics such as non-Newtonian and hybrid nanofluids, transport phenomena, magnetohydrodynamics, and emerging AI-driven modeling approaches. The book emphasizes practical applications in energy systems, biomedical engineering, electronic cooling, and environmental processes. Bringing together contributions from leading researchers and experts, the book serves as a valuable reference for academicians, researchers, and industry professionals. It also highlights current challenges, technological advancements, and future research directions, making it a useful resource for advancing innovation and interdisciplinary research in this rapidly evolving field of nanofluids.

Tripathi / Sahariya / Gajjar Advances in Nanofluids jetzt bestellen!

Zielgruppe


Research

Weitere Infos & Material


Fractional Order Modeling and Simulation of Free Convection of Nanofluids in Porous Media.- Thermomechanics of Viscoelastic Nanofluid Multiphysics Modeling at the Nanoscale.- Thermal and Entropic Analysis of Variable Viscosity Nanoliquid Film Convection on Inclined Surfaces.- A Non Classical Dual Diffusive Analysis of Buongiorno Powell-Eyring Non Newtonian Dissipative Magnetic Nanofluid Coating Flow with Variable Thermophysical Characteristics Homotopy Solutions.- Simulation-Based Thermal Optimization of Heat and Mass Transfer in a Rotating Disk Using Trihybrid Nanofluids under Chemical Reaction Influences.


Dr. Dharmendra Tripathi is Associate Professor in the Department of Mathematics at the National Institute of Technology Uttarakhand. He earned his Ph.D. from Indian Institute of Technology (BHU). His research focuses on mathematical modeling, biological flows, peristaltic transport, microfluidics, CFD, biomechanics, nanofluids, and heat transfer.

Dr. Jagrati Sahariya is Assistant Professor in the Department of Physics at NIT Uttarakhand, India. Her research focuses on nanomaterials, nanofluids, and their applications in thermal and energy systems. She has expertise in experimental techniques and material characterization, contributing to advancements in nanoscale heat transfer.

Prof. Jitesh Gajjar is Professor in the Department of Mathematics at the University of Manchester, UK. His research interests are in the areas of fluid dynamics, asymptotic analysis, and nonlinear systems. His research has significantly contributed to the understanding of instability, transition, and complex flow phenomena.

Prof. O. Anwar Bég is Professor of engineering science in the Aeronautical and Mechanical Engineering Department at the University of Salford, UK. He leads the Multi-Physical Engineering Sciences Group (MPESG), and his research interests include nanofluids, aerospace propulsion, hydrodynamic stability, industrial polymeric flows, fuel cells, and biofluid mechanics. He has authored several textbooks and dozens of book chapters.



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