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Ternary Hybrid Nanofluids: Principles and Applications

Ternary Hybrid Nanofluids: Principles and Applications

Paperback

Series: Emerging Technologies and Materials in Thermal Engineering

Technology & Engineering

PREORDER - Expected ship date January 1, 2027

ISBN10: 0443438544
ISBN13: 9780443438547
Publisher: Elsevier
Published: Jan 1 2027
Pages: 350
Weight: 0.99
Language: English
Ternary Hybrid Nanofluids: Principles and Applications offers a groundbreaking exploration of the properties, preparation techniques, and diverse applications of ternary hybrid nanofluids in heat transfer. This comprehensive reference encompasses various physical and chemical properties, including thermophysical characteristics and heat transfer behaviors, along with detailed mathematical models and correlations. From an in-depth analysis of preparation techniques to discussions on future research challenges and opportunities, this book serves as an invaluable resource for advanced students, researchers and engineers seeking a profound understanding of ternary hybrid nanofluids.

Ternary Hybrid Nanofluids: Principles and Applications covers essential topics for researchers and practitioners in the field. Chapters include an introduction to ternary hybrid nanofluids, discussions on formation and stability, exploration of thermal, electrical, and optical properties, analysis of rheological behavior, applications in solar thermal and convective heat transfer systems, utilization in heat pipes and thermosyphons, and development insights on limitations and opportunities for ternary nanofluids. Additionally, the book addresses the utilization of cutting fluid doped with nanoparticles for machining processes, providing comprehensive insights into the synthesis, properties, and applications of ternary hybrid nanofluids.

Ternary Hybrid Nanofluids: Principles and Applications offers benefits to professionals and academics in various fields, including material scientists, mechanical and chemical engineers, physicists, and researchers specializing in nanofluids. Students, experienced researchers and industry professionals seeking to enhance their understanding of heat transfer and nanotechnology will find this book to be a valuable reference.

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