Thermal Properties of Nanofluids
Book Details
Format
Paperback / Softback
ISBN-10
1032664096
ISBN-13
9781032664095
Publisher
Taylor & Francis Ltd
Imprint
CRC Press
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Jul 19th, 2026
Print length
316 Pages
Weight
610 grams
Product Classification:
Mathematical modellingFluid mechanicsPhysics: Fluid mechanicsCondensed matter physics (liquid state & solid state physics)Condensed matter physics (liquid state and solid state physics)Instruments & instrumentation engineeringInstruments and instrumentationNanotechnologyMechanical engineeringEngineering: Mechanics of fluidsMechanics of fluidsHeat transfer processesElectrical engineering
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This book presents emerging prospects of understanding and controlling thermophysical properties at the nanoscale. It covers a comprehensive study of recent progress concerning these properties from the solid state to colloids and, above all, a different look at the effect of temperature on nanofluids thermal conducting.
Thermal Properties of Nanofluids presents emerging prospects for understanding and controlling thermophysical properties at the nanoscale. It covers a comprehensive study of recent progress concerning these properties from the solid state to colloids and, above all, a different look at the effect of temperature on nanofluids’ thermal conducting. Introducing various techniques for measuring solid-state properties, including thermal conductivity, thermal diffusivity, and specific heat capacity, this book presents modeling approaches developed for predicting these properties by molecular dynamic (MD) simulations. It discusses the main factors that affect solid-state properties, such as grain size, grain boundaries, surface interactions, doping, and temperature, and the effects of all these factors. This book will interest industry professionals and academic researchers studying the thermophysical behavior of nanomaterials and heat transfer applications of nanofluids. It will serve graduate engineering students studying advanced fluid mechanics, heat transfer, and nanomaterials.
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