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E-raamat: Fundamentals and Transport Properties of Nanofluids

Edited by (University of Lisbon, Portugal)
  • Formaat: PDF+DRM
  • Sari: Soft Matter Series Volume 16
  • Ilmumisaeg: 21-Dec-2022
  • Kirjastus: Royal Society of Chemistry
  • Keel: eng
  • ISBN-13: 9781839166457
  • Formaat - PDF+DRM
  • Hind: 221,06 €*
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  • Formaat: PDF+DRM
  • Sari: Soft Matter Series Volume 16
  • Ilmumisaeg: 21-Dec-2022
  • Kirjastus: Royal Society of Chemistry
  • Keel: eng
  • ISBN-13: 9781839166457

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This book addresses a broad range of fundamental and applied research on nanofluids, from their preparation, stability, and thermal and rheological properties to performance characterization and advanced applications.

Nanofluids are an emerging class of heat transfer fluids that are engineered by dispersing nanoparticles in conventional fluids. They represent a promising, multidisciplinary field that has evolved over the past two decades to provide enhanced thermal features, as well as manifold applications in thermal management, energy, transportation, MEMs and biomedical fields.
Fundamentals and Transport Properties of Nanofluids addresses a broad range of fundamental and applied research on nanofluids, from their preparation, stability, and thermal and rheological properties to performance characterization and advanced applications. It covers combined theoretical, experimental and numerical research to elucidate underlying mechanisms of thermal transport in nanofluids.
Edited and contributed to by leading academics in thermofluids and allied fields, this book is a must have for those working in chemical, materials and mechanical engineering, nanoscience, soft matter physics and chemistry.
Synthesis of Nanoparticles and Nanofluids;Stability of Nanofluids;Nanofluids Long-term Stability Challenges and Guidelines;Fundamental and Critical Aspects of the Rheological Behaviour of Nanofluids;Parametric Research and Theoretical Models for the Viscosity of Nanofluids;Thermal Conductivity of Nanofluids - Experiments, Models, and their Advancements;Modelling and Mechanisms of Nanofluid Thermal Conductivity;Specific Heat Capacity and Density of Nanofluids;Dielectric and Magnetic Properties of Nanofluids;Convective Heat Transfer Using Nanofluids;Numerical Development of the Thermal Convection Characteristics of Nanofluids;Boiling Features and Performances of Nanofluids;Thermal Management Applications of Nanofluids;Applications of Nanofluids in Solar Thermal Systems;Socio-economic and Environmental Impacts of Nanofluids