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Heat Transfer and Fluids Properties of Nanofluids

Heat Transfer and Fluids Properties of Nanofluids

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This reprint features a dozen high-quality research studies and reviews on different types of nanofluids and their important topics related to thermophysical and electrical properties, as well as convective and boiling heat transfer characteristics, contributed by renowned researchers around the world. It is expected to be a useful resource for related industrial professionals and researchers in this emerging and popular field of nanofluids.

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Keywords

  • air conditioning and refrigeration
  • Al2O3 and TiO2 nanofluids
  • boiling
  • boiling heat transfer features
  • branched fins
  • Brownian motion
  • Burgers–Huxley equation
  • carbon nanostructures
  • carbon nanotubes
  • colloidal suspension
  • convective heat transfer
  • Darcy–Brinkman equation
  • dynamical behaviors
  • effective thermal conductivity
  • electrical conductivity
  • Fe2O3 nanoparticle
  • FEM
  • fouling resistance
  • Graphene
  • heat conduction
  • heat transfer
  • heat transfer enhancement
  • hybrid nanofluids
  • hydrodynamic instability
  • inversed T-shaped enclosure
  • latent heat
  • magnetohydrodynamics
  • melting process
  • Metallic oxides
  • Molecular Dynamics
  • multiwalled carbon nanotubes
  • nano/NePCM
  • nanodiamond
  • nanofluid
  • nanofluids
  • nanoparticle deposition
  • Nanoparticles
  • natural convection
  • NEPCM
  • nonlinear dynamics
  • Nuclear reactor
  • numerical model
  • Numerical Simulation
  • parabolic trough solar collector
  • particle aggregates
  • PCM
  • plate heat exchanger
  • polydispersity
  • porous medium
  • re-suspension
  • roughness-to-particle size ratio
  • shell designs
  • sintering
  • solitary wave
  • Technology, engineering, agriculture
  • Technology: general issues
  • thermal resistance
  • thermophysical properties
  • translation surface
  • tubes
  • turbulent flow
  • vibration surface
  • viscosity
  • water nanodroplets
  • water-based nanofluid

Links

DOI: 10.3390/books978-3-0365-7312-0

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