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Recent Trends in Coatings and Thin Film–Modeling and Application

Recent Trends in Coatings and Thin Film–Modeling and Application

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Over the past four decades, there has been increased attention given to the research of fluid mechanics due to its wide application in industry and phycology. Major advances in the modeling of key topics such Newtonian and non-Newtonian fluids and thin film flows have been made and finally published in the Special Issue of coatings. This is an attempt to edit the Special Issue into a book. Although this book is not a formal textbook, it will definitely be useful for university teachers, research students, industrial researchers and in overcoming the difficulties occurring in the said topic, while dealing with the nonlinear governing equations. For such types of equations, it is often more difficult to find an analytical solution or even a numerical one. This book has successfully handled this challenging job with the latest techniques. In addition, the findings of the simulation are logically realistic and meet the standard of sufficient scientific value.

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Keywords

  • Adomian solutions
  • an endoscope
  • analytic and numerical simulations
  • analytic solutions
  • analytical solution
  • Analytical solutions
  • APCM
  • applications of multiphase fluids
  • applications of thin films
  • Arrhenius activation energy
  • asymmetric channel
  • Bejan number
  • binary chemical reaction
  • Blasius–Rayleigh–Stokes variable
  • Bubbles
  • Caputo derivative
  • carbon nanotubes
  • Casson fluid
  • Cattaneo-Christov heat flux
  • Cattaneo–Christov heat flux
  • Catttaneo-Christov heat flux
  • cilia beating
  • coating
  • Coatings
  • compliant walls
  • computational modelling
  • condensation film
  • convective boundary conditions
  • correlation expressions
  • couple stress fluid
  • curved channel
  • curved stretched surface
  • Darcy Forchheimer model
  • Darcy-Forchheimer nanofluid
  • development and characterization of coatings
  • different wave forms
  • double diffusion
  • double stratification
  • double-layer coating
  • droplet impact modelling
  • dual solutions
  • eccentric annuli
  • Electronics
  • entropy generation
  • exact solutions
  • gas-liquid coatings
  • Hall current
  • HAM
  • HAM and numerical method
  • heat and mass transfer
  • heat generation
  • heat generation/consumption
  • heated bi-phase flow
  • heterogeneous–homogeneous reactions
  • homogeneous–heterogeneous reactions
  • Homotopy Analysis Method (HAM)
  • HPM
  • hybrid nanofluid
  • impedance analysis
  • induced magnetic field
  • Jeffrey fluid model
  • lubrication effects
  • magnetic field
  • magnetics and magneto-optics
  • magnetohydrodynamics
  • mass transport
  • mathematical modeling on biological applications
  • MHD
  • MHD flow
  • micropolar nanofluid
  • mixed convection
  • mixed convective flow
  • nanofluid
  • nanoliquid
  • Nanoparticles
  • Nanostructured materials
  • Newtonian fluids
  • non-Newtonian
  • nonlinear extending disc
  • nonlinear thermal radiation
  • numerical solution
  • Nusselt number and Sherwood number
  • optical fiber coating
  • peristalsis
  • peristaltic flow
  • peristaltic pumping
  • phase distribution
  • porous medium
  • pseudo-similarity variable
  • rain erosion
  • rain erosion testing
  • Reiner-Phillipoff fluid
  • rotating disk
  • second order slip
  • shear-thinning and -thickening models
  • shrinking surface
  • skin friction
  • slippery walls
  • spin coating
  • stability analysis
  • stretching cylinder
  • surfaces and interfaces
  • SWCNTs and MWCNTs
  • synovial fluid
  • Technology, engineering, agriculture
  • Technology: general issues
  • thermal radiation
  • thermophoresis
  • thin film
  • thin film casson nanofluid
  • thin film of micropolar fluid
  • thin liquid film flow
  • third grade fluid model
  • time-dependent
  • triple solution
  • two-fluid model
  • ultrasound measurements
  • unsteady flow
  • unsteady flow and heat transfer
  • variable heat source/sink
  • variable thermal conductivity
  • variable thickness of the liquid film
  • variable thin layer
  • variable viscosity
  • velocity second slip
  • viscoelastic characterization
  • viscoelastic fluids
  • viscoelastic modelling
  • viscoelastic PTT fluid
  • wave forms
  • Williamson model
  • Williamson nanofluid
  • wind turbine blades

Links

DOI: 10.3390/books978-3-0365-1015-6

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