Reprint

Recent Advances in Mechanics of Non-Newtonian Fluids

Edited by
February 2020
252 pages
  • ISBN978-3-03928-308-8 (Paperback)
  • ISBN978-3-03928-309-5 (PDF)

This book is a reprint of the Special Issue Recent Advances in Mechanics of Non-Newtonian Fluids that was published in

Engineering
Physical Sciences
Summary
Non-Newtonian (non-linear) fluids are common in nature, for example, in mud and honey, but also in many chemical, biological, food, pharmaceutical, and personal care processing industries. This Special Issue of Fluids is dedicated to the recent advances in the mathematical and physical modeling of non-linear fluids with industrial applications, especially those concerned with CFD studies. These fluids include traditional non-Newtonian fluid models, electro- or magneto-rheological fluids, granular materials, slurries, drilling fluids, polymers, blood and other biofluids, mixtures of fluids and particles, etc.
Format
  • Paperback
License
© 2020 by the authors; CC BY-NC-ND license
Keywords
inhomogeneous fluids; non-newtonian fluids; lubrication approximation (76A05, 76D08, 76A20); particle interaction; viscoplastic fluid; Bingham fluid; computational fluid dynamics; porous media; convection; Bingham fluid; yield stress; channel flow; power-law fluid; shear-dependent viscosity; Reynolds equation; lubrication approximation; lid-driven cavity; projection method; shear-thinning; aspect ratio; Re numbers; Brinkman equation; viscosity ratio; first- and second-order slip; similarity transformation; porous medium; generalised simplified PTT; Phan-Thien–Tanner (PTT) model; Mittag–Leffler; Couette flow; Poiseuille–Couette flow; non-isothermal flows; creeping flows; viscous fluid; optimal control; boundary control; pressure boundary conditions; weak solution; existence theorem; marginal function; hemoglobin; biological capacitor; non-equilibrium thermodynamics; hemoglobe capacitor; thermodynamic capacitor; smoothed particle hydrodynamics (SPH); meshless; fluid-solid interaction (FSI); membrane; rupture; SPH-FEM; stokesian dynamics; dense suspension; rheology; bubble suspension; suspension viscosity; Gamma densitometer; high viscosity oil; slug translational velocity; closure relationship; wormlike micellar solutions (WMS); enhanced oil recovery (EOR); chemical EOR (cEOR); viscoelastic surfactants (VES); non-linear fluids; variable viscosity; natural convection; convection-diffusion; buoyancy force; lubrication; suspensions; viscoplastic fluids; cement; biofluids; oil recovery; porous media