Reprint

Recent Advances in Fluid Mechanics: Feature Papers, 2022

Edited by
June 2024
422 pages
  • ISBN978-3-7258-1291-2 (Hardback)
  • ISBN978-3-7258-1292-9 (PDF)
https://doi.org/10.3390/books978-3-7258-1292-9 (registering)

This book is a reprint of the Special Issue Recent Advances in Fluid Mechanics: Feature Papers, 2022 that was published in

Engineering
Physical Sciences
Summary

This Special Issue is a second collection of top-quality papers from some of the Editorial Board Members of Fluids, Guest Editors, and leading researchers, discussing new knowledge or new cutting-edge developments in all aspects of fluid mechanics. Research in turbulence continues to be one of the active areas; other papers focus on mixing, multiphase flows and porous media, slow (creeping) flows, potential flows, non-Newtonian fluids, fluid–structure interaction, and numerical methods.

Format
  • Hardback
License and Copyright
© 2024 by the authors; CC BY-NC-ND license
Keywords
CFD; mitral valve; valvular asymmetry; cardiovascular flow; CFD modelling; drag force; solid concentration; particle Reynolds number; gas-solid flow; area; compression; dilation; expansion; interfaces; rheology; surface excess; PIV; laplace pressure; critical pressure; phase trapping; phase pinning; confined geometry; bubble; multi-phase flow; surface roughness; transit time; computational fluid dynamics; convective flows; oscillations; instabilities; synchronization; bubble growth; hydrodynamics; supersaturated liquids; 1-d moving interface; advection–diffusion process; gas–liquid flow; bioreactor; fermentation; mass transfer coefficient; thermometry method; kLa; two-phase media; multiphase flows; scale-up; numerical modeling; jet fermenter; computational fluid dynamics (CFD); large eddy simulation (LES); Reynolds-averaged Navier–Stokes (RANS) equations; hybrid RANS-LES methods; membrane; mass transport; flow regimes; steam turbine; low load operation; ventilation power; drag resistance; Reynolds number; convection in a porous medium; single-mode solutions; double-diffusive convection; regularized Casson fluid; regularized Bingham fluid; linear stability analysis; long-wave approximation; jet noise; synthetic jets; flow control; acoustic simulations; peristaltic flow; CFD; smooth particle hydrodynamics; finite volume method; model verification; turbulent flows; large-eddy simulation; Reynolds-averaged Navier–Stokes; wall model; delayed detached-eddy simulation; roughness; Marangoni convection; hydrothermal wave; solid particles; patterning behavior; turbulence cascade; vortex stretching; vortex bursting; discrete mechanics; conservation of acceleration; Helmholtz–Hodge decomposition; inertial curvature; methane cracking; hydrogen production; hybrid reactor; concentrated solar energy; CFD simulation; gas-phase pyrolysis; discontinuous Galerkin; oscillating foil; thrust efficiency; reduced frequency; NACA0012; SD7003; algebraic transition model; Spalart–Allmaras; moderate Reynolds number; fractional dynamics; heterogeneity; unusual spreading; diffusion process; flow; cavitating simulations; rotating vortex rope; scale-resolving simulations; synchronous pressure fluctuations; microparticle dynamics; complex viscoelastic fluids; fluid inertial effects; time-dependent Stokes equations; modal expansion; n/a

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