Multiscale Turbulent Transport

Turbulent transport is currently a prominent and ongoing investigation subject at the interface of methodologies from theory to numerical simulations and experiments, and it covers several spatiotemporal scales. Mathematical analysis, physical modelling, and engineering applications represent differ...

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Hlavní autoři: Afonso, Marco Martins, Gama, Sílvio
Médium: E-kniha
Jazyk:angličtina
Vydáno: MDPI - Multidisciplinary Digital Publishing Institute 2020
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ISBN:3039282131, 9783039282128, 3039282123, 9783039282135
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Abstract Turbulent transport is currently a prominent and ongoing investigation subject at the interface of methodologies from theory to numerical simulations and experiments, and it covers several spatiotemporal scales. Mathematical analysis, physical modelling, and engineering applications represent different facets of a classical, long-standing problem that is still far from being thoroughly comprehended. The goal of this Special Issue is to outline recent advances of such subjects as multiscale analysis in turbulent transport processes, Lagrangian and Eulerian descriptions of turbulence, advection of particles and fields in turbulent flows, ideal or nonideal turbulence (unstationary/inhomogeneous/anisotropic/compressible), turbulent flows in biofluid mechanics and magnetohydrodynamics, and the control and optimization of turbulent transport. The SI is open to regular articles, review papers focused on the state of the art and the progress made over the last few years, and new research trends.
AbstractList Turbulent transport is currently a prominent and ongoing investigation subject at the interface of methodologies from theory to numerical simulations and experiments, and it covers several spatiotemporal scales. Mathematical analysis, physical modelling, and engineering applications represent different facets of a classical, long-standing problem that is still far from being thoroughly comprehended. The goal of this Special Issue is to outline recent advances of such subjects as multiscale analysis in turbulent transport processes, Lagrangian and Eulerian descriptions of turbulence, advection of particles and fields in turbulent flows, ideal or nonideal turbulence (unstationary/inhomogeneous/anisotropic/compressible), turbulent flows in biofluid mechanics and magnetohydrodynamics, and the control and optimization of turbulent transport. The SI is open to regular articles, review papers focused on the state of the art and the progress made over the last few years, and new research trends.
Author Afonso, Marco Martins
Gama, Sílvio
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Snippet Turbulent transport is currently a prominent and ongoing investigation subject at the interface of methodologies from theory to numerical simulations and...
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SubjectTerms 25° backward-slanted step
3D perturbations of 2D steady base flow
alpha-effect
baroclinic vortex generation
breakage model
cascade
channel flow
chaotic advection
cloud micro-physics
compressible flow
defect turbulence
direct numerical simulation
Direct Numerical Simulation (DNS)
droplets
eddy diffusivity
eddy viscosity
energy transfer
Euler equations
History of engineering and technology
implicit LES
incompressibility
incompressible fluid
intermittency
Lagrangian chaos
linear stability analysis
magnetic mode
multiscale
n/a
Navier–Stokes equations (RANS)
nematic electroconvection
OpenFOAM
optimal control
Padé approximant
PISO
Rayleigh–Bènard convection
Rayleigh–Taylor instability
recirculation bubble
relaxation filtering
Runge–Kutta (RK4)
separation and reattachment
streak lift-up
structural sensitivity
T1-995
TA1-2040
Technology, Engineering, Agriculture, Industrial processes
Technology: general issues
time-dependent diffusion coefficient
transient evolution
turbulence
turbulence models
turbulence theory
turbulent-wake and Kelvin–Helmholtz instabilities
variable density flow
wall-resolved Large Eddy Simulation (LES)
warm cloud top mixing
weak turbulence
WENO schemes
Title Multiscale Turbulent Transport
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