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Engineering Fluid Dynamics 2019-2020
Engineering Fluid Dynamics 2019-2020
Autore Hjertager Bjørn
Pubbl/distr/stampa Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Descrizione fisica 1 online resource (384 p.)
Soggetto topico History of engineering and technology
Soggetto non controllato 3D hill
accelerators
aerodynamics
anisotropic scattering
aspect ratio
automotive
baffle
Betz
blocked-off-region procedure
boundary layer
canopy
CFD
CH2O
churning power losses
clamping
climate change
coherent structures
combustion
computational fluid dynamics (CFD)
computational fluid dynamics (CFD), multiphysics
control
cylinder
deep neural network
dilution
discrete element method, sedimentation, bed formation
distribution
dynamic motion
energy dissipation rates
energy efficiency
evacuation
experimental validation
extinguishing coefficient
fire dynamics simulator (FDS)
fire growth rate index
fire risk
fire spread rate
fire suppression
flow fields
free surface waves
freestream theory
gap resonance
gearbox
genetic algorithms
ground roughness
heat exchanger
heat recuperation
heat release rate
heat transfer
hill shape
hill slope
horizontal face angle
horizontal pipe
hybrid simulation method
hydraulic characteristics
hydrodynamic forces
ignition heat source
impinging height
impinging water jet
inner smoke force
instability
interaction between smoke and evacuees
jet fan speed
large eddy simulations (LES)
large-eddy simulations
LedaFlow
liquid holdup
LSMs
maldistribution
maximum heat release rate
mie particles
modified BR-smoke model
multi-fluid model
multiphase flow
non-inertial coordinate system
numerical calculation
numerical investigation
numerical simulation
OH
optimized
optimized design
organ-Helmholtz nozzle
orifice shape
orthogonal test
particle heat transfer
pipe insulation
PIV
planar laser-induced fluorescence
pneumatics
power extraction
pre-multiplied wind velocity spectrum
premixed
pressure fluctuation
pressure gradient
pressure pulsation amplitude
pulse waterjet
radial force
radiant heat flux
radiation
recirculation
renewable energy
riser-induced slug flow
rotor stator interaction
roughness
scale factor
secondary vortex
self-excited oscillation jet
separation distance
shell side
shell-and-tube
shield arc metal welding
smoke layer thickness
smoke logging
smoke movement
smoke spread
smoke stratification
spatial correlation coefficient field
splash lubrication
splitter blades
sprinkler
stability
stepped spillway
submerged jet
surrogate model
swirler
thermoelectricity
time to reach maximum HRR (heat release rate)
traditional market
tube bundle
tunnel fires
turbines
turbulent boundary flow
turbulent boundary layer
turbulent flame
turbulent flow fields
turbulent structure
twin H-rotor vertical-axis turbines
twin-box deck
two-phase flow
ultra-low specific speed magnetic drive pump
unsteady flow
unsteady RANS simulation
URANS
velocity ratio
vertical jet
visibility
VLSMs
VOF-model
volume fraction
vortex shedding
wake
wavelet transform
welding spatter
wind power
WMLES
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910557503803321
Hjertager Bjørn  
Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Engineering Fluid Dynamics 2019-2020 : Volume 2
Engineering Fluid Dynamics 2019-2020 : Volume 2
Autore Hjertager Bjørn
Pubbl/distr/stampa Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Descrizione fisica 1 online resource (202 p.)
Soggetto topico History of engineering and technology
Soggetto non controllato 3D hill
accelerators
aerodynamics
anisotropic scattering
aspect ratio
automotive
baffle
Betz
blocked-off-region procedure
boundary layer
canopy
CFD
CH2O
churning power losses
clamping
climate change
coherent structures
combustion
computational fluid dynamics (CFD)
computational fluid dynamics (CFD), multiphysics
control
cylinder
deep neural network
dilution
discrete element method, sedimentation, bed formation
distribution
dynamic motion
energy dissipation rates
energy efficiency
evacuation
experimental validation
extinguishing coefficient
fire dynamics simulator (FDS)
fire growth rate index
fire risk
fire spread rate
fire suppression
flow fields
free surface waves
freestream theory
gap resonance
gearbox
genetic algorithms
ground roughness
heat exchanger
heat recuperation
heat release rate
heat transfer
hill shape
hill slope
horizontal face angle
horizontal pipe
hybrid simulation method
hydraulic characteristics
hydrodynamic forces
ignition heat source
impinging height
impinging water jet
inner smoke force
instability
interaction between smoke and evacuees
jet fan speed
large eddy simulations (LES)
large-eddy simulations
LedaFlow
liquid holdup
LSMs
maldistribution
maximum heat release rate
mie particles
modified BR-smoke model
multi-fluid model
multiphase flow
non-inertial coordinate system
numerical calculation
numerical investigation
numerical simulation
OH
optimized
optimized design
organ-Helmholtz nozzle
orifice shape
orthogonal test
particle heat transfer
pipe insulation
PIV
planar laser-induced fluorescence
pneumatics
power extraction
pre-multiplied wind velocity spectrum
premixed
pressure fluctuation
pressure gradient
pressure pulsation amplitude
pulse waterjet
radial force
radiant heat flux
radiation
recirculation
renewable energy
riser-induced slug flow
rotor stator interaction
roughness
scale factor
secondary vortex
self-excited oscillation jet
separation distance
shell side
shell-and-tube
shield arc metal welding
smoke layer thickness
smoke logging
smoke movement
smoke spread
smoke stratification
spatial correlation coefficient field
splash lubrication
splitter blades
sprinkler
stability
stepped spillway
submerged jet
surrogate model
swirler
thermoelectricity
time to reach maximum HRR (heat release rate)
traditional market
tube bundle
tunnel fires
turbines
turbulent boundary flow
turbulent boundary layer
turbulent flame
turbulent flow fields
turbulent structure
twin H-rotor vertical-axis turbines
twin-box deck
two-phase flow
ultra-low specific speed magnetic drive pump
unsteady flow
unsteady RANS simulation
URANS
velocity ratio
vertical jet
visibility
VLSMs
VOF-model
volume fraction
vortex shedding
wake
wavelet transform
welding spatter
wind power
WMLES
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Altri titoli varianti Engineering Fluid Dynamics 2019-2020
Record Nr. UNINA-9910557117703321
Hjertager Bjørn  
Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Engineering Mathematics in Ship Design
Engineering Mathematics in Ship Design
Autore Dos Santos Elizaldo Domingues
Pubbl/distr/stampa MDPI - Multidisciplinary Digital Publishing Institute, 2020
Descrizione fisica 1 online resource (168 p.)
Soggetto topico History of engineering and technology
Soggetto non controllato AHP method
balanced scorecard
cavitation
CFD
coanda effect
computational fluid dynamic
constitutive model
constructal design
controllable pitch propeller
damaged sensor
deflection
environmental management system
external forces
finite element
finite element method
finite volume method
fixed pitch propeller
fluid-structure interaction
fracture mechanics
FSI
H.O.M.E.R. nozzle
harmonic excitation
hydrodynamic forces
hydroelasticity
impact traction
ISO 14001
ISO 14598
ISO 9126
Lead-Zirconium-Titanium (PZT)
low-speed Diesel engine
marine industry
marine transport
MCDM method
MMG Model
modelling
n/a
numerical model
numerical simulation
optimisation
piezoelectric sensor
plate
roll damping
roll motion
selection
ship design
SHIPMOVE
single-stepped planing hulls
slamming
SPH
state-of-the-art
stiffened plate
stiffeners
symmetric 2D + T theory
towing tank tests
turbulence model
water entry
ISBN 3-03921-805-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910372786703321
Dos Santos Elizaldo Domingues  
MDPI - Multidisciplinary Digital Publishing Institute, 2020
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui