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Process Modeling in Pyrometallurgical Engineering



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Autore: Saxen Henrik Visualizza persona
Titolo: Process Modeling in Pyrometallurgical Engineering Visualizza cluster
Pubblicazione: Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Descrizione fisica: 1 online resource (642 p.)
Soggetto topico: Technology: general issues
Soggetto non controllato: 3D molecular model
adaptive finite differences
analysis tool
angle of repose
apparent activation energy
arrhenius equation
arsenate
arsenic recovery
arsenic removal
arsenopyrite
artificial intelligence
basic oxygen furnace
biomass
blast furnace
blast furnace hearth
BOS reactor
bubble motion
burden distribution
burden layer structure
burden pile width
C-H2 smelting reduction furnace
carbon solution loss
CFD
CFD-DEM
charcoal combustion rate
charging system
coalescence
coke
coke bed
coke combustion rate
combustion
computational fluid dynamics
computational fluid dynamics (CFD)
conjugate heat transfer
coordination number
copper smelter
copper smelting
COREX
COREX melter gasifier
coupling effect
Cr2O3
crystal size
dead man
decarburization
DEM
dimensional analysis
Discrete Element Method
discrete event simulation
double impingement feeding system
double-row side nozzles
drainage
dual gas injection
dust ash
dynamic model
EAF
electric arc furnace
Electric Arc Furnace
electrical energy consumption
entrainment
Eulerian multiphase flow
fault detection and identification
flat rolling
flat-rolled wire
flow behavior
flow pattern
fuel injection
funneling flow
gas flow
gated recurrent unit
genetic algorithm
GPR
hearth
hearth drainage
heating time
horizontal single belt casting process (HSBC)
hot rolling
hot rolling planning
Industry 4.0
interfacial phenomena
ion-molecule coexistence theory
iron and slag flow
iron ore sintering process
ironmaking blast furnace
kinetic models
LF refining slags
Lignite
lining wear
liquid iron
machine learning
macroscopic shear bands
main trough
mass transfer coefficient
mathematical model
mathematical modeling
matte-slag chemistry
mechanism
microwave and ultrasound modification
mixed charging
mixing time
molten slag
monomer blended fuel
moving path
multiple linear regression
n/a
natural gas
neural network
nickel-based alloy
nickel-copper smelter
normal pressure
numerical model
numerical simulation
oxygen bottom blown
oxygen consumption
particle flow
pattern
PCA
Peirce-smith converting
pellet pile
physical modeling
porosity distribution
prediction model
process model
processing maps
quasi-particle
quasi-particle fuel
quasi-particle structure
raceway evolution
raceway size
raceway zone
radar data
radiometric sensors
RAFT
refractory
roasting
roll design
scrap melting
secondary refining
segregation models
settling
shape rolling
Shuikoushan process
simulation
SKS
slag entrapment
slag eye
solidification
SPH
spinel
stainless steel slag
statistical modeling
steel refining
steelmaking
strain inhomogeneity
structural characterization
structural simulation
supersonic coherent jet
support vector data description
tapholes
temperature distribution
thermodynamic model
time sequence prediction
TiN inclusion
tire cord steel
titanium distribution ratio
TOU electricity pricing
transient fluid of hot metal and molten slag
trickle flow
validation
wall shear stress
water model
wire rod
Persona (resp. second.): Ramírez-ArgáezMarco
ConejoAlberto
DuttaAbhishek
SaxenHenrik
Sommario/riassunto: The Special Issue presents almost 40 papers on recent research in modeling of pyrometallurgical systems, including physical models, first-principles models, detailed CFD and DEM models as well as statistical models or models based on machine learning. The models cover the whole production chain from raw materials processing through the reduction and conversion unit processes to ladle treatment, casting, and rolling. The papers illustrate how models can be used for shedding light on complex and inaccessible processes characterized by high temperatures and hostile environment, in order to improve process performance, product quality, or yield and to reduce the requirements of virgin raw materials and to suppress harmful emissions.
Titolo autorizzato: Process Modeling in Pyrometallurgical Engineering  Visualizza cluster
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910557580503321
Lo trovi qui: Univ. Federico II
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