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Refrigeration Systems and Applications 2019



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Autore: Aprea Ciro Visualizza persona
Titolo: Refrigeration Systems and Applications 2019 Visualizza cluster
Pubblicazione: MDPI - Multidisciplinary Digital Publishing Institute, 2019
Descrizione fisica: 1 electronic resource (200 p.)
Soggetto non controllato: artificial neural network
P-? indicator diagram
r1234ze(e)
experimental
ethylene-glycol nanofluids
HFO
magneto-caloric effect
thermodynamic analysis
HVAC
refrigerant reclamation
domestic refrigeration system
distillation
R-410A
energy efficiency
energy consumption
LiCl-H2O
acetoxy silicone rubber
exergy analysis
two-phase ejector
modelling
Cu nanofluids
off-design behaviors
eddy currents
heat transfer
phase change material
r1234yf
superheating
irreversibility
gadolinium
CFD
artificial neural network (ANN)
CO2
chiller energy consumption
vapor compression system
thermal energy storage
heat pump
nanofluids
thermodynamic performance
transiting exergy
caloric cooling
solid-state cooling
LiBr-H2O
parasitic heat load
hydraulic turbine
calculation model
magnetic refrigeration
coefficient of performance
transcritical system
magnetocaloric effect
LaFe13 ? x ? yCoxSiy
twin-screw refrigeration compressor
absorption refrigeration system
thermal load
ejector refrigeration technology
barocaloric
Persona (resp. second.): MaiorinoAngelo
BabiloniAdrián Mota
Sommario/riassunto: The Special Issue “Refrigeration Systems and Applications” aims to encourage researchers to address the concerns associated with climate change and the sustainability of artificial cold production systems, and to further the transition to the more sustainable technologies and methodologies of tomorrow through theoretical, experimental, and review research on the different applications of refrigeration and associated topics.
Titolo autorizzato: Refrigeration Systems and Applications 2019  Visualizza cluster
ISBN: 3-03921-953-7
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910367739003321
Lo trovi qui: Univ. Federico II
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