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Heat Pump Dryers Theory, Design and Industrial Applications




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Dettagli

Genere:Libro
Lingua: Inglese
Editore:

CRC Press

Pubblicazione: 09/2015
Edizione: 1° edizione





Note Editore

Explore the Social, Technological, and Economic Impact of Heat Pump Drying Heat pump drying is a green technology that aligns with current energy, quality, and environmental concerns, and when compared to conventional drying, delivers similar quality at a lower cost. Heat Pump Dryers: Theory, Design and Industrial Applications details the progression of heat pump drying—from pioneering research and demonstration work to an applied technology—and establishes principles and theories that can aid in the successful design and application of heat pump dryers. Based on the author's personal experience, this book compares heat pump dryers and conventional dryers in terms of performance, quality, removal rate, energy utilization, and the environmental effect of both drying processes. It includes detailed descriptions and layouts of heat pump dryers, outlines the principles of operation, and explains the equations, diagrams, and procedures used to form the basis for heat pump dryer dimensioning and design. The author also proposes the use of heat pump dryers that operate on natural fluids and considers their potential for providing ecological benefits and easing environmental issues relative to conventional drying. The use of natural fluids in heat pump dryers is consistent with the Kyoto and Montreal Protocols. Highlightsincludes coverage of: Single-stage and multi-stage vapor compression heat pumps for drying Adryer design utilizing single-stage vapor compression heat pumps Design of a two-stage vapor compression heat pump for drying green peas and aromatic leaves Psychrometry of humid air and includes the various types of humidification processes Thermodynamic properties of refrigerants for heat pumps Heat Pump Dryers: Theory, Design and Industrial Applications discusses the ready-to-use technology of heat pump drying. The book compares conventional and heat pump drying, addresses the confines and limitations of conventional drying, and proposes viable solutions using this novel process.




Sommario

Conventional and Heat Pump Drying: Benefits and DrawbacksClassification of Conventional DryersEnergy Aspects in Conventional DryingEnvironment and Climate Aspects Related to DryingBenefits and Principle of Operation of Heat Pump DryingSingle-Stage Vapour Compression Heat Pumps for DryingLaws of Thermodynamics and the Heat Pump CyclesCarnot CycleSingle-Stage Vapour Compression Heat Pump as a Modified Carnot CycleIsentropic and Non-Isentropic Saturated Vapour Compression Heat Pump with Dry-Expansion EvaporatorBasic Vapour Compression Heat Pump with Dry-Expansion Evaporator and Drying ChannelsVapour Compression Heat Pump with Flooded EvaporatorVapour Compression Heat Pump with Internal Heat ExchangerComparison and Limitations of the Single-Stage Vapour Compression SystemsProblems and SolutionsMultistage Vapour Compression Heat Pumps for DryingTwo-Stage Compression Heat Pump with Gas IntercoolerTwo-Stage Compression Heat Pump with Flash Intercooler and Compressors in ParallelTwo-Stage Compression Heat Pump with Open Flash Intercooler and Compressors in SeriesTwo-Stage Heat Pump with Single Screw Compressor and EconomiserTwo-Stage Compression Heat Pump with Closed Intercooler for Combined Sub-Cooling and DesuperheatingTwo-Stage Vapour Compression Heat Pump with Open IntercoolerProblems and SolutionsDesign of Single-Stage Vapour Compression Heat Pump DryingConventional Drying without Recirculation of the Exhaust AirConventional Drying with 50% Recirculation of the Exhaust Air and Constant Outlet Relative HumidityConventional Drying with 50% Recirculation of the Exhaust Air with Constant Absolute Humidity DifferenceHeat Pump Drying in a Closed CycleHeat Pump Fluidised Bed Drying of Onion FlakesHeat Pump Belt Drying of Leek CubesHeat Pump Stationary Bed Drying of Mushroom SlicesHeat Pump Fluidised Bed Drying of CauliflowerHeat Pump Tunnel Drying of Salted Cod FishDesign of Two-Stage Vapour Compression Heat Pump DryingTwo-Stage Vapour Compression Heat Pump Drying of Green PeasTwo-Stage Compression Heat Pump Drying of Aromatic LeavesPsychrometry of Moist Air Applied to Water Removal and Energy ConsumptionMain Moist Air Psychrometric PropertiesTypes of Psychrometric ProcessesRatio of Moisture Removal and Specific Energy ConsumptionHeat Pump Specific Moisture Extraction RatioProblems and SolutionsThermophysical Properties and Selection of Heat Pump FluidsTypes and Designation of RefrigerantsSelection of Heat Pump FluidsNew Heat Pump Dryers with Natural Fluids Designed at NTNUMain Properties of Selected RefrigerantsReferences and Additional Readings




Autore

Prof. Odilio Alves-Filho earned his master’s and PhD degrees in mechanical engineering from the University of California, Davis, and the Norwegian University of Science and Technology, Trondheim, Norway, where he is a professor and chair for the advanced PhD course in heat and mass transport in porous media. He is a former dean of the Faculty of Mechanical-Electrical Engineering, head of the Center of Excellence in Dewatering, and CEO of Innovative Drying Tech. He co-authored the Ramalho and Alves-Filho Model, has authored approximately 300 papers, two books and numerous book chapters, and is also the editor of eight academic proceedings.










Altre Informazioni

ISBN:

9781498711333

Condizione: Nuovo
Dimensioni: 10 x 7 in Ø 1.82 lb
Formato: Copertina rigida
Illustration Notes:115 b/w images, 116 tables and 627 Equations
Pagine Arabe: 345


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