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Entropy Generation Minimization Adrian Bejan Thermodynamic Optimization Method
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Ubicado en: Dayton, Ohio, Estados Unidos
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Entrega prevista entre el mié. 6 ago. y el lun. 11 ago.
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N.º de artículo de eBay:116685623830
Características del artículo
- Estado
- En buen estado
- Notas del vendedor
- “Normal wear. No markings or major damage. See photos”
- Book Title
- Entropy Generation Minimization (Mechanical and Aerospace Engine,
- Narrative Type
- Chemical
- Genre
- N/A
- Intended Audience
- N/A
- Topic
- Chemical
- ISBN
- 9780849396519
Acerca de este producto
Product Identifiers
Publisher
Taylor & Francis Group
ISBN-10
0849396514
ISBN-13
9780849396519
eBay Product ID (ePID)
436049
Product Key Features
Number of Pages
392 Pages
Publication Name
Entropy Generation Minimization : The Method of Thermodynamic Optimization of Finite-Size Systems and Finite-Time Processes
Language
English
Publication Year
1995
Subject
Energy, Civil / General, Chemistry / Industrial & Technical, Mechanics / Thermodynamics
Type
Textbook
Subject Area
Technology & Engineering, Science
Series
Mechanical and Aerospace Engineering Ser.
Format
Hardcover
Dimensions
Item Height
1 in
Item Weight
33.9 Oz
Item Length
9.6 in
Item Width
6.4 in
Additional Product Features
Intended Audience
Scholarly & Professional
LCCN
95-011954
Dewey Edition
20
Series Volume Number
2
Illustrated
Yes
Dewey Decimal
621.402/1
Table Of Content
(Chapter Titles)Thermodynamics Concepts and LawsEntropy Generation and Exergy DestructionEntropy Generation in Fluid FlowEntropy Generation in Heat TransferHeat ExchangersInsulation SystemsStorage SystemsPower GenerationSolar-Thermal Power GenerationRefrigerationTime-Dependent OperationAppendices: Local Entropy Generation Rate. Variational Calculus.Author IndexSubject Index
Synopsis
This book presents the diverse and rapidly expanding field of Entropy Generation Minimization (EGM), the method of thermodynamic optimization of real devices. The underlying principles of the EGM method - also referred to as "thermodynamic optimization," "thermodynamic design," and "finite time thermodynamics" - are thoroughly discussed, and the method's applications to real devices are clearly illustrated. The EGM field has experienced tremendous growth during the 1980s and 1990s. This book places EGM's growth in perspective by reviewing both sides of the field - engineering and physics. Special emphasis is given to chronology and to the relationship between the more recent work and the pioneering work that outlined the method and the field. Entropy Generation Minimization combines the fundamental principles of thermodynamics, heat transfer, and fluid mechanics. EGM applies these principles to the modeling and optimization of real systems and processes that are characterized by finite size and finite time constraints, and are limited by heat and mass transfer and fluid flow irreversibilities. Entropy Generation Minimization provides a straightforward presentation of the principles of the EGM method, and features examples that elucidate concepts and identify recent EGM advances in engineering and physics. Modern advances include the optimization of storage by melting and solidification; heat exchanger design; power from hot-dry-rock deposits; the on & off operation of defrosting refrigerators and power plants with fouled heat exchangers; the production of ice and other solids; the maximization of power output in simple power plant models with heat transfer irreversibilities; the minimization of refrigerator power input in simple models; and the optimal collection and use of solar energy., This book presents the diverse and rapidly expanding field of Entropy Generation Minimization (EGM), the method of thermodynamic optimization of real devices. The underlying principles of the EGM method - also referred to as "thermodynamic optimization," "thermodynamic design," and "finite time thermodynamics" - are thoroughly discussed, and the method's applications to real devices are clearly illustrated.The EGM field has experienced tremendous growth during the 1980s and 1990s. This book places EGM's growth in perspective by reviewing both sides of the field - engineering and physics. Special emphasis is given to chronology and to the relationship between the more recent work and the pioneering work that outlined the method and the field.Entropy Generation Minimization combines the fundamental principles of thermodynamics, heat transfer, and fluid mechanics. EGM applies these principles to the modeling and optimization of real systems and processes that are characterized by finite size and finite time constraints, and are limited by heat and mass transfer and fluid flow irreversibilities.Entropy Generation Minimization provides a straightforward presentation of the principles of the EGM method, and features examples that elucidate concepts and identify recent EGM advances in engineering and physics. Modern advances include the optimization of storage by melting and solidification; heat exchanger design; power from hot-dry-rock deposits; the on & off operation of defrosting refrigerators and power plants with fouled heat exchangers; the production of ice and other solids; the maximization of power output in simple power plant models with heat transfer irreversibilities; the minimization of refrigerator power input in simple models; and the optimal collection and use of solar energy., This book presents the diverse and rapidly expanding field of Entropy Generation Minimization (EGM), the method of thermodynamic optimization of real devices
LC Classification Number
TJ265.B47 1996
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- 9***_ (186)- Votos emitidos por el comprador.Últimos 6 mesesCompra verificadaThe item arrived early and had been packed with great care. I worried that for the great low price- at least $10 less than other sellers- that I was buying a “dud.” I have been MORE than pleased with this purchase and can highly recommend this seller. I had gotten an IP at a Goodwill store for $12.99, and realized soon after why it had been donated. It leaked all the steam before it finished cooking and would be bone dry when it was opened. This new lid saved buying a whole new IP. TY!