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Efficiency Evaluation of Energy Systems
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Feldname
Details
Vorliegende Sprache
eng
ISBN
978-1-4614-2241-9
Name
Kanoğlu, Mehmet
Çengel, Yunus A.
ANZEIGE DER KETTE
Çengel, Yunus A.
Name
Dinçer, Ibrahim
T I T E L
Efficiency Evaluation of Energy Systems
Verlagsort
New York, NY
Verlag
Springer New York
Erscheinungsjahr
2012
2012
Umfang
Online-Ressource (IX, 170p. 67 illus., 9 illus. in color, digital)
Reihe
SpringerBriefs in Energy
Notiz / Fußnoten
Description based upon print version of record
Weiterer Inhalt
Efficiency Evaluationof Energy Systems; Preface; Contents; Chapter 1: Efficiency, Environment, and Sustainability; 1.1 Introduction; 1.2 Energy, Exergy, Environment, and Sustainable Development; 1.3 Efficiency and Energy Management; Chapter 2: The First and Second Laws of Thermodynamics; 2.1 Introduction; 2.2 Energy Change and Energy Transfer; 2.2.1 Mass Transfer; 2.2.2 Heat Transfer; 2.2.3 Work; 2.3 The First Law of Thermodynamics; 2.4 The Second Law of Thermodynamics; 2.5 Entropy; 2.5.1 Entropy Balance; 2.6 Exergy; 2.6.1 What Is Exergy?; 2.6.2 Reversibility and Irreversibility. 2.6.3 Reversible Work and Exergy Destruction2.6.4 Exergy Change; 2.6.5 Exergy Transfer Mechanisms; 2.6.6 Exergy Balance; Chapter 3: Energy and Exergy Efficiencies; 3.1 Introduction; 3.2 Efficiencies of Cyclic Devices; 3.3 Efficiencies of Steady-Flow Devices; 3.3.1 Turbine; 3.3.2 Compressor; 3.3.3 Pump; 3.3.4 Nozzle; 3.3.5 Throttling Valve; 3.3.6 Heat Exchanger; 3.3.7 Mixing Chamber; 3.3.8 Electric Resistance Heating; Chapter 4: Energy Conversion Efficiencies; 4.1 Conversion Efficiencies of Common Devices; 4.1.1 Electric Resistance Heater; 4.1.2 Electric Water Heater. 4.1.3 Natural Gas Water Heater4.1.4 Combustion Efficiency; 4.1.5 Heating Values; 4.1.6 Boiler Efficiency; 4.1.7 Generator Efficiency and Overall Efficiency; 4.1.8 Lighting Efficacy; 4.2 Efficiencies of Mechanical and Electrical Devices; 4.3 Cryogenic Turbine Efficiencies; Chapter 5: Efficiencies of Power Plants; 5.1 Introduction; 5.2 Efficiencies of Vapor Power Cycles; 5.3 Efficiencies of Gas Power Plants; 5.4 Efficiencies of Cogeneration Plants; 5.4.1 Steam-Turbine-Based Cogeneration Plant; 5.4.2 Gas-Turbine-Based Cogeneration Plant; 5.5 Efficiencies of Geothermal Power Plants. 5.6 Energetic and Exergetic Analyses of a Photovoltaic SystemChapter 6: Efficiencies of Refrigeration Systems; 6.1 Refrigerators and Heat Pumps; 6.1.1 Heat Pump Efficiencies; 6.1.1.1 Coefficient of Performance (COP); 6.1.1.2 Primary Energy Ratio (PER); 6.1.1.3 Energy Efficiency Ratio (EER); 6.1.1.4 Heating Season Performance Factor (HSPF); 6.1.1.5 Seasonal Energy Efficiency Ratio (SEER); 6.1.2 The Carnot Refrigeration Cycle; 6.2 Second Law Analysis of Vapor-Compression Refrigeration Cycle; 6.3 Energy and Exergy Efficiencies of Vapor-Compression Heat Pump Cycle. 6.4 Absorption Refrigeration Cycle6.5 Liquefaction of Gases; 6.5.1 Linde-Hampson Cycle; 6.5.2 Precooled Linde-Hampson Liquefaction Cycle; 6.6 Efficiency Analysis of Psychrometric Processes; 6.6.1 Balance Equations for Common Air-Conditioning Processes; 6.6.2 Heating or Cooling; 6.6.3 Heating with Humidification; 6.6.4 Cooling with Dehumidification; 6.6.5 Evaporative Cooling; 6.6.6 Adiabatic Mixing of Air Streams; Appendix A; A.1 A Case Study of Efficiency Evaluation of a Binary Geothermal Power Plant; A.1.1 Introduction; A.1.2 Plant Operation; A.1.3 Energy and Exergy Analyses. A.1.4 Results and Discussion
Titelhinweis
Buchausg. u.d.T.ISBN: 978-1-461-42241-9
ISBN
ISBN 978-1-4614-2242-6
Klassifikation
PHH
SCI065000
536.7
621.31
QC310.15-319
Kurzbeschreibung
?brahim Dinçer
2. Kurzbeschreibung
Efficiency is one of the most frequently used terms in thermodynamics, and it indicates how well an energy conversion or process is accomplished. Efficiency is also one of the most frequently misused terms in thermodynamics and is often a source of misunderstanding. This is because efficiency is often used without being properly defined first. This book intends to provide a comprehensive evaluation of various efficiencies used for energy transfer and conversion systems including steady-flow energy devices (turbines, compressors, pumps, nozzles, heat exchangers, etc.), various power plants, cogeneration plants, and refrigeration systems. The book will cover first-law (energy based) and second-law (exergy based) efficiencies and provide a comprehensive understanding of their implications. It will help minimize the widespread misuse of efficiencies among students and researchers in energy field by using an intuitive and unified approach for defining efficiencies. The book will be particularly useful for a clear understanding of second law (exergy) efficiencies for various systems. It may serve as a reference book to the researchers in energy field. The definitions and concepts developed in the book will be explained through illustrative examples.
SWB-Titel-Idn
36526976X
Signatur
Springer E-Book
Bemerkungen
Elektronischer Volltext - Campuslizenz
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$uhttp://dx.doi.org/10.1007/978-1-4614-2242-6
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