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Thermal Energy Storage : Systems and Applications.

Author: Dincer, Ibrahim.; Marc Rosen
Publisher: John Wiley & Sons 2010.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Database:WorldCat
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Genre/Form: Electronic resource
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Dincer, Ibrahim.; Marc Rosen
ISBN: 1282817566 9781282817562
OCLC Number: 729028915
Description: 1 online resource (624)
Contents: Cover --
Contents --
About The Authors --
Preface --
Acknowledgements --
1 General Introductory Aspects For Thermal Engineering --
1.1 Introduction --
1.2 Systems Of Units --
1.3 Fundamental Properties And Quantities --
1.3.1 Mass, Time, Length, And Force --
1.3.2 Pressure --
1.3.3 Temperature --
1.3.4 Specific Volume And Density --
1.3.5 Mass And Volumetric Flow Rates --
1.4 General Aspects Of Thermodynamics --
1.4.1 Thermodynamic Systems --
1.4.2 Process --
1.4.3 Cycle --
1.4.4 Thermodynamic Property --
1.4.5 Sensible And Latent Heats --
1.4.6 Latent Heat Of Fusion --
1.4.7 Vapor --
1.4.8 Thermodynamic Tables --
1.4.9 State And Change Of State --
1.4.10 Specific Internal Energy --
1.4.11 Specific Enthalpy --
1.4.12 Specific Entropy --
1.4.13 Pure Substance --
1.4.14 Ideal Gases --
1.4.15 Energy Transfer --
1.4.16 Heat --
1.4.17 Work --
1.4.18 The First Law Of Thermodynamics --
1.4.19 The Second Law Of Thermodynamics --
1.4.20 Reversibility And Irreversibility --
1.4.21 Exergy --
1.5 General Aspects Of Fluid Flow --
1.5.1 Classification Of Fluid Flows --
1.5.2 Viscosity --
1.5.3 Equations Of Flow --
1.5.4 Boundary Layer --
1.6 General Aspects Of Heat Transfer --
1.6.1 Conduction Heat Transfer --
1.6.2 Convection Heat Transfer --
1.6.3 Radiation Heat Transfer --
1.6.4 Thermal Resistance --
1.6.5 The Composite Wall --
1.6.6 The Cylinder --
1.6.7 The Sphere --
1.6.8 Conduction With Heat Generation --
1.6.9 Natural Convection --
1.6.10 Forced Convection --
1.7 Concluding Remarks --
2 Energy Storage Systems --
2.1 Introduction --
2.2 Energy Demand --
2.3 Energy Storage --
2.4 Energy Storage Methods --
2.4.1 Mechanical Energy Storage --
2.4.2 Chemical Energy Storage --
2.4.3 Biological Storage --
2.4.4 Magnetic Storage --
2.4.5 Thermal Energy Storage (Tes) --
2.5 Hydrogen For Energy Storage --
2.5.1 Storage Characteristics Of Hydrogen --
2.5.2 Hydrogen Storage Technologies --
2.5.3 Hydrogen Production --
2.6 Comparison Of Es Technologies --
2.7 Concluding Remarks --
3 Thermal Energy Storage (Tes) Methods --
3.1 Introduction --
3.2 Thermal Energy --
3.3 Thermal Energy Storage --
3.3.1 Basic Principle Of Tes --
3.3.2 Benefits Of Tes --
3.3.3 Criteria For Tes Evaluation --
3.3.4 Tes Market Considerations --
3.3.5 Tes Heating And Cooling Applications --
3.3.6 Tes Operating Characteristics --
3.3.7 Ashrae Tes Standards --
3.4 Solar Energy And Tes --
3.4.1 Tes Challenges For Solar Applications --
3.4.2 Tes Types And Solar Energy Systems --
3.4.3 Storage Durations And Solar Applications --
3.4.4 Building Applications Of Tes And Solar Energy --
3.4.5 Design Considerations For Solar Energy-Based Tes --
3.5 Tes Methods --
3.6 Sensible Tes --
3.6.1 Thermally Stratified Tes Tanks --
3.6.2 Concrete Tes --
3.6.3 Rock And Water/Rock Tes --
3.6.4 Aquifer Thermal Energy Storage (Ates) --
3.6.5 Solar Ponds --
3.6.6 Evacuated Solar Collector Te.

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