Thermal Energy Storage Systems and Applications Second Edition by Ibrahim Dincer, Marc Rosen – Ebook PDF Instant Download/Delivery: 9780470970737, 0470970731
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Product details:
ISBN 10: 0470970731
ISBN 13: 9780470970737
Author: Ibrahim Dincer, Marc Rosen
The ability of thermal energy storage (TES) systems to facilitate energy savings, renewable energy use and reduce environmental impact has led to a recent resurgence in their interest. The second edition of this book offers up-to-date coverage of recent energy efficient and sustainable technological methods and solutions, covering analysis, design and performance improvement as well as life-cycle costing and assessment. As well as having significantly revised the book for use as a graduate text, the authors address real-life technical and operational problems, enabling the reader to gain an understanding of the fundamental principles and practical applications of thermal energy storage technology.
Beginning with a general summary of thermodynamics, fluid mechanics and heat transfer, this book goes on to discuss practical applications with chapters that include TES systems, environmental impact, energy savings, energy and exergy analyses, numerical modeling and simulation, case studies and new techniques and performance assessment methods.
Table of contents:
1. General Introductory Aspects for Thermal Engineering
1.1 Introduction
1.2 Systems of Units
1.3 Fundamental Properties and Quantities
1.4 General Aspects of Thermodynamics
1.5 General Aspects of Fluid Flow
1.6 General Aspects of Heat Transfer
1.7 Concluding Remarks
2. Energy Storage Systems
2.1 Introduction
2.2 Energy Demand
2.3 Energy Storage
2.4 Energy Storage Methods
2.5 Hydrogen for Energy Storage
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
3.4 Solar Energy and TES
3.5 TES Methods
3.6 Sensible TES
3.7 Latent TES
3.8 Cold Thermal Energy Storage (CTES)
3.9 Seasonal TES
3.10 Concluding Remarks
4. Thermal Energy Storage and Environmental Impact
4.1 Introduction
4.2 Energy and the Environment
4.3 Major Environmental Problems
4.4 Environmental Impact and TES Systems and Applications
4.5 Potential Solutions to Environmental Problems
4.6 Sustainable Development
4.7 Illustrative Examples and Case Studies
4.8 Concluding Remarks
5. Thermal Energy Storage and Energy Savings
5.1 Introduction
5.2 TES and Energy Savings
5.3 Additional Energy Savings Considerations for TES
5.4 Energy Conservation with TES: Planning and Implementation
5.5 Some Limitations on Increased Efficiency
5.6 Energy Savings for Cold TES
5.7 Concluding Remarks
6. Energy and Exergy Analyses of Thermal Energy Storage Systems
6.1 Introduction
6.2 Theory: Energy and Exergy Analyses
6.3 Thermodynamic Considerations in TES Evaluation
6.4 Exergy Evaluation of a Closed TES System
6.5 Appropriate Efficiency Measures for Closed TES Systems
6.6 Importance of Temperature in Performance Evaluations for Sensible TES Systems
6.7 Exergy Analysis of Aquifer TES Systems
6.8 Exergy Analysis of Thermally Stratified Storages
6.9 Energy and Exergy Analyses of Cold TES Systems
6.10 Exergy-Based Optimal Discharge Periods for Closed TES Systems
6.11 Exergy Analysis of Solar Ponds
6.12 Concluding Remarks
Appendix: Glossary of Selected Exergy-Related Terminology
7. Numerical Modeling and Simulation of Thermal Energy Storage Systems
7.1 Introduction
7.2 Approaches and Methods
7.3 Selected Applications
7.4 Numerical Modeling, Simulation, and Analysis of Sensible TES Systems
7.6 Numerical Modeling, Simulation, and Analysis of Latent TES Systems
7.8 Illustrative Application for a Complex System: Numerical Assessment of Encapsulated Ice TES with Variable Heat Transfer Coefficients
7.9 Concluding Remarks
8. Thermal Energy Storage Case Studies
8.1 Introduction
8.2 Ice CTES Case Studies
8.3 Ice-Slurry CTES Case Studies
8.4 Chilled Water CTES Case Studies
8.5 PCM-Based CTES Case Studies
8.6 PCM-Based Latent TES for Heating Case Studies
8.7 Sensible TES Case Studies
8.8 Other Case Studies
8.9 Concluding Remarks
9. Recent Advances in TES Methods, Technologies, and Applications
9.1 Introduction
9.2 Recent TES Investigations
9.3 Developments in TES Types and Performance
9.4 Micro- and Macro-Level Advances in TES Systems and Applications
9.5 Micro-Level Advances in TES Systems
9.6 Macro-Level Advances in TES Systems and Applications
9.7 Performance Enhancement Techniques
9.8 Innovative Applications of TES Systems
9.9 Advanced Applications of Exergy Methods
9.10 Illustrative Examples
9.11 Future Outlook for TES
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Tags: Ibrahim Dincer, Marc Rosen, Thermal Energy, Storage Systems


