ハイブリッドポリジェネレーションエネルギーシステム:熱デザインと熱効率分析<br>Hybrid Poly-generation Energy Systems : Thermal Design and Exergy Analysis

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ハイブリッドポリジェネレーションエネルギーシステム:熱デザインと熱効率分析
Hybrid Poly-generation Energy Systems : Thermal Design and Exergy Analysis

  • 言語:ENG
  • ISBN:9780323983662
  • eISBN:9780323985741

ファイル: /

Description

Hybrid Poly-generation Energy Systems: Thermal Design and Exergy Analysis provides an analysis of the latest technologies and concepts of hybrid energy systems, focusing on thermal applications. The book guides readers through an introduction to hybrid poly-generation systems and the storage options available before working through the types of hybrid systems, including solar, fuel cells, combustion, and heating and cooling. An analysis of the economic and environmental impact of each system is included, as well as methods and approaches for exergy and energy improvement analysis. This book can be used as a tool for understanding new concepts in this emerging field and as a reference for researchers and professionals working on the integrated cogeneration of power systems.- Guides the reader through hybrid processes they can apply to their own system designs- Explains operational processes and includes multiple examples of optimization techniques- Includes renewable energy sources, CO2 capturing processes in combined systems and advanced exergy analysis methods

Table of Contents

1. What does it mean? Hybrid poly-generation systems (PGSs)2. How to use renewable energy sources in poly-generation systems?3. Energy storage type and size in PGSs4. Exergy, energy, environmental and economic analysis of hybrid poly-generation systems: methods and approaches5. Solar based hybrid energy systems6. Technical and economic prospects of fuel cells combination with PGSs?7. Biomass based hybrid energy systems8. Chemical looping combustion in PGSs9. A framework for sustainable hydrogen production by PGSs10. Integration of oxy-fuel power plants in PGSs11. Basic power and cooling production systems in combination with PGSs to tri-generation of cold, heat and power12. Integration of carbon dioxide capturing processes in hybrid energy systems13. Advanced economic, environmental and exergy analyses of PGSs

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