Hybrid Power Cycle Arrangements for Lower Emissions
Hybrid Power Cycle Arrangements for Lower Emissions
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This book provides an overview of hybrid power cycles for power generation with lower emissions, discussing ongoing research and development activities, challenges, constraints, and opportunities. It also presents a new energy storage technique and conducts exergoeconomic and environmental analysis for various hybrid configurations.
Format: Hardback
Length: 298 pages
Publication date: 25 April 2022
Publisher: Taylor & Francis Ltd
Here is the rephrased text:
Hybrid power cycles have emerged as a promising solution for power generation, offering the potential to reduce emissions while maintaining efficiency. This comprehensive review covers the state-of-the-art in hybrid power cycles, exploring their various configurations, components, and operating principles. It discusses ongoing research and development activities in the field, highlighting the challenges, constraints, and opportunities that exist in both theoretical and application aspects of hybrid technologies.
The review also presents a novel energy storage technique that enhances the efficiency and reliability of hybrid power systems. Furthermore, exergoeconomic and environmental analysis is conducted for several hybrid configurations, providing insights into their economic viability and environmental impact.
Lastly, the paper explores SOFC integrated blade cooled gas turbine hybrid power cycles, which combine the advantages of solid oxide fuel cells (SOFCs) and gas turbines to achieve high efficiency and low emissions. This innovative approach offers a promising solution for future power generation applications.
In conclusion, this review provides a comprehensive overview of hybrid power cycles, highlighting their potential for reducing emissions, improving efficiency, and advancing sustainable energy solutions. It serves as a valuable resource for researchers, engineers, and policymakers interested in developing and implementing hybrid power systems.
Weight: 730g
Dimension: 246 x 174 (mm)
ISBN-13: 9781032072531
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