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ISBN 10: 1032101296 ISBN 13: 9781032101293
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Published by Taylor & Francis Ltd, 2024
ISBN 10: 1032101296 ISBN 13: 9781032101293
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ISBN 10: 1032101296 ISBN 13: 9781032101293
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Paperback. Condition: new. Paperback. Hybrid Power Cycle Arrangements for Lower Emissions is an edited book that explores the state-of-the-art for creating effective hybrid power cycles for power generation with lower emission while utilizing different energy sources. The book details energetic and exergetic studies for improving system design and performance of hybrid power cycle arrangements. Chapters in the book provide a systematic approach to the integration and operation of different thermal power cycles with renewable energy sources.The book brings together researchers and practitioners from academia and industry to present their recent and ongoing research and development activities concerning the advancement of hybridization of different conventional and unconventional energy sources to produce efficient and clean energy systems. The book chapters present a range of ongoing research and development activities, challenges, constraints, and opportunities in both theoretical as well as application aspects of several hybrid technologies for power generation. Several issues such as hybridization of different energy sources, availability, environmental impacts, and power cycle integration are addressed in-depth, making this collection a worthy repository for those working in the field of the power cycles. This is an orientation book which contains various approaches proposed by researchers to integrate different power cycles based on different energy sources. It is useful for beginners and advanced researchers to understand and formulate the effective integration of different energy sources through high and low temperature-based power cycles. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
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ISBN 10: 1032101296 ISBN 13: 9781032101293
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ISBN 10: 1032101296 ISBN 13: 9781032101293
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Published by Taylor & Francis Ltd, London, 2024
ISBN 10: 1032101296 ISBN 13: 9781032101293
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Add to basketPaperback. Condition: new. Paperback. Hybrid Power Cycle Arrangements for Lower Emissions is an edited book that explores the state-of-the-art for creating effective hybrid power cycles for power generation with lower emission while utilizing different energy sources. The book details energetic and exergetic studies for improving system design and performance of hybrid power cycle arrangements. Chapters in the book provide a systematic approach to the integration and operation of different thermal power cycles with renewable energy sources.The book brings together researchers and practitioners from academia and industry to present their recent and ongoing research and development activities concerning the advancement of hybridization of different conventional and unconventional energy sources to produce efficient and clean energy systems. The book chapters present a range of ongoing research and development activities, challenges, constraints, and opportunities in both theoretical as well as application aspects of several hybrid technologies for power generation. Several issues such as hybridization of different energy sources, availability, environmental impacts, and power cycle integration are addressed in-depth, making this collection a worthy repository for those working in the field of the power cycles. This is an orientation book which contains various approaches proposed by researchers to integrate different power cycles based on different energy sources. It is useful for beginners and advanced researchers to understand and formulate the effective integration of different energy sources through high and low temperature-based power cycles. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
Published by Taylor & Francis Ltd, 2024
ISBN 10: 1032101296 ISBN 13: 9781032101293
Language: English
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Published by Taylor & Francis Ltd, 2022
ISBN 10: 1032072539 ISBN 13: 9781032072531
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Add to basketPaperback. Condition: new. Paperback. Hybrid Power Cycle Arrangements for Lower Emissions is an edited book that explores the state-of-the-art for creating effective hybrid power cycles for power generation with lower emission while utilizing different energy sources. The book details energetic and exergetic studies for improving system design and performance of hybrid power cycle arrangements. Chapters in the book provide a systematic approach to the integration and operation of different thermal power cycles with renewable energy sources.The book brings together researchers and practitioners from academia and industry to present their recent and ongoing research and development activities concerning the advancement of hybridization of different conventional and unconventional energy sources to produce efficient and clean energy systems. The book chapters present a range of ongoing research and development activities, challenges, constraints, and opportunities in both theoretical as well as application aspects of several hybrid technologies for power generation. Several issues such as hybridization of different energy sources, availability, environmental impacts, and power cycle integration are addressed in-depth, making this collection a worthy repository for those working in the field of the power cycles. This is an orientation book which contains various approaches proposed by researchers to integrate different power cycles based on different energy sources. It is useful for beginners and advanced researchers to understand and formulate the effective integration of different energy sources through high and low temperature-based power cycles. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
Published by H N H International Limited, 2022
ISBN 10: 1032072539 ISBN 13: 9781032072531
Language: English
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Condition: New. pp. 288.
Published by H N H International Limited, 2022
ISBN 10: 1032072539 ISBN 13: 9781032072531
Language: English
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Paperback. Condition: new. Paperback. As the world grapples with the transition to sustainable energy sources, the demand for materials with high-performance electrodes, electrolytes, and catalysts has become paramount. The energy transition necessitates materials with increased energy and power density for advanced energy storage devices, while the emergence of future fuels like hydrogen requires economically viable electrocatalysts for mass production. In response to these challenges, Engineering Materials for Efficient Energy Storage and Conversion addresses these pressing concerns through an interdisciplinary lens that combines materials science, chemistry, physics, and engineering. Within the pages of Engineering Materials for Efficient Energy Storage and Conversion , a comprehensive exploration unfolds, delving into cutting-edge R&D in energy technologies. The book takes a deep dive into critical areas such as fuel cells, thermal battery materials, hydrogen storage, and materials for thermal management. By providing in-depth insights into the electrochemical, physicochemical, and structural aspects of energy technologies, the book aims to advance functional materials and devices crucial for the sustainable future of energy storage and conversion. This compendium not only presents theoretical frameworks but also offers the latest empirical research findings, contributing significantly to the evolution of the field. The global community must navigate the complexities of sustainable energy solutions, and Engineering Materials for Efficient Energy Storage and Conversion stands as a vital resource for researchers, professionals, and students. By fostering interdisciplinary collaboration and addressing pressing environmental concerns, this book becomes a catalyst for progress in current research on engineering materials. Covering a diverse array of topics from biomaterials to automotive materials, the book is poised to play a pivotal role in advancing sustainable energy solutions. In a world hungry for tangible advancements, directs the collective efforts of those committed to shaping the future of energy materials. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
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