Proceedings of the ASME Advanced Energy Systems Division
Author: American Society of Mechanical Engineers. Advanced Energy Systems Division
Publisher:
Published: 2000
Total Pages: 640
ISBN-13:
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Author: American Society of Mechanical Engineers. Advanced Energy Systems Division
Publisher:
Published: 2000
Total Pages: 640
ISBN-13:
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Publisher:
Published: 1995
Total Pages: 702
ISBN-13:
DOWNLOAD EBOOKAuthor: S. Can Gülen
Publisher: Cambridge University Press
Published: 2019-02-14
Total Pages: 735
ISBN-13: 1108416659
DOWNLOAD EBOOKEverything you wanted to know about industrial gas turbines for electric power generation in one source with hard-to-find, hands-on technical information.
Author: United States. Energy Research and Development Administration
Publisher:
Published: 1976
Total Pages: 936
ISBN-13:
DOWNLOAD EBOOKAuthor: United States. Energy Research and Development Administration. Technical Information Center
Publisher:
Published: 1976
Total Pages: 962
ISBN-13:
DOWNLOAD EBOOKAuthor: Anoop Kumar Shukla
Publisher: CRC Press
Published: 2022-04-25
Total Pages: 306
ISBN-13: 100056665X
DOWNLOAD EBOOKHybrid 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.
Author: Ibrahim Din¿er
Publisher: John Wiley & Sons
Published: 2017-05-15
Total Pages: 484
ISBN-13: 111889443X
DOWNLOAD EBOOKAn essential resource for optimizing energy systems to enhance design capability, performance and sustainability Optimization of Energy Systems comprehensively describes the thermodynamic modelling, analysis and optimization of numerous types of energy systems in various applications. It provides a new understanding of the system and the process of defining proper objective functions for determination of the most suitable design parameters for achieving enhanced efficiency, cost effectiveness and sustainability. Beginning with a general summary of thermodynamics, optimization techniques and optimization methods for thermal components, the book goes on to describe how to determine the most appropriate design parameters for more complex energy systems using various optimization methods. The results of each chapter provide potential tools for design, analysis, performance improvement, and greenhouse gas emissions reduction. Key features: Comprehensive coverage of the modelling, analysis and optimization of many energy systems for a variety of applications. Examples, practical applications and case studies to put theory into practice. Study problems at the end of each chapter that foster critical thinking and skill development. Written in an easy-to-follow style, starting with simple systems and moving to advanced energy systems and their complexities. A unique resource for understanding cutting-edge research in the thermodynamic analysis and optimization of a wide range of energy systems, Optimization of Energy Systems is suitable for graduate and senior undergraduate students, researchers, engineers, practitioners, and scientists in the area of energy systems.
Author:
Publisher:
Published: 1988
Total Pages: 384
ISBN-13:
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