Advances in Steam Turbines for Modern Power Plants 2nd Edition by Tadashi Tanuma- Ebook PDF Instant Download/Delivery:9780323915519, 0323915515
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Product details:
ISBN 10: 0323915515
ISBN 13: 9780323915519
Author: Tadashi Tanuma
Advances in Steam Turbines for Modern Power Plants, second edition, provides a fully revised and updated comprehensive review of steam turbine design, optimization, analysis and measurement. Editor Tadashi Tanuma and his team of expert contributors from around the globe have updated each chapter to reflect the latest research and experiences in the field, to help progress thermal power generation to meet sustainability goals. This book presents modern technologies for the design and development of steam turbines that supply affordable, reliable and stable power with much lower CO2 emissions.
With the addition of two new chapters on ‘Steam turbine mechanical design and analysis for high temperature, large and rapid change of temperature conditions’ and ‘Steam valves with low pressure losses’ this edition will support students, researchers and professional engineers in designing and developing their own economical and environmentally concerned thermal power plants.
- Fully updated to include the latest research and examples from around the globe
- Includes brand new chapters, case studies, photographs, data, analysis and models
- Chapters on the design and development of Steam Turbines are written by experienced design engineers who provide first-hand experience and lessons learned.
Advances in Steam Turbines for Modern Power Plants 2nd Table of contents:
Part I: Steam Turbine Cycles and Cycle Design Optimization
1. Introduction to steam turbines for power plants
Abstract
1.1 Features of steam turbines
1.2 Roles of steam turbines in power generation
1.3 Technology trends of steam turbines
1.4 The aim of this book
References
2. Steam turbine cycles and cycle design optimization: the Rankine cycle, thermal power cycles, and integrated gasification-combined cycle power plants
Abstract
2.1 Introduction
2.2 Basic cycles of steam turbine plants
2.3 Types of steam turbines
2.4 Various steam turbine cycles and technologies to improve thermal efficiency
2.5 Conclusion
References
3. Steam turbine cycles and cycle design optimization: advanced ultra-supercritical thermal power plants and nuclear power plants
Abstract
3.1 Introduction
3.2 Advanced ultra-supercritical thermal power plants
3.3 Nuclear power plants
3.4 Conclusion
Acknowledgments
References
4. Steam turbine cycles and cycle design optimization: combined cycle power plants
Abstract
4.1 Definitions
4.2 Introduction to combined cycle power plants
4.3 Combined cycle thermodynamics
4.4 Markets served
4.5 Major plant systems overview
4.6 Combined cycles trends
4.7 Conclusion
References
5. Steam turbine life cycle cost evaluations and comparison with other power systems
Abstract
5.1 Introduction
5.2 Cost estimation and comparison with other power systems
5.3 Technological learning
5.4 The modeling of technological learning
5.5 Conclusions
References
Part II: Steam Turbine Analysis, Measurement and Monitoring for Design Optimization
6. Design and analysis for aerodynamic efficiency enhancement of steam turbines
Abstract
6.1 Introduction
6.2 Overview of losses in steam turbines
6.3 Overview of aerodynamic design of steam turbines
6.4 Design and analysis for aerodynamic efficiency enhancement
6.5 Future trends
6.6 Conclusions
References
7. Mechanical design and vibration analysis of steam turbine blades
Abstract
7.1 Categories of steam turbine blade vibration
7.2 Mechanical design of the blade
7.3 Measurement and guideline for blade vibration
Reference
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