HRSGs for Fast-Starting Combined Cycle Plants Books

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HRSGs for Fast Starting Combined Cycle Plants


HRSGs for Fast Starting Combined Cycle Plants
  • Author : Akber Pasha
  • Publisher : Elsevier Science
  • Release : 2021-06-15
  • ISBN : 0128203587
  • Language : En, Es, Fr & De
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HSRGs for Fast-Starting Combined Cycle Plants discusses key design specifications, operational issues, plant monitoring, and maintenance techniques for fast start HSRGs as they follow design changes in gas turbines and the operational demands of users, and in a power environment increasingly relying on flexible baseload as a supplement to intermittent renewables. Opening with a description of the combined cycle plant components and operational principles, the work provides a definition and description of fast starting, exploring the reasons for its necessity, and the relationship between it and cycling in the HRSG. It reviews fast start impacts in key design and operating issues, ranging through mechanical integrity, operational control, HSRG component packaging, and effective emissions controls. It describes in detail steps necessary to gauge impacts on fast starts, suggesting solutions to eliminate or minimize the impact for an HRSG with a predictable optimum life, discussing design methodology for fast start HRSGs, instrumentation and control requirements, life consumption analysis, and balance of plant design management. It closes by considering key issues in the operation of fast-starting HRSGs, including operational control, operating protocols and strategy, monitoring programs, and predictive maintenance Outlines key requirements for specifying HRSGs for Fast-Starting Combined Cycle Plants Describes salient features of the design process to understand the impact of fast starts on critical components Explains the importance of proper operation protocol to preclude the possibility of premature failure Evaluates on-line monitoring tools to gauge HRSG critical component life consumption Provides detailed requirements for preparing effective specifications for HRSGs for fast-starting combined cycle plants Reviews design methodologies, analyses and guidelines for designing HRSGs Defines operation control protocols to avoid premature mechanical failures or performance deficiencies

Heat Recovery Steam Generator Technology


Heat Recovery Steam Generator Technology
  • Author : Vernon L. Eriksen
  • Publisher : Woodhead Publishing
  • Release : 2017-03-06
  • ISBN : 9780081019412
  • Language : En, Es, Fr & De
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Heat Recovery Steam Generator Technology is the first fully comprehensive resource to provide readers with the fundamental information needed to understand HRSGs. The book's highly experienced editor has selected a number of key technical personnel to contribute to the book, also including burner and emission control device suppliers and qualified practicing engineers. In the introduction, various types of HRSGs are identified and discussed, along with their market share. The fundamental principles of the technology are covered, along with the various components and design specifics that should be considered. Its simple organization makes finding answers quick and easy. The text is fully supported by examples and case studies, and is illustrated by photographs of components and completed power plants to further increase knowledge and understanding of HRSG technology. Presents the fundamental principles and theories behind HRSG technology that is supported by practical design examples and illustrations Includes practical applications of combined cycle power plants and waste recovery that are both fully covered and supported by optimization throughout the book Helps readers do a better job of specifying, procuring, installing, operating, and maintaining HRSGs

Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants


Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants
  • Author : Bahman Zohuri
  • Publisher : Springer
  • Release : 2017-12-07
  • ISBN : 9783319705514
  • Language : En, Es, Fr & De
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The second edition of this book includes the most up-to-date details on the advantages of Nuclear Air-Brayton Power Plant Cycles for advanced reactors. It demonstrates significant advantages for typical sodium cooled reactors and describes how these advantages will grow as higher temperature systems (molten salts) are developed. It also describes how a Nuclear Air-Brayton system can be integrated with significant renewable (solar and wind) energy systems to build a low carbon grid. Starting with basic principles of thermodynamics as applied to power plant systems, it moves on to describe several types of Nuclear Air-Brayton systems that can be employed to meet different requirements. It provides estimates of component sizes and performance criteria for Small Modular Reactors (SMR). This book has been revised to include updated tables and significant new results that have become available for intercooled systems in the time since the previous edition published. In this edition also, the steam tables have been updated and Chapters 9 and 10 have been rewritten to keep up with the most up-to- date technology and current research.

Gas Turbine Power Generation


Gas Turbine Power Generation
  • Author : Paul Breeze
  • Publisher : Academic Press
  • Release : 2016-02-24
  • ISBN : 9780128040553
  • Language : En, Es, Fr & De
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Gas-Turbine Power Generation is a concise, up-to-date, and readable guide providing an introduction to gas turbine power generation technology. It includes detailed descriptions of gas fired generation systems, demystifies the functions of gas fired technology, and explores the economic and environmental risk factors Engineers, managers, policymakers and those involved in planning and delivering energy resources will find this reference a valuable guide that will help them establish a reliable power supply as they also account for both social and economic objectives. Provides a concise, up-to-date, and readable guide on gas turbine power generation technology Focuses on the evolution of gas-fired power generation using gas turbines Evaluates the economic and environmental viability of the system with concise diagrams and accessible explanations

Gas Turbine Combined Cycle Power Plants


Gas Turbine Combined Cycle Power Plants
  • Author : S. Can Gülen
  • Publisher : CRC Press
  • Release : 2019-12-20
  • ISBN : 9780429534577
  • Language : En, Es, Fr & De
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This book covers the design, analysis, and optimization of the cleanest, most efficient fossil fuel-fired electric power generation technology at present and in the foreseeable future. The book contains a wealth of first principles-based calculation methods comprising key formulae, charts, rules of thumb, and other tools developed by the author over the course of 25+ years spent in the power generation industry. It is focused exclusively on actual power plant systems and actual field and/or rating data providing a comprehensive picture of the gas turbine combined cycle technology from performance and cost perspectives. Material presented in this book is applicable for research and development studies in academia and government/industry laboratories, as well as practical, day-to-day problems encountered in the industry (including OEMs, consulting engineers and plant operators).