Gas Turbine Combined Cycle Power Plants

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Gas Turbine Combined Cycle Power Plants

Author : S. Gülen
Publisher : CRC Press
Page : 545 pages
File Size : 47,7 Mb
Release : 2019-12-06
Category : Science
ISBN : 9780429521102

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Gas Turbine Combined Cycle Power Plants by S. Gülen Pdf

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).

Combined-cycle Gas & Steam Turbine Power Plants

Author : Rolf Kehlhofer
Publisher : PennWell Books
Page : 328 pages
File Size : 54,7 Mb
Release : 1999
Category : Technology & Engineering
ISBN : UOM:39015042951288

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Combined-cycle Gas & Steam Turbine Power Plants by Rolf Kehlhofer Pdf

This title provides a reference on technical and economic factors of combined-cycle applications within the utility and cogeneration markets. Kehlhofer - and hos co-authors give the reader tips on system layout, details on controls and automation, and operating instructions.

Gas Turbines for Electric Power Generation

Author : S. Can Gülen
Publisher : Cambridge University Press
Page : 735 pages
File Size : 50,7 Mb
Release : 2019-02-14
Category : Science
ISBN : 9781108416658

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Gas Turbines for Electric Power Generation by S. Can Gülen Pdf

Everything you wanted to know about industrial gas turbines for electric power generation in one source with hard-to-find, hands-on technical information.

Combined Power Plants

Author : J Horlock
Publisher : Elsevier
Page : 313 pages
File Size : 52,7 Mb
Release : 2013-04-25
Category : Technology & Engineering
ISBN : 9780323156547

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Combined Power Plants by J Horlock Pdf

Combined Power Plants

Gas-Turbine Power Generation

Author : Paul Breeze
Publisher : Academic Press
Page : 104 pages
File Size : 50,8 Mb
Release : 2016-02-24
Category : Technology & Engineering
ISBN : 9780128040553

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Gas-Turbine Power Generation by Paul Breeze Pdf

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

Handbook for Cogeneration and Combined Cycle Power Plants

Author : Meherwan P. Boyce
Publisher : American Society of Mechanical Engineers
Page : 584 pages
File Size : 41,7 Mb
Release : 2002
Category : Technology & Engineering
ISBN : UOM:39015053755719

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Handbook for Cogeneration and Combined Cycle Power Plants by Meherwan P. Boyce Pdf

This useful reference covers all major aspects of power plant design, operation, and maintenance. It covers cycle optimization and reliability, technical details on sizing, plant layout, fuel selection, types of drives, and performance characteristics of all major components in a cogeneration or combined cycle power plant. The author discusses design, fabrication, installation, operation, and maintenance. Many illustrations, curves, and tables are used throughout the text. Special features include: Comparison of various energy systems; latest cycles and power augmentation techniques; reviews and benefits of the latest codes; detailed analysis of available equipment; descriptions of all major equipment in CCPP; techniques for improving plant reliability and maintainability; testing and plant evaluation techniques; and advantages and disadvantages of fuels.

Conversion of Coal-Fired Power Plants to Cogeneration and Combined-Cycle

Author : Ryszard Bartnik,Zbigniew Buryn
Publisher : Springer Science & Business Media
Page : 158 pages
File Size : 40,7 Mb
Release : 2011-07-28
Category : Technology & Engineering
ISBN : 9780857298560

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Conversion of Coal-Fired Power Plants to Cogeneration and Combined-Cycle by Ryszard Bartnik,Zbigniew Buryn Pdf

Conversion of Coal-Fired Power Plant to Cogeneration and Combined-Cycle presents the methodology, calculation procedures and tools used to support enterprise planning for adapting power stations to cogeneration and combined-cycle forms. The authors analyze the optimum selection of the structure of heat exchangers in a 370 MW power block, the structure of heat recovery steam generators and gas turbines. Conversion of Coal-Fired Power Plant to Cogeneration and Combined-Cycle also addresses the problems of converting existing power plants to dual-fuel gas-steam combined-cycle technologies coupled with parallel systems. Conversion of Coal-Fired Power Plant to Cogeneration and Combined-Cycle is an informative monograph written for researchers, postgraduate students and policy makers in power engineering.

100 Years of Power Plant Development

Author : Heinz Termuehlen
Publisher : American Society of Mechanical Engineers
Page : 230 pages
File Size : 45,5 Mb
Release : 2001
Category : Religion
ISBN : UOM:39015054138568

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100 Years of Power Plant Development by Heinz Termuehlen Pdf

Overviews the thermodynamic design concepts behind the most common types of power generation plants. Termuehlen, who is retired from Siemens, shows how advances in power plant technologies--especially the large steam and gas turbine design--have improved the performance of power stations, and how problems have been overcome. Nuclear power, co-generation, combined-cycle, and coal gasification plants are described. The final chapter identifies available fuel sources, and examines the best technologies for converting fuel into electric power with the lowest adverse effect on the environment. c. Book News Inc.

Combined Power Plants

Author : J. H. Horlock
Publisher : Unknown
Page : 336 pages
File Size : 55,6 Mb
Release : 2002
Category : Technology & Engineering
ISBN : PSU:000049124033

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Combined Power Plants by J. H. Horlock Pdf

This volume provides detailed analysis of the basic thermodynamics and economic implications of combined power plants. It includes details of developments in Europe, the USA and Japan, and should be useful to practising engineers, policy-makers, and students in mechanical engineering.

Power Generation Technologies

Author : Paul Breeze
Publisher : Elsevier
Page : 288 pages
File Size : 44,8 Mb
Release : 2005-02-04
Category : Technology & Engineering
ISBN : 0080480101

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Power Generation Technologies by Paul Breeze Pdf

This book makes intelligible the wide range of electricity generating technologies available today, as well as some closely allied technologies such as energy storage. The book opens by setting the many power generation technologies in the context of global energy consumption, the development of the electricity generation industry and the economics involved in this sector. A series of chapters are each devoted to assessing the environmental and economic impact of a single technology, including conventional technologies, nuclear and renewable (such as solar, wind and hydropower). The technologies are presented in an easily digestible form. Different power generation technologies have different greenhouse gas emissions and the link between greenhouse gases and global warming is a highly topical environmental and political issue. With developed nations worldwide looking to reduce their emissions of carbon dioxide, it is becoming increasingly important to explore the effectiveness of a mix of energy generation technologies. Power Generation Technologies gives a clear, unbiased review and comparison of the different types of power generation technologies available. In the light of the Kyoto protocol and OSPAR updates, Power Generation Technologies will provide an invaluable reference text for power generation planners, facility managers, consultants, policy makers and economists, as well as students and lecturers of related Engineering courses. · Provides a unique comparison of a wide range of power generation technologies - conventional, nuclear and renewable · Describes the workings and environmental impact of each technology · Evaluates the economic viability of each different power generation system

Advanced Gas Turbine Cycles

Author : J.H. Horlock
Publisher : Elsevier
Page : 224 pages
File Size : 40,7 Mb
Release : 2013-10-22
Category : Technology & Engineering
ISBN : 9780080545561

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Advanced Gas Turbine Cycles by J.H. Horlock Pdf

Primarily this book describes the thermodynamics of gas turbine cycles. The search for high gas turbine efficiency has produced many variations on the simple "open circuit" plant, involving the use of heat exchangers, reheating and intercooling, water and steam injection, cogeneration and combined cycle plants. These are described fully in the text. A review of recent proposals for a number of novel gas turbine cycles is also included. In the past few years work has been directed towards developing gas turbines which produce less carbon dioxide, or plants from which the CO2 can be disposed of; the implications of a carbon tax on electricity pricing are considered. In presenting this wide survey of gas turbine cycles for power generation the author calls on both his academic experience (at Cambridge and Liverpool Universities, the Gas Turbine Laboratory at MIT and Penn State University) and his industrial work (primarily with Rolls Royce, plc.) The book will be essential reading for final year and masters students in mechanical engineering, and for practising engineers.

Combined Cycle Systems for Near-zero Emission Power Generation

Author : Ashok D. Rao
Publisher : Unknown
Page : 338 pages
File Size : 46,5 Mb
Release : 2012
Category : Gas-turbine power-plants
ISBN : 1628703709

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Combined Cycle Systems for Near-zero Emission Power Generation by Ashok D. Rao Pdf

With its distinguished editor and international team of contributors, this is a standard reference for both industry practitioners and academic researchers seeking to improve the efficiency and environmental impact of power plants. This book provides a comprehensive review of the design, engineering and operational issues of a range of advanced combined cycle plants; introduces basic combined cycle power plant and advanced gas turbine design and reviews the main types of combined cycle systems; discusses the technology, efficiency and emissions performance of natural gas-fired combined cycle (NGCC) systems and integrated gasification combined cycle (IGCC) systems, as well as novel humid air cycle systems and oxy-combustion turbine cycle systems. --

Combined Cycle Systems for Near-Zero Emission Power Generation

Author : Ashok D Rao
Publisher : Elsevier
Page : 357 pages
File Size : 47,5 Mb
Release : 2012-04-12
Category : Technology & Engineering
ISBN : 9780857096180

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Combined Cycle Systems for Near-Zero Emission Power Generation by Ashok D Rao Pdf

Combined cycle power plants are one of the most promising ways of improving fossil-fuel and biomass energy production. The combination of a gas and steam turbine working in tandem to produce power makes this type of plant highly efficient and allows for CO2 capture and sequestration before combustion. This book provides a comprehensive review of the design, engineering and operational issues of a range of advanced combined cycle plants. After introductory chapters on basic combined cycle power plant and advanced gas turbine design, the book reviews the main types of combined cycle system. Chapters discuss the technology, efficiency and emissions performance of natural gas-fired combined cycle (NGCC) and integrated gasification combined cycle (IGCC) as well as novel humid air cycle, oxy-combustion turbine cycle systems. The book also reviews pressurised fluidized bed combustion (PFBC), externally fired combined cycle (EFCC), hybrid fuel cell turbine (FC/GT), combined cycle and integrated solar combined cycle (ISCC) systems. The final chapter reviews techno-economic analysis of combined cycle systems. With its distinguished editor and international team of contributors, Combined cycle systems for near-zero emission power generation is a standard reference for both industry practitioners and academic researchers seeking to improve the efficiency and environmental impact of power plants. Provides a comprehensive review of the design, engineering and operational issues of a range of advanced combined cycle plants Introduces basic combined cycle power plant and advanced gas turbine design and reviews the main types of combined cycle systems Discusses the technology, efficiency and emissions performance of natural gas-fired combined cycle (NGCC) systems and integrated gasification combined cycle (IGCC) systems, as well as novel humid air cycle systems and oxy-combustion turbine cycle systems

Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants

Author : Bahman Zohuri,Patrick McDaniel
Publisher : Springer
Page : 395 pages
File Size : 54,7 Mb
Release : 2017-12-07
Category : Technology & Engineering
ISBN : 9783319705514

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Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants by Bahman Zohuri,Patrick McDaniel Pdf

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.

Generating Power at High Efficiency

Author : E Jeffs
Publisher : Elsevier
Page : 214 pages
File Size : 43,9 Mb
Release : 2008-04-24
Category : Business & Economics
ISBN : 9781845694548

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Generating Power at High Efficiency by E Jeffs Pdf

Combined cycle technology is used to generate power at one of the highest levels of efficiency of conventional power plants. It does this through primary generation from a gas turbine coupled with secondary generation from a steam turbine powered by primary exhaust heat. Generating power at high efficiency thoroughly charts the development and implementation of this technology in power plants and looks to the future of the technology, noting the advantages of the most important technical features – including gas turbines, steam generator, combined heat and power and integrated gasification combined cycle (IGCC) – with their latest applications. Reviews key developments in combined cycle technology Uses examples drawn from plants around the world Looks at how combined cycle technology can evolve to meet future energy needs