Heat Recovery Steam Generators

Heat Recovery Steam Generators
Author: D. James Benton
Publisher:
Total Pages: 108
Release: 2019-09-04
Genre:
ISBN: 9781691029365

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Heat recovery steam generators (HRSGs) are an integral part of any modern combined cycle power plant. These heat exchangers are designed to recover the heat from a gas turbine exhaust and convert this to steam, which drives a turbine and ultimately a second generator. Because the gas turbine operates efficiently at high temperatures and heat is removed down to nearly ambient temperature, the overall efficiency of this complex design exceeds that of conventional Rankine cycle coal-, oil-, or gas-fired systems. These systems can also be operated in simple or combined cycle, increasing flexibility and response to load dispatch. HRSG can be complex to analyze and also difficult to effectively test and prove their performance. This text covers both theory and testing in practice with examples.

Induced Draft Heat Recovery Steam Generator

Induced Draft Heat Recovery Steam Generator
Author: D. R. Biggers
Publisher:
Total Pages: 0
Release: 1989
Genre: Combined cycle power plants
ISBN:

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Heat recovery steam generators (HRSGs) are receiving increased interest for electric power generation through their roe on combined-cycle plants. Oklahoma Gas & Electric (OG&E) is currently installing an induced draft HRSG that will be the first installation of its kind. The plant will generate electricity for OG&E's grid and export steam to an industrial facility. In order to provide a reliable steam supply with the combustion turbines (CTs) out of service, ductburners are being installed. When the CTs are out of service, induced draft (ID) fans will provide combustion air to the ductburners. The ID fans will also reduce the backpressure on the CTs. This paper reviews the design considerations that resulted in an induced draft HRSG design.

Heat Recovery Steam Generator Technology

Heat Recovery Steam Generator Technology
Author:
Publisher:
Total Pages: 346
Release: 2018-05
Genre:
ISBN: 9781642240269

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The current development in the power generation industry is of increasing demand for combined cycles with improved efficiency and reduced delivery time. Improved efficiency reduces the fuel related cost and, at the same time, contributes to the resolution of the greenhouse effect. Heat Recovery Steam Generators (HRSG) are key components in the combined cycle. Following a market trend towards extensive cycling operation and combined cycles of increasing size with gas turbines of improved technology having higher exhaust gas temperatures and flow rates, and new design option has become interesting in the recent years and has been taken into account as a possible advancement for the HRSG technology.This book covers the recent reviews and studies dealing with the fundamental principles and theories behind Heat Recovery Steam Generator technology that is supported by practical design examples and illustrations. It describes the main features of and highlights the most relevant advantages that HRSG units based on this concept offer compared to Drum Type units. This edition is of interest for plant engineers, technicians and operators, consultants, engineering contractors, construction firms, and university libraries as well as for those planning cogeneration projects makes important decisions about the system and performance related aspects.

Industrial Boilers and Heat Recovery Steam Generators

Industrial Boilers and Heat Recovery Steam Generators
Author: V. Ganapathy
Publisher: CRC Press
Total Pages: 650
Release: 2002-10-16
Genre: Technology & Engineering
ISBN: 9780203910221

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Filled with over 225 boiler/HRSG operation and design problems, this book covers steam generators and related systems used in process plants, refineries, chemical plants, electrical utilities, and other industrial settings. Emphasizing the thermal engineering aspects, the author provides information on the design and performance of steam generators

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
Total Pages: 407
Release: 2017-12-07
Genre: Technology & Engineering
ISBN: 3319705512

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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.

Application of Compact Heat Exchangers For Combined Cycle Driven Efficiency In Next Generation Nuclear Power Plants

Application of Compact Heat Exchangers For Combined Cycle Driven Efficiency In Next Generation Nuclear Power Plants
Author: Bahman Zohuri
Publisher: Springer
Total Pages: 379
Release: 2015-11-19
Genre: Technology & Engineering
ISBN: 3319235370

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Covers the fundamentals of combined-cycle plants to provide background for understanding the progressive design approaches at the heart of the text Discusses the types of compact heat exchanger surfaces, suggesting novel designs that can be considered for optimal cost effectiveness and maximum energy production Undertakes the thermal analysis of these compact heat exchangers throughout the life cycle, from the design perspective through operational and safety assurance stages This book describes the quest to create novel designs for compact heat exchangers in support of emergent combined cycle nuclear plants. The text opens with a concise explanation of the fundamentals of combined cycles, describing their efficiency impacts on electrical power generation systems. It then covers the implementation of these principles in nuclear reactor power systems, focusing on the role of compact heat exchangers in the combined cycle loop and applying them to the challenges facing actual nuclear power systems. The various types of compact heat exchanger surfaces and designs are given thorough consideration before the author turns his attention to discussing current and projected reactor systems, and how the novel design of these compact heat e xchangers can be applied to innovative designs, operation and safety analyses to optimize thermal efficiency. The book is written at an undergraduate level, but will be useful to practicing engineers and scientists as well.

Integrated Gasification Combined Cycle (IGCC) Technologies

Integrated Gasification Combined Cycle (IGCC) Technologies
Author: Ting Wang
Publisher: Woodhead Publishing
Total Pages: 929
Release: 2016-11-26
Genre: Technology & Engineering
ISBN: 0081001851

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Integrated Gasification Combined Cycle (IGCC) Technologies discusses this innovative power generation technology that combines modern coal gasification technology with both gas turbine and steam turbine power generation, an important emerging technology which has the potential to significantly improve the efficiencies and emissions of coal power plants. The advantages of this technology over conventional pulverized coal power plants include fuel flexibility, greater efficiencies, and very low pollutant emissions. The book reviews the current status and future developments of key technologies involved in IGCC plants and how they can be integrated to maximize efficiency and reduce the cost of electricity generation in a carbon-constrained world. The first part of this book introduces the principles of IGCC systems and the fuel types for use in IGCC systems. The second part covers syngas production within IGCC systems. The third part looks at syngas cleaning, the separation of CO2 and hydrogen enrichment, with final sections describing the gas turbine combined cycle and presenting several case studies of existing IGCC plants. Provides an in-depth, multi-contributor overview of integrated gasification combined cycle technologies Reviews the current status and future developments of key technologies involved in IGCC plants Provides several case studies of existing IGCC plants around the world