Impingement Jet Cooling in Gas Turbines

Impingement Jet Cooling in Gas Turbines
Author: R.S. Amano,B. Sundén
Publsiher: WIT Press
Total Pages: 253
Release: 2014-05-28
Genre: Science
ISBN: 9781845649067

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Due to the requirement for enhanced cooling technologies on modern gas turbine engines, advanced research and development has had to take place in field of thermal engineering. Among the gas turbine cooling technologies, impingement jet cooling is one of the most effective in terms of cooling effectiveness, manufacturability and cost. The chapters contained in this book describe research on state-of-the-art and advanced cooling technologies that have been developed, or that are being researched, with a variety of approaches from theoretical, experimental, and CFD studies. The authors of the chapters have been selected from some of the most active researchers and scientists on the subject. This is the first to book published on the topics of gas turbines and heat transfer to focus on impingement cooling alone.

Gas Turbine Heat Transfer and Cooling Technology Second Edition

Gas Turbine Heat Transfer and Cooling Technology  Second Edition
Author: Je-Chin Han,Sandip Dutta,Srinath Ekkad
Publsiher: CRC Press
Total Pages: 892
Release: 2012-11-27
Genre: Science
ISBN: 9781439855683

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A comprehensive reference for engineers and researchers, Gas Turbine Heat Transfer and Cooling Technology, Second Edition has been completely revised and updated to reflect advances in the field made during the past ten years. The second edition retains the format that made the first edition so popular and adds new information mainly based on selected published papers in the open literature. See What’s New in the Second Edition: State-of-the-art cooling technologies such as advanced turbine blade film cooling and internal cooling Modern experimental methods for gas turbine heat transfer and cooling research Advanced computational models for gas turbine heat transfer and cooling performance predictions Suggestions for future research in this critical technology The book discusses the need for turbine cooling, gas turbine heat-transfer problems, and cooling methodology and covers turbine rotor and stator heat-transfer issues, including endwall and blade tip regions under engine conditions, as well as under simulated engine conditions. It then examines turbine rotor and stator blade film cooling and discusses the unsteady high free-stream turbulence effect on simulated cascade airfoils. From here, the book explores impingement cooling, rib-turbulent cooling, pin-fin cooling, and compound and new cooling techniques. It also highlights the effect of rotation on rotor coolant passage heat transfer. Coverage of experimental methods includes heat-transfer and mass-transfer techniques, liquid crystal thermography, optical techniques, as well as flow and thermal measurement techniques. The book concludes with discussions of governing equations and turbulence models and their applications for predicting turbine blade heat transfer and film cooling, and turbine blade internal cooling.

Gas Turbine Blade Cooling

Gas Turbine Blade Cooling
Author: Chaitanya D Ghodke
Publsiher: SAE International
Total Pages: 238
Release: 2018-12-10
Genre: Technology & Engineering
ISBN: 9780768095029

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Gas turbines play an extremely important role in fulfilling a variety of power needs and are mainly used for power generation and propulsion applications. The performance and efficiency of gas turbine engines are to a large extent dependent on turbine rotor inlet temperatures: typically, the hotter the better. In gas turbines, the combustion temperature and the fuel efficiency are limited by the heat transfer properties of the turbine blades. However, in pushing the limits of hot gas temperatures while preventing the melting of blade components in high-pressure turbines, the use of effective cooling technologies is critical. Increasing the turbine inlet temperature also increases heat transferred to the turbine blade, and it is possible that the operating temperature could reach far above permissible metal temperature. In such cases, insufficient cooling of turbine blades results in excessive thermal stress on the blades causing premature blade failure. This may bring hazards to the engine's safe operation. Gas Turbine Blade Cooling, edited by Dr. Chaitanya D. Ghodke, offers 10 handpicked SAE International's technical papers, which identify key aspects of turbine blade cooling and help readers understand how this process can improve the performance of turbine hardware.

Heat Transfer in Gas Turbines

Heat Transfer in Gas Turbines
Author: Bengt Sundén,Mohammad Faghri
Publsiher: Witpress
Total Pages: 544
Release: 2001
Genre: Medical
ISBN: UOM:39015054381531

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This title presents and reflects current active research on various heat transfer topics and related phenomena in gas turbine systems. It begins with a general introduction to gas turbine heat transfer, before moving on to specific areas.

Heat Transfer in Gas Turbine Systems

Heat Transfer in Gas Turbine Systems
Author: Richard J. Goldstein
Publsiher: Unknown
Total Pages: 0
Release: 2001
Genre: Calorimetry
ISBN: 1573313289

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Explores recent developments in heat transfer and thermal control applied to modern high-temperature gas turbine systems. It examines experimental results and techniques computational studies and methods and design recommendations. Aspects of heat transfer in rotating machinery are studied as well as thermal aspects of other sections of the turbine (e.g. the compressor). Proceedings of an August 2000 conference.

Crossflow Effects on Impingement Cooling of a Turbine Vane

Crossflow Effects on Impingement Cooling of a Turbine Vane
Author: Anonim
Publsiher: Unknown
Total Pages: 28
Release: 1974
Genre: Cascades (Fluid dynamics)
ISBN: UIUC:30112106612689

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Cooling of Gas Turbines

Cooling of Gas Turbines
Author: W. Byron Brown,John N. B. Livingood
Publsiher: Unknown
Total Pages: 26
Release: 1948
Genre: Aeronautics
ISBN: UOM:39015086433185

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Cooling of Gas Turbines

Cooling of Gas Turbines
Author: W. Byron Brown,John N. B. Livingood
Publsiher: Unknown
Total Pages: 32
Release: 1947
Genre: Aeronautics
ISBN: UOM:39015086433201

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