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han je-chin; dutta sandip; ekkad srinath - gas turbine heat transfer and cooling technology

Gas Turbine Heat Transfer and Cooling Technology

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Dettagli

Genere:Libro
Lingua: Inglese
Editore:

CRC Press

Pubblicazione: 01/2013
Edizione: Edizione nuova, 2° edizione





Note Editore

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.




Sommario

FundamentalsNeed for Turbine Blade CoolingTurbine-Cooling TechnologyTurbine Heat Transfer and Cooling IssuesStructure of the BookReview Articles and Book Chapters on Turbine Cooling and Heat TransferNew Information from 2000 to 2010ReferencesTurbine Heat TransferIntroductionTurbine-Stage Heat TransferCascade Vane Heat-Transfer ExperimentsCascade Blade Heat TransferAirfoil Endwall Heat TransferTurbine Rotor Blade Tip Heat TransferLeading-Edge Region Heat TransferFlat-Surface Heat TransferNew Information from 2000 to 20102.10 ClosureReferencesTurbine Film CoolingIntroductionFilm Cooling on Rotating Turbine BladesFilm Cooling on Cascade Vane SimulationsFilm Cooling on Cascade Blade SimulationsFilm Cooling on Airfoil EndwallsTurbine Blade Tip Film CoolingLeading-Edge Region Film CoolingFlat-Surface Film CoolingDischarge Coefficients of Turbine Cooling Holes3.10 Film-Cooling Effects on Aerodynamic Losses3.11 New Information from 2000 to 20103.12 ClosureReferencesTurbine Internal CoolingJet Impingement CoolingRib-Turbulated CoolingPin-Fin CoolingCompound and New Cooling TechniquesNew Information from 2000 to 2010ReferencesTurbine Internal Cooling with RotationRotational Effects on CoolingSmooth-Wall Coolant PassageHeat Transfer in a Rib-Turbulated Rotating CoolantPassageEffect of Channel Orientation with Respect to the RotationDirection on Both Smooth and Ribbed ChannelsEffect of Channel Cross Section on Rotating Heat TransferDifferent Proposed Correlation to Relate the Heat Transferwith Rotational EffectsHeat-Mass-Transfer Analogy and Detail MeasurementsRotation Effects on Smooth-Wall Impingement CoolingRotational Effects on Rib-Turbulated Wall ImpingementCoolingNew Information from 2000 to 2010ReferencesExperimental MethodsIntroductionHeat-Transfer Measurement TechniquesMass-Transfer Analogy TechniquesLiquid Crystal ThermographyFlow and Thermal Field Measurement TechniquesNew Information from 2000 to 2010ClosureReferencesNumerical ModelingGoverning Equations and Turbulence ModelsNumerical Prediction of Turbine Heat TransferNumerical Prediction of Turbine Film CoolingNumerical Prediction of Turbine Internal CoolingNew Information from 2000 to 2010ReferencesFinal RemarksTurbine Heat Transfer and Film CoolingTurbine Internal Cooling with RotationTurbine Edge Heat Transfer and CoolingNew Information from 2000 to 2010ClosureIndex




Autore

Je-Chin Han is presently Distinguished Professor and holder of the Marcus C. Easterling Endowed Chair and Director of the Turbine Heat Transfer Laboratory at Texas A&M University. Srinath Ekkad is Associate Professor of Mechanical Engineering at Virginia Tech University. Dr. Dutta is an affiliate of General Electric Energy.










Altre Informazioni

ISBN:

9781439855683

Condizione: Nuovo
Dimensioni: 9.25 x 6.25 in Ø 2.90 lb
Formato: Copertina rigida
Illustration Notes:716 b/w images, 15 tables and 129 Equations, 1 in text box
Pagine Arabe: 887


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