Flow in a Rotating Square Serpentine Coolant Passage with Skewed Trips

Flow in a Rotating Square Serpentine Coolant Passage with Skewed Trips
Title Flow in a Rotating Square Serpentine Coolant Passage with Skewed Trips PDF eBook
Author David G. N. Tse
Publisher
Pages 0
Release 1997
Genre
ISBN

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Presented at the International Gas Turbine & Aeroegine Congress & Exhibition, Orlando, FL, Jun 2-Jun 5, 1997.

Flow in Rotating Serpentine Coolant Passages With Skewed Trip Strips

Flow in Rotating Serpentine Coolant Passages With Skewed Trip Strips
Title Flow in Rotating Serpentine Coolant Passages With Skewed Trip Strips PDF eBook
Author
Publisher
Pages 172
Release 1996
Genre
ISBN

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Flow in Serpentine Coolant Passages with Trip Strips

Flow in Serpentine Coolant Passages with Trip Strips
Title Flow in Serpentine Coolant Passages with Trip Strips PDF eBook
Author National Aeronautics and Space Adm Nasa
Publisher Independently Published
Pages 38
Release 2019
Genre
ISBN 9781792727153

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Under the subject contract, an effort is being conducted at Scientific Research Associates, Inc. (SRA) to obtain flow field measurements in the coolant passage of a rotating turbine blade with ribbed walls, both in the stationary and rotating frames. The data obtained will be used for validation of computational tools and assessment of turbine blade cooling strategies. The configuration of the turbine blade passage model is given, and the measuring plane locations are given. The model has a four-pass passage with three 180 turns. This geometry was chosen to allow analyses of the velocity measurements corresponding to the heat transfer results obtained by Wagner. Two passes of the passage have a rectangular cross-section of 1.0 in x 0.5 in. Another two passes have a square cross-section of 0.5 in x 0.5 in. Trips with a streamwise pitch to trip height (P/e) = 5 and trip height to coolant passage width (e/Z) = 0.1, were machined along the leading and trailing walls. These dimensions are typical of those used in turbine blade coolant passages. The trips on these walls are staggered by the half-pitch. The trips are skewed at +/- 45 deg, and this allows the effect of trip orientation to be examined. Experiments will be conducted with flow entering the model through the 1.0 in x 0.5 in rectangular passage (Configuration C) and the 0.5 in x 0. 5 in square passage (Configuration D) to examine the effect of passage aspect ratio. Velocity measurements were obtained with a Reynolds number (Re) of 25,000, based on the hydraulic diameter of and bulk mean velocity in the half inch square passage. The coordinate system used in presenting the results for configurations C and D, respectively, is shown. The first, second and third passes of the passage will be referred to as the first, second and third passages, respectively, in later discussion. Streamwise distance (x) from the entrance is normalized by the hydraulic diameter (D). Vertical (y) and tangential (z) distances are normali...

Gas Turbine Heat Transfer and Cooling Technology, Second Edition

Gas Turbine Heat Transfer and Cooling Technology, Second Edition
Title Gas Turbine Heat Transfer and Cooling Technology, Second Edition PDF eBook
Author Je-Chin Han
Publisher CRC Press
Pages 892
Release 2012-11-27
Genre Science
ISBN 1439855684

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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.

ASME Technical Papers

ASME Technical Papers
Title ASME Technical Papers PDF eBook
Author
Publisher
Pages 488
Release 2001
Genre Mechanical engineering
ISBN

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Effects of Rotation on Coolant Passage Heat Transfer. Volume 2: Coolant Passages with Trips Normal and Skewed to the Flow

Effects of Rotation on Coolant Passage Heat Transfer. Volume 2: Coolant Passages with Trips Normal and Skewed to the Flow
Title Effects of Rotation on Coolant Passage Heat Transfer. Volume 2: Coolant Passages with Trips Normal and Skewed to the Flow PDF eBook
Author
Publisher
Pages 132
Release 1993
Genre
ISBN

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Heat Transfer in Rotating Serpentine Passages with Selected Model Orientation for Smooth Or Skewed Trip Walls

Heat Transfer in Rotating Serpentine Passages with Selected Model Orientation for Smooth Or Skewed Trip Walls
Title Heat Transfer in Rotating Serpentine Passages with Selected Model Orientation for Smooth Or Skewed Trip Walls PDF eBook
Author
Publisher
Pages 14
Release 1993
Genre Heat
ISBN

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