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Gas Turbines: Internal Flow Systems Modeling: Cambridge Aerospace Series, cartea 44

Autor Bijay Sultanian
en Limba Engleză Hardback – 12 sep 2018
This long-awaited, physics-first and design-oriented text describes and explains the underlying flow and heat transfer theory of secondary air systems. An applications-oriented focus throughout the book provides the reader with robust solution techniques, state-of-the-art three-dimensional computational fluid dynamics (CFD) methodologies, and examples of compressible flow network modeling. It clearly explains elusive concepts of windage, non-isentropic generalized vortex, Ekman boundary layer, rotor disk pumping, and centrifugally-driven buoyant convection associated with gas turbine secondary flow systems featuring rotation. The book employs physics-based, design-oriented methodology to compute windage and swirl distributions in a complex rotor cavity formed by surfaces with arbitrary rotation, counter-rotation, and no rotation. This text will be a valuable tool for aircraft engine and industrial gas turbine design engineers as well as graduate students enrolled in advanced special topics courses.
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Specificații

ISBN-13: 9781107170094
ISBN-10: 1107170095
Pagini: 372
Dimensiuni: 161 x 259 x 21 mm
Greutate: 0.98 kg
Editura: Cambridge University Press
Colecția Cambridge University Press
Seria Cambridge Aerospace Series

Locul publicării:New York, United States

Cuprins

1. Overview of gas turbines for propulsion and power generation; 2. Review of thermodynamics, fluid mechanics, and heat transfer; 3. 1-D flow and network modeling; 4. Internal flow around rotors and stators; 5. Labyrinth seals; 6. Whole engine modeling.

Recenzii

'… it delivers a good reference text for the bookshelves of engineers practicing in this subject.' Dr. Adrian Spencer, The Aeronautical Journal

Notă biografică


Descriere

This physics-first, design-oriented textbook explains concepts of gas turbine secondary flows, reduced-order modeling methods, and 3-D CFD.