Gas Turbines : Internal Flow Systems Modeling
Book Details
Format
Hardback or Cased Book
Book Series
Cambridge Aerospace Series
ISBN-10
1107170095
ISBN-13
9781107170094
Publisher
Cambridge University Press
Imprint
Cambridge University Press
Country of Manufacture
US
Country of Publication
GB
Publication Date
Sep 13th, 2018
Print length
372 Pages
Weight
918 grams
Dimensions
18.70 x 26.10 x 1.90 cms
Product Classification:
Thermodynamics & heatApplied physicsAerospace & aviation technology
Ksh 17,450.00
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This long-awaited, physics-first and design-oriented text describes and explains the underlying flow and heat transfer theory of secondary air systems while providing the corresponding mathematical modeling techniques of various components.
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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