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Table of Contents
Aerodynamics : objectives, fields of application and current challenges
Aerodynamic efforts. basic definitions
Thermodynamic reminders
Fundamental equations of fluid mechanics
Leading conservation equation applications
Dimensionless equations. parameters of similarity
Classification of flows
Fundamental concepts in fluid mechanics
Steady unidimensional, inviscid and adiabatic flows
Application to nozzle calculation
Unidimensional flows with friction and heat gain
Application of unidimensional theory to the calculation of ejectors
Breach surfaces: shock wave and flow line
Diagonal shock wave and shock polars
Shock crossings or interferences
Application of the shock wave theory to supersonic air intakes
2D steady supersonic flows and the theory of characteristics
The numeric characteristics method
Application to supersonic nozzle calculation
Flows with shock waves. rotational characteristics method
Unsteady unidimensional, inviscid and adiabatic flows
Unsteady shock wave, contact surface and wave reflections
Shock tube
Numeric methods for the calculation of unsteady flows
Some transonic flow properties.
Edition Notes
Includes bibliographical references and index.
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- Created January 3, 2011
- 2 revisions
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April 30, 2011 | Edited by OCLC Bot | Added OCLC numbers. |
January 3, 2011 | Created by ImportBot | Imported from Library of Congress MARC record |