<p>Optimal aircraft design is impossible without a parametric representation of the geometry of the airframe. We need a mathematical model equipped with a set of controls, or design variables, which generates different candidate airframe shapes in response to changes in the values of these variables
Recent Development of Aerodynamic Design Methodologies: Inverse Design and Optimization
β Scribed by Carlo Poloni (auth.), Kozo Fujii, George S. Dulikravich (eds.)
- Publisher
- Vieweg+Teubner Verlag
- Year
- 1999
- Tongue
- English
- Leaves
- 227
- Series
- Notes on Numerical Fluid Mechanics (NNFM) 65
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
Computational Fluid Dynamics (CFD) has made remarkable progress in the last two decades and is becoming an important, if not inevitable, analytical tool for both fundamental and practical fluid dynamics research. The analysis of flow fields is important in the sense that it improves the researcher's understanding of the flow features. CFD analysis also indirectly helps the design of new aircraft and/or spacecraft. However, design methodologies are the real need for the development of aircraft or spacecraft. They directly contribute to the design process and can significantly shorten the design cycle. Although quite a few publications have been written on this subject, most of the methods proposed were not used in practice in the past due to an immature research level and restrictions due to the inadequate computing capabilities. With the progress of high-speed computers, the time has come for such methods to be used practically. There is strong evidence of a growing interest in the development and use of aerodynamic inverse design and optimization techniques. This is true, not only for aerospace industries, but also for any industries requiring fluid dynamic design. This clearly shows the matured engineering need for optimum aerodynamic shape design methodologies. Therefore, it seems timely to publish a book in which eminent researchers in this area can elaborate on their research efforts and discuss it in conjunction with other efforts.
β¦ Table of Contents
Front Matter....Pages i-xi
Multi Objective Aerodynamic Optimisation by Means of Robust and Efficient Genetic Algorithm....Pages 1-24
Inverse Optimization Method for Aerodynamic Shape Design....Pages 25-53
Subsonic Aerodynamic Design Via Optimization....Pages 55-70
Parametric Airfoils and Wings....Pages 71-87
Using Existing Flow-Field Analysis Codes for Inverse Design of Three-Dimentional Aerodynamic Shapes....Pages 89-112
Numerical Methods for Inverse Solution in Aerodynamic Design of Turbomachinery....Pages 113-145
Inverse Blade Design Based on Permeable Wall Concept....Pages 147-177
An Inverse Design Method for Wings Using Integral Equations and Its Recent Progress....Pages 179-209
Application of Transonic Inverse Method to the Development of Aerospace Products....Pages 211-214
Aerodynamic Design of Wing-Engine Configuration under Effect of Jet Plume....Pages 215-220
Back Matter....Pages 221-221
β¦ Subjects
Engineering, general
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