<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
Aircraft Aerodynamic. Design Geometry and Optimization
โ Scribed by Andras Sobester, Alexander I J Forrester
- Publisher
- John Wiley & Sons
- Year
- 2014
- Tongue
- English
- Leaves
- 265
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
ะะทะดะฐะฝะธะต: John Wiley & Sons
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. This models objectives are to be flexible and concise, and capable of yielding a wide range of shapes with a minimum number of design variables. Moreover, the process of converting these variables into aircraft geometries must be robust. Alas, flexibility, conciseness and robustness can seldom be achieved simultaneously.
Aircraft Aerodynamic Design: Geometry and Optimization addresses this problem by navigating the subtle trade-offs between the competing objectives of geometry parameterization. It beginswith the fundamentals of geometry-centred aircraft design, followed by a review of the building blocks of computational geometries, the curve and surface formulations at the heart of aircraft geometry. The authors then cover a range of legacy formulations in the build-up towards a discussion of the most flexible shape models used in aerodynamic design (with a focus on lift generating surfaces). The book takes a practical approach and includes MATLABยฎ, Python and Rhinocerosยฎ code, as well as โreal-lifeโ example case studies.
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