This article reviews recent advances in the interdisciplinary area lying between artificial intelligence and the theory of argumentation. The article has two distinct foci: first, examining the ways in which argumentation has inspired new models of logical and computational intelligence, and second,
Recent advances in computational aerodynamics
β Scribed by Ramesh K. Agarwal; Jerry E. Desse
- Publisher
- Elsevier Science
- Year
- 1991
- Tongue
- English
- Weight
- 656 KB
- Volume
- 65
- Category
- Article
- ISSN
- 0010-4655
No coin nor oath required. For personal study only.
β¦ Synopsis
The current state of the art in computational aerodynamics is described. Recent advances in the discretization of surface geometry, grid generation, and flow simulation algorithms have led to flowfield predictions for increasingly complex and realistic configurations.
As a result, computational aerodynamics is emerging as a crucial enabling technology for the development and design of flight vehicles. Examples illustrating the current capability for the prediction of aircraft, launch vehicle and helicopter flowfields are presented. Unfortunately, accurate modeling of turbulence remains a major difficulty in the analysis of viscosity-dominated flows. In the future inverse design methods, multidisciplinary design optimization methods, artificial intelligence technology and massively parallel computer technology will be incorporated into computational aerodynamics, opening up greater opportunities for improved product design at substantially reduced costs.
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Recent emphasis on reduction of design cycle time and cost in the design of commercial aircraft (P.E.
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