Knowledge Discovery for Transonic Regional-Jet Wing through Multidisciplinary Design Exploration
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概要
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Data mining is an important facet of solving multi-objective optimization problem. Because it is one of the effective manner to discover the design knowledge in the multi-objective optimization problem which obtains large data. In the present study, data mining has been performed for a large-scale and real-world multidisciplinary design optimization (MDO) to provide knowledge regarding the design space. The MDO among aerodynamics, structures, and aeroelasticity of the regional-jet wing was carried out using high-fidelity evaluation models on the adaptive range multi-objective genetic algorithm. As a result, nine non-dominated solutions were generated and used for tradeoff analysis among three objectives. All solutions evaluated during the evolution were analyzed for the tradeoffs and influence of design variables using a self-organizing map to extract key features of the design space. Although the MDO results showed the inverted gull-wings as non-dominated solutions, one of the key features found by data mining was the non-gull wing geometry. When this knowledge was applied to one optimum solution, the resulting design was found to have better performance compared with the original geometry designed in the conventional manner.
著者
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Chiba Kazuhisa
Japan Aerospace Exploration Agency
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MORINO Hiroyuki
Mitsubishi Heavy Industries, Ltd.
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Morino Hiroyuki
Mitsubishi Heavy Industries Ltd.
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OBAYASHI Shigeru
Tohoku University
関連論文
- Multi-Objective Design Exploration and Its Application to Regional-Jet Wing Design
- Drag Reduction of a Bluff-Body using Design of Experiments
- Knowledge Discovery in Multidisciplinary Design Space for Regional-Jet Wings Using Data Mining
- Multidisciplinary Design Exploration for Transonic Regional-Jet Wing Shape
- Knowledge Discovery for Transonic Regional-Jet Wing through Multidisciplinary Design Exploration
- PSO/GA Hybrid Method and Its Application to Supersonic-Transport Wing Design