設計工学・システム部門講演会講演論文集
Online ISSN : 2424-3078
セッションID: 2204
会議情報
2204 シェル構造の表面と境界に対する2段階形状最適化手法(OS6-1 設計と最適化I)
劉 陽下田 昌利
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会議録・要旨集 フリー

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抄録
In this paper, a two-stage parameter-free, or node-based shape optimization methodology is presented for designing the smooth optimal shape of a shell structure concerning stiffness maximization problem subject to a volume constraint. With this methodology, the optimization design problem of a shell structure is divided into two stages, which are a surface optimization stage and a boundary optimization stage. The shape sensitivity, called shape gradient function, is theoretically derived for both stages using the Lagrange multiplier method and the formula of the material derivative. The optimal shape is determined by applying the derived each shape gradient functions on a design surface or boundaries to the multi-stage free-form optimization method, or a H^1 gradient method. By this method, a weight reduced shell with high performance can be obtained, while maintaining the smooth surface and boundaries. Several calculated examples are presented to verify the validity and practical utility of the proposed methodology.
著者関連情報
© 2012 一般社団法人 日本機械学会
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