TOPOLOGY OPTIMIZATION OF LATTICED SHELLS SOLVED AS DC PROGRAMMING PROBLEM
Author:
Affiliation:
1. Dept. of Architecture, Faculty of Environmental Eng., The University of Kitakyushu
Publisher
Architectural Institute of Japan
Link
https://www.jstage.jst.go.jp/article/aijs/89/817/89_286/_pdf
Reference20 articles.
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2. 2) K. Kosaka, S. Matsumoto, and D. Fujii : Topology optimization of frame structures using ESO method and ground structure method, Journal of Structural and Construction Engineering (Transactions of AIJ), Vol. 81, No. 721, pp. 547–553, 2016. 3 (in Japanese) 高坂憲治, 松本慎也, 藤井大地: ESO 法とグランドストラクチャ法を用いた骨組構造物の位相最適化, 日本建築学会構造系論文集, Vol. 81, No. 721, pp. 547–553, 2016. 3 (DOI https://doi.org/10.3130/aijs.81.547 )
3. 3) M. Ohsaki : Local search for multiobjective optimization of steel frames, Journal of Structural and Construction Engineering (Transactions of AIJ), Vol. 73, No. 634, pp. 2135–2141, 2008. 12 (in Japanese) 大崎純: 局所探索法による鋼構造骨組の多目的最適化, 日本建築学会構造系論文集, Vol. 73, No. 634, pp. 2135–2141, 2008. 12 (DOI https://doi.org/10.3130/aijs.73.2135 )
4. 4) N. Tamura and H. Ohmori : Supporting system for structural design of steel frame structures by using multi-objective optimization method: Part1 Allowable stress design, Journal of Structural and Construction Engineering (Transactions of AIJ), Vol. 73, No. 628, pp. 891–897, 2008. 6 (in Japanese) 田村尚土, 大森博司: 多目的最適化法による鋼構造物の構造設計支援手法の提案: その1 許容応力度等設計における最適設計法, 日本建築学会構造系論文集, Vol. 73, No. 628, pp. 891–897, 2008. 6 (DOI https://doi.org/10.3130/aijs.73.891 )
5. 5) N. Tamura and H. Ohmori : Supporting scheme for structural design of steel frame structures by using multi-objective optimization method: Part2 Optimal design for horizontal load-carrying capacity, Journal of Structural and Construction Engineering (Transactions of AIJ), Vol. 74, No. 643, pp. 1671–1676, 2009. 9 (in Japanese) 田村尚土, 大森博司: 多目的最適化法による鋼構造物の構造設計支援手法の提案: その2 保有耐力設計に基づく最適設計法, 日本建築学会構造系論文集, Vol. 74, No. 643, pp. 1671–1676, 2009. 9 (DOI https://doi.org/10.3130/aijs.74.1671 )
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