STEEL WEIGHT AND STRUCTURAL SEISMIC PROPERTIES OF SUPERIOR DESIGN SOLUTIONS OF STEEL BUILDINGS WITH DIFFERENT SIZES AND OCCUPANCIES
Author:
Affiliation:
1. Graduate School of Urban Env. Sciences, Tokyo Metropolitan Univ.
2. Tokyo Metropolitan Univ.
3. Graduate School of Engineering, Kyoto Univ.
4. Structural Eng., Dept., Obayashi Corporation
Publisher
Architectural Institute of Japan
Link
https://www.jstage.jst.go.jp/article/aijs/89/823/89_1051/_pdf
Reference24 articles.
1. 1) K.Sawada, H.Shimizu, and A.Matsuo: The Comparative Study of Optimum Solutions and Seismic Responses between Minimum Cost Frames and Minimum Weight Frames Considering Steel Fabrication Cost, Journal of Structural and Construction Engineering (Transactions of AIJ), Vol.77, No.679, pp.1413-1420, 2012 (in Japanese) 澤田樹一郎, 清水斉, 松尾彰:鉄骨工場製作コストを考慮した最小コスト骨組と最小重量骨組の設計解と地震応答の比較研究, 日本建築学会構造系論文集, 第 77 巻, 第 679 号, pp.1413-1420, 2012.9
2. 2) L.Pavlovčič, A.Krajnc and D.Beg: Cost function analysis in the structural optimization of steel frames, Structural and Multidisciplinary Optimization, 28(4), pp.286-295, 2004.8
3. 3) M.Liua, Y.K.Wenb and Scott A.Burnsc: Life cycle cost oriented seismic design optimization of steel moment frame structures with risk-taking preference, Engineering Structures, 26(10), pp.1407–1421, 2004.8
4. 4) L.Xu, X.Yan and Z.Li: Development of BP-based seismic behavior optimization of RC and steel frame structures, Engineering Structures, Vol.164, pp214-229, 2018.6
5. 5) C.S.Pedamallu and L.Ozdamar: Investigating a hybrid simulated annealing and local search algorithm for constrained optimization, European Journal of Operational Research, 185(3), pp.1230-1245, 2008.2
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