4.6 Article

Optimal Design of Semirigid Connection Steel Frame with Steel Plate Shear Walls Using Dolphin Echolocation Algorithm

期刊

BUILDINGS
卷 12, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/buildings12101735

关键词

optimal design; semirigid connection steel frame; steel plate shear wall; dolphin echolocation algorithm; lateral stiffness

资金

  1. National Natural Science Foundation of China [51978279, 52108145]
  2. Guangdong Basic and Applied Basic Research Foundation [2020A1515011307, 2021B1212040003, 2021A1515010610]

向作者/读者索取更多资源

The study applies a newly developed optimization algorithm based on dolphin echolocation behavior to optimize the semirigid connection steel frames with steel plate shear walls. The results demonstrate the effectiveness of this method in optimizing the cost and performance of the steel frames.
Steel frame with steel plate shear walls (SPSWs) is used to resist lateral loads caused by wind and earthquakes in high-rise buildings. In this load-resisting system, the cost and performance are more efficient than in the moment frame system. Behaviors of beam-to-column connections are assumed to be pinned or fixed to simplify the calculation in the past few decades. However, studies have stated that such a simulation fails to reveal the response of beam-to-column connections. In this paper, a newly developed metaheuristic optimization algorithm-the dolphin echolocation algorithm (DE)-based on foraging prey using echolocation in dolphins is applied as the present study optimizer. Two different two-dimensional semirigid connection steel frames with SPSWs are optimized to obtain the minimum cost of semirigid connection steel frame with steel plate shear walls with constraints to element stresses and story drift ratio according to the American Institute of Steel Construction (AISC) Load and Resistance Factor Design (LFRD). SPSW is modeled as a brace with equivalent lateral stiffness, while the P - Delta effects are considered in the steel frame. Semirigid connections are used to reveal the actual responses of beam-to-column connections. The results demonstrate the proposed method's effectiveness for optimizing semirigid connection steel frames with SPSWs and the interaction between semirigid connections and the SPSWs.

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