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The Tallest Modular Tower Design Using a Performance Based Approach

机译:使用基于性能的方法进行最高的模块化塔式设计

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When completed in 2019, 2044 Franklin St. in Oakland, CA, will be the tallest structure in the U.S. utilizing prefabricated prefinished volumetric construction (PPVC) as an alternative to conventional construction methods. A vertically integrated team of AEC professionals in collaboration with manufacturing experts designed a modular system suitable for a mixed-use tower of this size. The structural engineering team developed a unique structural system comprising a steel plate shear wall (SPSW) core supplemented with buckling restrained brace (BRB) outriggers to provide a ductile response to severe West Coast earthquakes. This structural system not only complied with the architectural and rentable space requirements, but also helped to maximize off-site construction and to minimize the on-site labor work. The use of performance based design in conjunction with full-scale testing of some of the critical structural components helped to establish a compatible lateral story drift ratio of up to 2.75% at MCE level for the modular gravity space frame. The primary energy dissipation mechanism is envisioned to be a combination of steel plate shear wall post-buckling tension field action and BRB yielding. The proposed structural system translated to substantial material savings up to 30% and improved the construction speed by 6 months compared to conventional structural systems and construction methods.
机译:到2019年完工后,位于加利福尼亚州奥克兰的2044 Franklin St.将成为美国最高的建筑,采用预制的预制体积建筑(PPVC)作为传统建筑方法的替代方案。 AEC专业人士的垂直整合团队与制造专家合作,设计了一种模块化系统,适用于这种规模的多功能塔。结构工程团队开发了一种独特的结构系统,其中包括钢板剪力墙(SPSW)芯,并附加了屈曲约束支撑(BRB)支腿,以提供对西海岸严重地震的延性响应。这种结构系统不仅符合建筑和可出租空间的要求,而且还有助于最大程度地提高非现场施工水平并最大程度地减少现场人工工作。基于性能的设计与一些关键结构部件的全面测试相结合,有助于在模块化重力空间框架的MCE级别上建立高达2.75%的兼容横向层错率。设想的主要耗能机制是钢板剪力墙后屈曲后的拉力场作用与BRB屈服的结合。与传统的结构系统和施工方法相比,拟议的结构系统可节省多达30%的材料,并使施工速度提高了6个月。

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