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Structural design of high-rise buildings using steel-framed modules: A case study in Hong Kong

机译:使用钢制模块的高层建筑结构设计 - 以香港为例

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摘要

Steel-framed modular buildings afford certain advantages, such as rapid and high-quality construction. However, although steel-framed modules have been adopted in several countries, most of them are limited to low-to-medium-rise structures; modular high-rise buildings are rare. This study proposes a feasible structural design solution for high-rise buildings using a steel-framed modular system. A 31-story student hostel building in Hong Kong is redesigned as a steel-framed modular building and used as a case study. The finite element models of the building are formulated, and the structural behaviors under wind and earthquake load scenarios are compared. Moreover, the structural design process used for the 31-story building is applied to design a hypothetical 40-story modular building to further examine the proposed design solution. The numerical analysis results indicate that the roof lateral displacements and interstory drift ratios of the redesigned modular building are within the allowable limits of design codes; moreover, the modular connections behave elastically under the most adverse loading scenarios. Accordingly, the proposed solution can be used to design steel-framed modular buildings of up to 40 stories, while complying with relevant wind and seismic codes.
机译:钢制框架模块化建筑提供了一定的优点,如快速和高质量的结构。但是,虽然若干国家已采用钢制框架模块,但大多数都仅限于低至中升结构;模块化高层建筑很少见。本研究提出了使用钢框模块化系统的高层建筑结构设计解决方案。香港的31层学生宿舍建筑被重新设计为钢制框架模块化建筑,并用作案例研究。建筑的有限元模型配制,并比较了风和地震载荷场景下的结构行为。此外,用于31层建筑的结构设计过程应用于设计一个假设的40层模块化建筑,以进一步检查所提出的设计解决方案。数值分析结果表明,重新设计的模块化建筑物的屋顶位移和壁垒漂移比在设计码的允许极限范围内;此外,模块化连接在最不利的加载方案下弹性地表现。因此,所提出的解决方案可用于设计高达40个故事的钢框模块化建筑,同时遵守相关的风和地震码。

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