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Feasibility Study of a Novel Tall Concrete-Wood Hybrid System

机译:新型高层混凝土-木材混合系统的可行性研究

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In order to reduce the environmental impact of the construction industry, structural high-rise solutions using sustainable construction practices and renewable materials need to be developed. This study investigated a novel hybrid structural system comprised of concrete and timber where concrete slabs at every third story provide the necessary stiffness and strength to resist gravity and lateral loads and the intermediate floors are constructed using light-frame wood modules to create the living spaces. Apart from reducing the building's carbon footprint, the weight of the building is reduced considerably and, as a result, the seismic demand on the lateral load resisting system is reduced. The research presented in this paper evaluated the feasibility of the proposed hybrid concept and compares it to an ordinary concrete frame structure. A linear finite element model of the system captured the model response in terms of inter-story drift, base shear and the seismic demands in accordance with the design requirements of the National Building Code of Canada (NBCC 2010). It indicates that the system meets the NBCC design performance requirements and has a lower seismic demand in terms of floor displacement and interstorey drift.
机译:为了减少建筑业对环境的影响,需要开发采用可持续建筑实践和可再生材料的高层结构解决方案。这项研究调查了一种由混凝土和木材组成的新型混合结构系统,其中,每三层的混凝土板都提供了必要的刚度和强度以抵抗重力和侧向载荷,中间地板则使用轻型木模块建造,以创造起居空间。除了减少建筑物的碳足迹外,建筑物的重量也大大减少,结果,减少了对横向载荷抵抗系统的抗震要求。本文提出的研究评估了提出的混合概念的可行性,并将其与普通混凝土框架结构进行了比较。根据加拿大国家建筑规范(NBCC 2010)的设计要求,系统的线性有限元模型捕获了层间漂移,基础剪力和地震需求方面的模型响应。这表明该系统符合NBCC设计性能要求,并且在地面位移和层间漂移方面具有较低的抗震要求。

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