Construction productivity assessment on Brock Commons Tallwood House

Mohamed Kasbar, S. Staub-French, A. Pilon, E. Poirier, Zahra Teshnizi, Thomas Froese
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Abstract

Purpose The purpose of this paper is to improve the understanding of the impact of mass timber construction methods on construction performance through the successful delivery of the first-of-a-kind tall wood building, Brock Commons Tallwood House (Tallwood House). This paper is one of a set of papers examining the project; companion papers describe innovations used during the mass timber design and construction processes. Design/methodology/approach A mixed-method, longitudinal case study approach was used in this research project to investigate and document the Tallwood House project. Quantitative data were collected to perform the following analysis: hook time, the variability of productivity and schedule reliability. Members of the research team observed construction progress, meetings and decision-making, conducted periodic interviews and reviewed project artifacts. Findings The research presented in this paper is the culmination of a longitudinal study aimed at studying the innovation process on a project where radical innovations of structural systems were developed. Prefabrication, combined with the use of a virtual design and construction (VDC) model for planning and fabrication and early collaboration with trades, construction managers and consultants, increased the labor productivity of the on-site erection of the mass timber structural components and envelope panels and expedited the construction schedule. Originality/value This paper details an in-depth investigation into the construction productivity for a unique building project and lessons learned. The case study chosen is the construction of Tallwood House at the University of British Columbia. Tallwood House was the tallest mass-timber hybrid building in the world at the time of its construction.
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Brock Commons Tallwood House的施工效率评估
本文的目的是通过成功交付首个高层木结构建筑Brock Commons Tallwood House (Tallwood House),提高对大规模木结构施工方法对建筑性能影响的理解。本文是研究该项目的一系列论文之一;相关论文描述了在大规模木材设计和施工过程中使用的创新。设计/方法/方法在这个研究项目中使用了混合方法,纵向案例研究方法来调查和记录Tallwood House项目。定量数据收集进行以下分析:钩时间,变异性的生产力和进度可靠性。研究小组的成员观察施工进度、会议和决策,进行定期访谈并审查项目工件。研究结果本文中提出的研究是纵向研究的高潮,旨在研究一个项目的创新过程,在这个项目中,结构系统的激进创新被开发出来。预制,结合使用虚拟设计和施工(VDC)模型进行规划和制造,以及与行业,施工经理和顾问的早期合作,提高了现场安装大量木结构组件和围护板的劳动生产率,并加快了施工进度。原创性/价值本文详细介绍了一个独特的建筑项目的建筑生产力的深入调查和经验教训。选择的案例研究是不列颠哥伦比亚大学的Tallwood House建筑。高伍德大厦在建造时是世界上最高的木材混合建筑。
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