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Developing a BIM and Simulation-Based Hazard Assessment and Visualization Framework for CLT Construction Design

机译:开发基于BIM和基于模拟的危险评估和CLT施工设计的可视化框架

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One emerging trend in sustainable medium-density construction is the use of mass timber products such as cross laminated timber (CLT), which is a novel approach that involves numerous connectors. Researchers have not previously investigated the potential health impacts of different connectors. This paper proposes a framework to correlate the specification of CLT connectors to the potential risk of exposure to hand arm vibration syndrome (HAVS). We also propose an innovative adaptation of the Location-Based Management System flow line by adding a health risk dimension. The usefulness of the proposed framework is tested using a cutting-edge case study building, the tallest timber building in Scotland. The contribution of this research is a novel appreciation of the impact on installers' Health & Safety based on the specified type of CLT connectors. With the methodology outlined in this paper, a HAVS variable can be added to design analysis to increase social sustainability in the built environment alongside other sustainability pillars. The findings are relevant to structural engineers, architects, key industry stakeholders, and researchers in the built environment.
机译:可持续中密度施工中的一种新兴趋势是使用大规模木材产品,如交叉层压木材(CLT),这是一种涉及许多连接器的新方法。研究人员以前尚未调查不同连接器的潜在健康影响。本文提出了一种将CLT连接器的规范与手臂振动综合征(HAVES)的潜在风险相关联的框架。我们还通过添加健康风险维度提出基于位置的管理系统流线的创新适应。使用苏格兰最高的木材建筑的尖端案例研究大楼测试了拟议的框架的有用性。本研究的贡献是基于指定类型的CLT连接器对安装人员健康和安全的影响进行了新颖的升值。通过本文概述的方法,可以将HAVS变量添加到设计分析中,以提高建筑环境与其他可持续性柱的社会可持续性。这些调查结果与结构工程师,建筑师,关键行业利益相关者和建筑环境中的研究人员有关。

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