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首页> 外文期刊>Automation in construction >Integrating work sequences and temporary structures into safety planning: Automated scaffolding-related safety hazard identification and prevention in BIM
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Integrating work sequences and temporary structures into safety planning: Automated scaffolding-related safety hazard identification and prevention in BIM

机译:将工作流程和临时结构整合到安全计划中:BIM中与脚手架相关的安全隐患的自动识别和预防

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摘要

Construction remains as a hazardous industry that can expose construction workers to fatal accidents and illnesses. With recent advances in BIM technology, project information in BIM can be analyzed in the early design and planning stages to address potential safety issues. However, despite the impact on safety and productivity of the entire construction project, temporary structures, such as formwork and scaffolds, are often omitted from drawings or BIM. In practice, it is challenging to consider temporary structures in current manual jobsite safety analysis which is time-consuming and error-prone. As a result, in construction plans, potential safety hazards related to temporary structures are unknowingly created which need to be identified and prevented during the construction phases. Focusing on scaffolds, this research integrates temporary structures into automated safety checking approach using BIM. A safety planning platform was created to simulate and visualize spatial movements of work crews using scaffolding. Computational algorithms in the platform automatically identify safety hazards related to activities working on scaffolding and preventive measures can be prepared before the construction begins. The algorithms were implemented in a commercially available BIM software as a plug-in and validated with a real-world construction project The results show that the algorithms could identify safety hazards that were not noticed by project managers participating in the case study project The simulated results are visualized in the developed safety planning platform to potentially facilitate early safety communications. (C) 2016 Elsevier B.V. All rights reserved.
机译:建筑仍然是一个危险的行业,可能会使建筑工人面临致命的事故和疾病。随着BIM技术的最新发展,可以在早期的设计和规划阶段分析BIM中的项目信息,以解决潜在的安全问题。但是,尽管会影响整个建筑项目的安全性和生产率,但图纸或BIM中通常会省略临时结构,例如模板和脚手架。实际上,在当前的人工现场安全分析中考虑临时结构是一项挑战,这既费时又容易出错。结果,在施工计划中,在不知不觉中创建了与临时结构有关的潜在安全隐患,需要在施工阶段进行识别和预防。专注于脚手架,这项研究将临时结构集成到使用BIM的自动化安全检查方法中。创建了一个安全计划平台,以使用脚手架模拟和可视化工作人员的空间运动。平台中的计算算法可自动识别与脚手架上的活动有关的安全隐患,并可以在施工开始前采取预防措施。该算法在商业上可用的BIM软件中作为插件实施,并通过一个实际的建筑项目进行了验证。结果表明,该算法可以识别参与案例研究项目的项目经理未注意到的安全隐患。模拟结果在已开发的安全计划平台中可视化,以潜在地促进早期安全通信。 (C)2016 Elsevier B.V.保留所有权利。

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