提高建筑健康和安全状况的BIM方法——系统审查方案

Adeeb Sidani, João Poças Martins, A. Soeiro
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引用次数: 5

摘要

建筑行业是复杂的、动态的、多元文化的,充满了各种各样的活动和危险的机械。许多事故的发生是由于限制因素造成的,例如安全和健康文化、要求、工人培训不足以及用于预防、计划和监测风险的有限技术。建筑资讯模型(BIM)被认为可以加强项目管理、规划和检查,减少时间和成本,加强协作,减少风险和事故。正在研究一系列基于bim的工具和技术,这些工具和技术具有各种功能,以提高建筑工人的健康和安全。这些技术和方法包括跟踪设备、增强和虚拟现实(AR/VR)、自动规则检查、风险识别和人工智能(AI)。在PRISMA声明之后,提出了一项系统的审查,旨在调查当前基于bim的技术,并评估其在建筑、工程、施工和运营(AECO)行业中的有效性和可用性,以提高职业健康和安全状况。因此,本PRISMA议定书(PRISMA- p)是即将制定的系统审查的补充文件。相关文章将从建筑、安全、健康等领域的顶级电子数据库中收集。此外,文献综述将重点关注BIM和相关技术在AECO领域的应用,探索建筑领域、目标群体和开发的系统架构。同样,检查已实现工具的评估方法,以评估每种技术的有效性。最后,在陈述了每个研究的局限性之后,文章将提出一个涉及整个项目生命周期中最有效的工具的安全和健康框架。
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BIM approaches for enhanced health and safety status in construction - protocol for a systematic review
The construction industry is complex, dynamic, multicultural, and full of diverse activities and dangerous machinery. Many accidents occur because of limiting factors, such as safety and health culture, requirements, poor training of workers, and the restricted technologies implemented to prevent, plan, and monitor risks. Building Information Modelling (BIM) is recognised to enhance project management, planning, and inspection, reduce time and costs, strengthen collaboration, and decrease risks and accidents. A wide array of BIM-based tools and technologies with various functionalities are being investigated to enhance construction workers' health and safety. Among such technologies and methods are tracking devices, Augmented and Virtual Reality (AR/VR), automated rule checking, risk identification and Artificial Intelligence (AI). A systematic review following PRISMA Statement is proposed, aiming to investigate the current BIM-based technologies and evaluate effectiveness and usability within the Architecture, Engineering, Construction and Operations (AECO) industry to enhance occupational health and safety status. Consequently, this PRISMA Protocol (PRISMA-P) represents a complementary document to the systematic review that will be developed. Related articles will be gathered from top electronic databases in construction, safety, and health fields. Moreover, the literature review will focus on the BIM and associated technologies utilised in the AECO sector, exploring the construction fields, targeted groups and the system architectures developed. Likewise, examine the evaluation methods of the implemented tools to assess each technology's effectiveness. Finally, after stating the limitations of each study, the article will propose a safety and health framework involving the most efficient tools involving the whole project lifecycle.
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