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Construction safety planning: Site-specific temporal and spatial information integration

机译:施工安全计划:特定地点的时空信息集成

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The Occupational Safety and Health Act was established in 1970. Since then, various injury prevention strategies have been developed and resulted in measurable improvements in construction safety management. However, the last decade has seen a deceleration in construction safety improvements, which may be due to the dynamic nature of construction jobsites. Traditional safety planning approaches rely primarily on static information, tacit knowledge, regulations, company safety policies, and 2-dimensional (2D) drawings. As a result, site-specific dynamic information, temporal (e.g. when and who will be exposed to potential hazards) and spatial (e.g. location of dangerous zones) information are currently not specifically addressed. This paper presents a formalized 4-dimensional (4D) construction safety planning process that addresses site-specific temporal and spatial safety information integration. The authors integrated safety data, which includes general safety knowledge, site-specific temporal and spatial information, from a project schedule and a 3-dimensional (3D) model. The authors conducted a case study to test and verify the proposed safety planning process. Findings show that risky activities, days, and zones can be prioritized when project schedule contains activity information regarding number of workers including occupation types and zoning plan. In addition, activity safety risk can be visualized when a 3D model is integrated. The proposed safety planning approach is expected to provide safety personnel with a proactive and site-specific safety planning tool that can be used to better manage jobsite safety. In addition, visual safety materials can enhance safety communication among project participants.
机译:《职业安全与健康法》于1970年制定。此后,制定了各种伤害预防策略,并在建筑安全管理方面取得了可观的改进。然而,在过去的十年中,建筑安全改进的步伐有所放缓,这可能是由于建筑工地的动态性质所致。传统的安全计划方法主要依赖于静态信息,默认知识,法规,公司安全策略和二维(2D)图纸。结果,当前未具体解决特定于站点的动态信息,时间(例如何时和谁将面临潜在危险)和空间(例如危险区域的位置)信息。本文提出了一种形式化的4维(4D)施工安全规划流程,该流程解决了特定于地点的时空安全信息集成问题。作者整合了安全数据,其中包括项目进度表和3维(3D)模型中的一般安全知识,特定于地点的时间和空间信息。作者进行了案例研究,以测试和验证提议的安全计划过程。结果表明,当项目进度表中包含有关工人数量的活动信息(包括职业类型和分区计划)时,可以优先考虑有风险的活动,天数和区域。此外,当集成3D模型时,可以看到活动安全风险。预期所提议的安全计划方法将为安全人员提供一种主动的,针对特定地点的安全计划工具,可用于更好地管理现场安全。此外,视觉安全材料可以增强项目参与者之间的安全沟通。

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