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Using BIM to Automate Scaffolding Planning for Risk Analysis at Construction Sites

机译:使用BIM自动化建筑工地风险分析的脚手架规划

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Scaffolding system plays an important role at construction sites. According to the Occupational Safety and Health Administration (OSHA), 65% of the construction workers use scaffolding system frequently. Each year, there are 4500 injuries and 50 deaths caused by scaffold-related accidents, costing American employers $90 million on lost workdays. Thus well conducted risk analysis on scaffolding system can have a significant impact on project performance. Although many governments developed safety regulations and standards for scaffolding system, it is still a challenge for construction safety managers to execute these regulations at construction sites. One of the reasons is that these regulations are documents which require construction safety manager to accurately translate the information with 2-dimentional drawings into a workable safety plan. Building Information Modeling (BIM) has been employed to enhance safety management at construction sites; however, scaffolding system, as a temporary facility, is usually not developed in the BIM model. Consequently, scaffold-related hazards are hard to be identified and analyzed. This study focuses on constructing a BIM-based scaffolding safety management model to analyze various scaffold-related risks and provide solutions. First, the requirements for scaffolding planning are identified by developing an ontology for risk analysis. Then a series of Dynamo modules are established to automate the process of developing the scaffolding system in the BIM model according to the requirements identified. Next, various simulations based on the potential hazard events are conducted to serve as a tool for educating construction workers and determining solutions. In addition, safety checklists with 3-D location information are derived from the BIM model to help safety managers reduce the difficulties of implementing safety regulations and improve the quality of safety management at construction sites.
机译:脚手架系统在建筑工地起着重要作用。根据职业安全和健康管理局(OSHA),65%的建筑工人经常使用脚手架系统。每年有4500人受伤和50人死亡,脚手架相关的事故造成的,美国雇主损失了9000万美元的工作日。因此,对脚手架系统进行的风险分析可能对项目性能产生重大影响。虽然许多政府制定了脚手架系统的安全法规和标准,但施工安全管理人员在建筑工地执行这些法规仍然是一项挑战。其中一个原因是这些规定是需要建设安全经理的文件,以准确地将2维图翻译成可行的安全计划。建筑信息建模(BIM)已受雇于提高建筑工地的安全管理;然而,作为临时设施的脚手架系统通常不是在BIM模型中开发的。因此,难以识别和分析脚手架相关的危害。本研究重点介绍构建基于BIM的脚手架安全管理模型,以分析各种与脚手架相关的风险并提供解决方案。首先,通过开发风险分析的本体来确定脚手架规划的要求。然后建立一系列发电机模块,以根据所确定的要求,自动化在BIM模型中开发脚手架系统的过程。接下来,进行基于潜在危险事件的各种模拟,作为教育建筑工人的工具和确定解决方案的工具。此外,具有三维位置信息的安全检查表来自BIM模型,以帮助安全管理人员减少实施安全法规的困难,提高建筑工地安全管理质量。

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