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Planning, management and administration of HS contents with BIM and VR in construction: an implementation protocol

机译:HS内容与BIM和VR建设中HS内容的规划,管理和管理:实施协议

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Purpose Building construction is considered a complex, dynamic and highly hazardous process, which embraces many factors that are potentially dangerous to workers. Many studies proved that the improvement of preventive and proactive measures - dynamically included in the building design, planning and construction - could reduce site accidents as well as increase the site productivity. In this context, process management models and information visualization techniques such as building information modeling (BIM) and virtual reality (VR) seem to be devoted to strongly contribute to the advancement of the current safety management practices. For these reasons, the presented contribution is based on the assumption that a more nuanced approach for construction worker's safety training is warranted and the authors propose a safety training protocol based on BIM-enabled VR activity simulations. Design/methodology/approach The methodology comprised a safety training protocol based on BIM-enabled VR activity simulations. The protocol addresses three methodological issues: (1) Planning in terms of training typologies and related health and safety contents to be implemented in the VR construction site scenarios; (2) Management regarding the solution to integrate BIM and game technologies to deliver VR training experiences; (3) Administration in terms of definition of standardized rules to define a safety training schedule in a given construction project. Findings This work contributes to provide a standardized protocol for a viable integration of BIM and VR technologies for construction safety training in real projects. Practical implications The VR training protocol was applied to a construction project based in Italy that served as case study for the development of the training sessions' contents and their implementation. This case demonstrated the feasibility of the protocol's implementation and pointed out the drawbacks and limitations on which further efforts need to be spent in order to take the proposed protocol from a prototypical stage to a maturity for its larger-scale adoption from the practitioners involved in construction safety training. Originality/value The research gives a contribution to reduce the currently existing knowledge gap regarding how BIM and VR can be simultaneously integrated in real projects for construction safety training by using standardized rules to be extensively reproduced in different construction projects. It uses a customized toolkit with a mobile smartphone solution to administer Safety Training Scenarios which increases its portability in construction site compared to PC-based VR solutions.
机译:目的建筑施工被认为是复杂,动态和高度危险的过程,它包括对工人潜在危险的许多因素。许多研究证明,提高预防和积极措施 - 动态包括在建筑设计,规划和建筑中 - 可以降低现场事故以及增加网站生产力。在这种情况下,处理管理模型和信息可视化技术,例如构建信息建模(BIM)和虚拟现实(VR)似乎被致力于强烈促进当前安全管理实践的进步。由于这些原因,所提出的贡献基于假设有保证建筑工人安全培训的更细致的方法,而作者提出了一种基于支持BIM的VR活动模拟的安全培训协议。设计/方法/方法该方法包括基于BIM的VR活动模拟的安全训练协议。该协议解决了三种方法问题:(1)在VR施工现场场景中培训类型和相关的健康和安全内容的规划; (2)关于整合BIM和游戏技术的解决方案,以提供VR培训经验; (3)在标准化规则的定义方面,在特定的建筑项目中定义安全培训表。调查结果这项工作有助于为实际项目中的建筑安全训练提供标准化的BIM和VR技术集成标准化议定书。实际意义VR培训协议应用于意大利的建筑项目,该项目是为开发培训课程内容及其实施的案例研究。本例证明了议定书实施的可行性,并指出了需要花费进一步努力的缺点和限制,以便从原型阶段采取拟议的议定书到到期日,以便从参与建筑的从业者的较大规模采用安全训练。原创性/价值该研究提供了减少当前现有的知识差距,以减少BIM和VR如何通过使用标准化规则在不同的建设项目中广泛复制的建筑安全性培训的实际项目中。它使用具有移动智能手机解决方案的自定义工具包来管理安全培训方案,与基于PC的VR解决方案相比,将其在施工现场的便携性提高。

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