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Automatic design and planning of scaffolding systems using building information modeling

机译:利用建筑信息模型自动设计和规划脚手架系统

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Considering their significant impact on construction projects, scaffolding as part of the temporary facilities category in construction must be thoroughly designed, planned, procured, and managed. The current practices in planning and managing scaffolding though is often manual and reactive, especially when a construction project is already underway. Widespread results are code compliance problems, inefficiency, and waste of procuring and managing material for scaffolding systems. We developed a rule-based system that automatically plans scaffolding systems for pro-active management in Building Information Modeling (BIM). The scope of the presented work is limited to traditional pipe and board scaffolding systems. A rule was prepared based on the current practice of planning and installing scaffolding systems. Our computational algorithms automatically recognize geometric and non-geometric conditions in building models and produce a scaffolding system design which a practitioner can use in the field. We implemented our automated scaffolding system for a commercially-available BIM software and tested it in a case study project. The system thoroughly identified the locations in need of scaffolding and generated the corresponding scaffolding design in BIM. Further results show, the proposed approach successfully generated a scaffolding system-loaded BIM model that can be utilized in communication, billing of materials, scheduling simulation, and as a benchmark for accurate field installation and performance measurement.
机译:考虑到脚手架对建筑项目的重大影响,必须对脚手架作为建筑中临时设施类别的一部分进行彻底的设计,计划,采购和管理。但是,规划和管理脚手架的当前做法通常是手动的和被动的,尤其是在建设项目正在进行时。广泛的结果是代码合规性问题,效率低下以及为支架系统采购和管理材料的浪费。我们开发了基于规则的系统,该系统可以自动计划脚手架系统,以进行建筑信息模型(BIM)中的主动管理。提出的工作范围仅限于传统的管板脚手架系统。根据当前规划和安装脚手架系统的惯例,制定了规则。我们的计算算法可自动识别建筑模型中的几何和非几何条件,并生成脚手架系统设计,供从业人员在现场使用。我们为商业上可用的BIM软件实施了自动化脚手架系统,并在案例研究项目中对其进行了测试。该系统彻底确定了需要脚手架的位置,并在BIM中生成了相应的脚手架设计。进一步的结果表明,所提出的方法成功地生成了一个脚手架系统加载的BIM模型,该模型可用于通信,物料开票,调度模拟,并可作为精确现场安装和性能测量的基准。

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