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Symbiosis of life-cycle structural design and asset management based on Building Information Modeling: Application for industrial facility equipment

机译:基于建筑信息建模的生命周期结构设计与资产管理的共生:工业设施设备应用

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In the last few years, particular focus has been devoted to the life cycle performance of fastening systems, which is reflected in increasing numbers of publications, standards and large-scale research efforts. Simultaneously, experience shows that in many cases, where fastening systems are implemented – such as industrial facilities – the design of fasteners is governed by fatigue loading under dynamic characteristics. In order to perform an adequate design and to specify the most efficient and appropriate fastening product, the engineer needs to access and process a broad range of technical and commercial information. Building information modelling (BIM), as a data management method in the construction industry, can supply such information and accommodate a comprehensive design and specification process. Furthermore, the application of BIM-based processes, such as the generation of a BIM-model, allows to use the important information for the construction as well as the life cycle management with different actions and time dependencies of the asset and its components. As a consequence, the BIM model offers the potential to correlate different data relevant for achieving the goals of the respective application, in order to ensure a more effective and correct design of the fastening. This paper demonstrates such a BIM-based design framework for an Industry 4.0 case, and in particular, the installation of a factory robot through post-installed anchors under fatigue-relevant loading in concrete.
机译:在过去几年中,特殊的重点已经致力于紧固系统的生命周期性能,这反映在越来越多的出版物,标准和大规模研究工作中。同时,经验表明,在许多情况下,在许多情况下实现 - 如工业设施 - 紧固件的设计是通过动态特性下的疲劳负载来控制。为了执行足够的设计并指定最有效和适当的紧固产品,工程师需要访问和处理广泛的技术和商业信息。建筑信息建模(BIM)作为建筑业的数据管理方法,可以提供此类信息,并提供全面的设计和规范过程。此外,基于BIM的过程(例如BIM模型)的应用允许使用建筑的重要信息以及使用资产及其组件的不同动作和时间依赖性的生命周期管理。因此,BIM模型提供了与实现各个应用程序的目标相关的不同数据的潜力,以确保更有效和更正的紧固设计。本文展示了为行业4.0案例的基于BIM的设计框架,特别是通过在混凝土中的疲劳相关装载下通过安装后的锚固锚固的工厂机器人安装。

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