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System reliability-based limit state design of support scaffolding systems

机译:基于系统可靠性的支持脚手架系统的极限状态设计

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摘要

The safety of scaffold systems during construction is vital to prevent failures with catastrophic consequences. Engineering practice in the scaffolding industry, however, does not have a rational structural reliability basis as that used for buildings and bridges. The implementation of design clauses for scaffold systems in the current standards partially relies on judgement suffering from the lack of data. With this regard, a reliability-based limit state design approach is developed in this study, making full use of the advanced finite element (FE) method and the recently accumulated statistical data of scaffolding resistance and construction loads. A stochastic finite element method is used to obtain the probabilistic characteristics of the ultimate load-carrying capacities of typical scaffolding frames, accounting for the uncertainties associated with structural geometry, material and stiffness properties. The latest construction load survey data is utilized. System reliability assessment is then performed to develop new design criteria which are consistent with generally accepted structural reliability targets.
机译:施工过程中的支架系统的安全性至关重要,以防止灾难性后果的失败。然而,脚手架行业的工程实践没有合理的结构可靠性基础,因为用于建筑物和桥梁。在当前标准中的脚手架系统的设计条款的实施部分依赖于缺乏数据的判断。在这方面,在本研究中开发了一种基于可靠性的极限状态设计方法,充分利用了先进的有限元(FE)方法和脚手架电阻和施工负荷的最近累计的统计数据。随机有限元方法用于获得典型的脚手架框架的最终承载能力的概率特性,占与结构几何形状,材料和刚度特性相关的不确定性。使用最新的施工负荷调查数据。然后执行系统可靠性评估以开发新的设计标准,这与通常接受的结构可靠性目标一致。

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