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Advanced analysis and reliability-based design of steel scaffolding systems

机译:钢脚手架系统的高级分析和基于可靠性的设计

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摘要

This thesis presents a comprehensive investigation of the advanced analysis, reliability-based design and optimisation of steel support scaffolding systems. Support scaffolding systems are used to provide temporary support to timber formwork systems, reinforcement, concrete, workmen and equipment, during the construction of permanent structures such as buildings and bridges. Stick-type steel scaffolds with cuplok joints are the focus of the thesis.udThis thesis includes the collection and statistical analysis of shore load effects occurring as a result of construction dead and live loads. A comprehensive series of U-head joint subassembly tests, allowed the top rotational stiffness to be rationally quantified for advanced finite element modelling. Advanced finite element models are calibrated using data compiled in a previous investigation involving eighteen full-scale tests. This calibration exercise also provides statistical data for modelling error. Monte Carlo simulations using advanced analysis are performed to determine the statistical distributions of system strength for a range of geometric configurations of support scaffold systems. The research showed that system strength was governed mainly by jack extension at the top and bottom of the scaffolding system. udBy incorporating the load statistics and system strength statistics, the thesis determined the reliability of various steel scaffolding systems designed by the fundamental Load-Resistance-Factor-Design (LRFD) equation. The study further proposed a more efficient LRFD equation for steel scaffolding, based on an acceptable target reliability index.
机译:本文对钢支撑脚手架系统的高级分析,基于可靠性的设计和优化进行了全面的研究。支撑脚手架系统用于在建造永久性建筑物(例如建筑物和桥梁)期间为木材模板系统,钢筋,混凝土,工人和设备提供临时支撑。本文的重点是具有铜质接头的棒型钢脚手架。 ud本论文包括对建筑静载和活载引起的岸荷载效应的收集和统计分析。一系列全面的U头接头组件测试,可以合理地量化顶部旋转刚度,以进行高级有限元建模。使用先前的调查中收集的数据来校准高级有限元模型,其中涉及18个全面测试。此校准练习还提供了建模误差的统计数据。进行了使用高级分析的蒙特卡洛模拟,以确定一系列支撑脚手架系统的几何构型的系统强度的统计分布。研究表明,系统强度主要取决于脚手架系统顶部和底部的千斤顶延伸。 ud通过结合载荷统计数据和系统强度统计数据,确定了由基本的载荷抵抗系数设计(LRFD)方程设计的各种钢脚手架系统的可靠性。该研究还基于可接受的目标可靠性指标,进一步提出了一种用于钢脚手架的更有效的LRFD方程。

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    Reynolds James Bernard;

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  • 年度 2014
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