Calibration of safety factors for prestressed stayed steel columns

Peter Hyman, Srinivas Sriramula, Adelaja I. Osofero
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Abstract

Previous studies have investigated the behaviour of prestressed stayed steel columns with a view to developing design guidelines. As most of the modern standards move towards calibrated safety factors, there is a need to explore the design expectations of these structures from a probabilistic perspective. This has not been studied in the literature till now, perhaps due to lack of clarity on underlying uncertainties, failure models and reliability levels. In this paper, the relevant reliability levels were studied to highlight the critical modes for such structures. A sensitivity analysis was performed on the random variables to investigate their impact on the model output. The reliability levels found through appropriate analysis were then compared with target reliabilities to calibrate partial safety factors to be used in the design of these structures. A range of safety factor values were found depending on the conditions adopted in the calibration and target reliability studies.

预应力斜拉钢柱安全系数的校准
先前的研究已经调查了预应力斜拉钢柱的性能,以期制定设计指南。随着大多数现代标准朝着校准安全系数的方向发展,有必要从概率的角度探讨这些结构的设计期望。到目前为止,文献中还没有对此进行研究,可能是由于对潜在的不确定性、故障模型和可靠性水平缺乏明确性。在本文中,研究了相关的可靠性水平,以突出此类结构的关键模式。对随机变量进行了敏感性分析,以研究它们对模型输出的影响。然后将通过适当分析得出的可靠性水平与目标可靠性进行比较,以校准这些结构设计中使用的部分安全系数。根据校准和目标可靠性研究中采用的条件,发现了一系列安全系数值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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