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Strength and Reliability of Structural Steel Roofs Subjected to Ponding Loads

机译:结构钢屋顶的强度和可靠性伴随着池塘载荷

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摘要

Roof collapses due to ponding instability are among the most frequent structural failures. Although methods of design for other types of instability have evolved and improved with computational advances, the most commonly used method of assessing ponding instability has been updated minimally since it was developed over 50 years ago. Newer methods of design for ponding have been proposed, but they lack independent verification of their ability to assess the strength of roofs and to provide a sufficient level of reliability. An advanced analysis approach capable of capturing material and geometric nonlinearity, as well as accumulation of water caused by deflection, was developed for roofs consisting of steel beams on stiff supports. The new analysis approach generates data against which the various methods of design for ponding can be benchmarked. These comparisons showed that methods of design based on elastic analysis are capable of accurately capturing the strength of structural steel roofs subjected to ponding load if a reduction factor of 0.8 is applied to the stiffness of the structure. In addition, a reliability analysis using Monte Carlo simulation showed that the methods of design for ponding can achieve a target reliability index consistent with design for other loading conditions. The results provide new insights into the behavior of roofs subjected to ponding loads and enable the use of new design methods for ponding that are more broadly applicable, comprehensive, and consistent with current methods of strength evaluation. (C) 2020 American Society of Civil Engineers.
机译:由于池塘不稳定,屋顶塌陷是最常见的结构故障之一。尽管对其他类型不稳定性的设计方法已经发展和改进了计算进步,但是在50年前开发的情况下,最常用的评估不稳定的方法已经更新。已经提出了较新的设计方法,但他们缺乏自由验证他们评估屋顶强度和提供足够的可靠性水平的能力。能够捕获材料和几何非线性的高级分析方法,以及由偏转引起的偏转引起的水的累积,用于由刚性支撑的钢梁组成的屋顶。新的分析方法生成数据,用于追加的各种设计方法可以基准。这些比较表明,如果将0.8的刚度施加到结构的刚度,则基于弹性分析的设计方法能够精确地捕获经过沉积负荷的结构钢屋顶的强度。此外,使用Monte Carlo仿真的可靠性分析表明,池塘设计方法可以实现与其他装载条件的设计一致的目标可靠性指数。结果为屋顶的行为提供了新的见解,并使新的设计方法能够利用更广泛适用,全面,符合当前的实力评估方法。 (c)2020年美国土木工程师协会。

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