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首页> 外文期刊>Acta Polytechnica >Reliability Analysis of a Steel Frame
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Reliability Analysis of a Steel Frame

机译:钢框架的可靠性分析

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摘要

A steel frame with haunches is designed according to Eurocodes. The frame is exposed to self-weight, snow, and wind actions. Lateral-torsional buckling appears to represent the most critical criterion, which is considered as a basis for the limit state function. In the reliability analysis, the probabilistic models proposed by the Joint Committee for Structural Safety (JCSS) are used for basic variables. The uncertainty model coefficients take into account the inaccuracy of the resistance model for the haunched girder and the inaccuracy of the action effect model. The time invariant reliability analysis is based on Turkstra's rule for combinations of snow and wind actions. The time variant analysis describes snow and wind actions by jump processes with intermittencies. Assuming a 50-year lifetime, the obtained values of the reliability index β vary within the range from 3.95 up to 5.56. The cross-profile IPE 330 designed according to Eurocodes seems to be adequate. It appears that the time invariant reliability analysis based on Turkstra's rule provides considerably lower values of β than those obtained by the time variant analysis.
机译:根据欧洲规范设计了带有腰带的钢制框架。框架承受自重,雪和风的作用。横向扭转屈曲似乎代表了最关键的判据,被认为是极限状态函数的基础。在可靠性分析中,将结构安全联合委员会(JCSS)提出的概率模型用于基本变量。不确定性模型系数考虑了弯梁阻力模型的不精确性和作用效应模型的不精确性。时不变可靠性分析基于Turkstra的雪和风作用组合规则。时变分析通过间歇性跳跃过程描述了雪和风的作用。假设寿命为50年,则可靠性指数β的取值范围为3.95至5.56。根据欧洲规范设计的交叉配置文件IPE 330似乎已经足够。似乎基于Turkstra规则的时不变可靠性分析提供的β值比时变分析获得的值低得多。

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