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Safety Factors Assessment for Out-plane Stability of CFST Arches Using Inverse Reliability Method

机译:使用逆可靠性方法对CFST拱门外平面稳定性进行平面稳定性的安全因素评估

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Concrete filled steel tubular arch(CFST) bridges have been widely built worldwide in the past two decades.However, studies on the stability design of this type of bridges are limited, especially for the out-plane stability.Therefore, a numerical inverse reliability method is presented to solve the out-plane stability safety factors of CFST arches.The cooperation of programming and general finite element software is utilized to implement the method.In this method, a safety factor is introduced into the limit state equation for the out-plane stability of CFST arches.For different target reliability indices, out-plane stability safety factors with and without considering nonlinearities are obtained based on arch models.The results show that: the method is of good efficiency and applicability; steel ratios and lateral loads have significant influences on out-plane stability safety factors; the effects of resistance and load uncertainties on the out-plane stability factors are clear which should be concerned in design.
机译:在过去的二十年里,混凝土填充钢管拱(CFST)桥梁在全球范围内广泛建造。然而,对这种桥梁的稳定性设计的研究有限,特别是对于外平面稳定性。因此,数值逆可靠性方法被提出解决CFST拱门的外平面稳定性安全因子。使用规划和一般有限元件软件的合作来实现该方法。在此方法中,将安全系数引入外平面的极限状态方程CFST拱的稳定性。对于不同的目标可靠性指标,基于ARCH模型获得了不同的目标可靠性指数,具有和不考虑非线性的外平面稳定性安全因子。结果表明:该方法具有良好的效率和适用性;钢比率和横向载荷对外平面稳定性安全因素的影响显着;电阻和负载不确定性对外平面稳定因素的影响是清晰的,这应该涉及设计。

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