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RELIABILITY ASSESSMENT OF REINFORCED CONCRETE GRILLAGE GIRDER BRIDGE

机译:钢筋混凝土钢筋梁桥的可靠性评估

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Structural reliability analysis provides a rational framework to assess bridge performance. The generally adopted component-level reliability assessment cannot concern load redistribution after some components fail. Bridge reliability index calculated from component reliability indices will thus underestimate structural potential to resist loads. In this study,a system-level reliability assessment procedure based on bridge system limit state analysis is conducted to assess the reliability of a typical simply-supported reinforced concrete grillage girder bridge. The bridge is composed of 5 main girders and 3 diaphragms with T-shape cross section. A finite element model of the bridge is firstly established by modeling all girders and diaphragms as grid elements. Thousands of samples of random variables associated with resistance and loads are generated according to their probability distributions and then are substituted into the FEM model. For limit state analysis of each structure sample,the traffic loads are gradually increased till the bridge collapse,which means enough plastic hinges emerge in the structure. The load factor (LF),a ratio between ultimate loads and design loads,is computed to show the redundancy of bridge load carrying capacity. Based on the probability distribution of LF,the reliability index of the grillage girder bridge is calculated. The results can be used for bridge design and assessment process with a reasonable concern of uncertainties associated with resistance and load effect.
机译:结构可靠性分析提供了一种评估桥接性能的合理框架。在某些组件失败后,普遍采用的组件级可靠性评估不能关注负载再分配。从组件可靠性指标计算的桥接可靠性指数因此将低估抵抗负载的结构电位。在本研究中,进行了一种基于桥系统限制状态分析的系统级可靠性评估程序,以评估典型的简单支持的钢筋混凝土胶梁梁桥的可靠性。该桥由5个主要梁和3个隔膜组成,具有T形横截面。首先通过将所有梁和隔膜模拟作为网格元件来建立桥的有限元模型。根据其概率分布产生与电阻和负载相关的数千个随机变量样本,然后被替换为FEM模型。对于每个结构样品的限制状态分析,交通负荷逐渐增加,直到桥梁崩溃,这意味着在结构中出现足够的塑料铰链。计算载荷系数(LF),终极负载和设计负载之间的比率,以显示桥接负载承载能力的冗余。基于LF的概率分布,计算了格栅梁桥的可靠性指标。结果可用于桥梁设计和评估过程,具有与抵抗和负荷效应相关的不确定性的合理关注。

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