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A Multi-scale Finite Element Model of Tsing Ma Bridge for Hot Spot Stress Analysis

机译:热点应力分析的青马桥多尺度有限元模型

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Failure due to fatigue damage is an important failure mode for large suspension bridges and welded connections are usually identified as one of the most vulnerable locations for accumulative fatigue damage of Steel bridges. The hot-spot stress approach has been successfully used for the fatigue evaluation of welded joints. Traditionally a structural analysis using a global FE model is first conducted to determine the critical locations, based on which a local analysis is then carried out to obtain the hot- spot stress distribution that is the basis of fatigue status assessment process. Alternatively, a multi- scale model is proposed by using the mixed dimensional coupling method merging typical detailed joint geometry models into the global model so that the hot-spot stress can be directly output through a single step of analysis. As a case study, a multi- scale model of Tsing Ma Bridge was developed accordingly and the calculated results were compared with those of the global structural model and the structural health monitoring data with respect to first few order natural frequencies and vertical displacement at GPS level sensor-installed locations, and hot spot stress situation combined with stress concentration factors at a typical intersection joint. The comparison results show that the multi- scale model output agrees well with those of the global model and the monitoring data within the acceptable range, indicating that, at the same engineering level, the developed multi-scale model is more convenient and yet appropriate for the purpose of hot spot stress analysis in fatigue evaluation.
机译:由于疲劳损坏的故障是大型悬架桥梁的重要失效模式,并且焊接连接通常被识别为钢结构累积疲劳损坏的最脆弱的位置之一。热点应力方法已成功用于焊接接头的疲劳评估。传统上首先进行使用全局Fe模型的结构分析以确定关键位置,然后基于该关键位置,然后进行局部分析以获得疲劳状态评估过程的基础的热点应力分布。或者,通过使用混合尺寸耦合方法将典型的详细关节几何模型合并到全局模型中提出了多尺度模型,以便可以通过单个分析步骤直接输出热点应力。作为一个案例研究,相应地开发了青马桥的多级模型,并将计算结果与全球结构模型和结构健康监测数据相比相对于GPS级的前几阶固有频率和垂直位移进行了比较。传感器安装的位置和热点应力情况结合典型交叉口接头处的应力集中因子。比较结果表明,多尺度模型输出与全球模型的多级模型输出吻合良好,并在可接受的范围内,表明,在相同的工程层面,开发的多尺度模型更方便,但适当适当疲劳评价热点应力分析的目的。

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