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Serviceability assessment for long‐span suspension bridge based on deflection measurements

机译:基于挠度测量的大跨度悬索桥使用寿命评估

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摘要

Serviceability issues related to service load deformations is of great importance to in-service bridge maintenance decision making. Development in structural health monitoring brings opportunities to serviceability assessment for long-span bridges. In this study, a reliability assessment framework of traffic-induced vertical deflection is developed by incorporating extreme values analysis and system reliability with deflection measurements. The framework includes the following steps: (a) identifying traffic-induced deflection by eliminating temperature component and extracting local extremes from the original measurements; (b) probabilistically modeling the peaks-over-threshold (POT) data to the generalized Pareto distribution (GPD); (c) selecting proper threshold of the GPD based on the mean residual life plot and goodness-of-fit tests; (d) extending the GPD to generalized extreme value distribution-based extreme value distribution with the assumption of filtered Poisson process; and (e) assessing the serviceability reliability of vertical deflection by using the concept of series system. The multisensor deflection measurements, which were collected by a previously verified system installed on a suspension bridge, are processed and studied according to the proposed framework. The results indicate that the best GDP fitting of the POT data can be obtained due to the proposed threshold selection strategy. The quasisystem reliability approach also shows its ability in addressing the relationship between the reliabilities of the multiple sections equipped with sensors and presenting a reasonable overall reliability for the prototype bridge.
机译:与服务载荷变形有关的可服务性问题对于在役桥梁维护决策至关重要。结构健康监测的发展为大跨度桥梁的可服务性评估带来了机遇。在这项研究中,通过将极限值分析和系统可靠性与挠度测量相结合,建立了交通诱发的垂直挠度的可靠性评估框架。该框架包括以下步骤:(a)通过消除温度分量并从原始测量值中提取局部极端值来识别交通引起的偏转; (b)概率地将阈值峰值(POT)数据建模为广义Pareto分布(GPD); (c)根据平均剩余寿命图和拟合优度测试选择适当的GPD阈值; (d)假定滤波泊松过程,将GPD扩展到基于广义极值分布的极值分布; (e)利用串联系统的概念评估垂直挠度的使用寿命。多传感器挠度测量值是由安装在悬索桥上的预先验证的系统收集的,根据提出的框架进行处理和研究。结果表明,由于提出的阈值选择策略,可以获得最佳的POT数据GDP拟合。准系统可靠性方法还显示了其解决配备传感器的多个部分的可靠性之间的关系的能力,并为原型桥提供了合理的总体可靠性。

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