The Structural Reliability of the Usumacinta Bridge Using InSAR Time Series of Semi-Static Displacements

IF 2.7 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Infrastructures Pub Date : 2023-12-04 DOI:10.3390/infrastructures8120173
G. M. Guzmán-Acevedo, J. A. Quintana-Rodriguez, J. R. Gaxiola-Camacho, G. E. Vazquez-Becerra, Vanessa Torres-Moreno, J. G. Monjardin-Quevedo
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Abstract

In recent years, Interferometric Synthetic Aperture Radar (InSAR) technology has been able to determine the semi-static behavior of bridges. However, most of the research about the use of InSAR in the monitoring of bridges has been applied only in deterministic assessments of their performance. Therefore, in the current manuscript, the Usumacinta Bridge, located in Mexico, was evaluated based on a probabilistic methodology to define structural reliability using images from Sentinel-1. In addition, a controlled experiment was developed using a corner reflector (CR) to evaluate the capabilities of InSAR for determining vertical displacements. In the trial, the CR was designed, oriented, and implemented, finding discrepancies concerning leveling of less than 2 mm. On the other hand, the case of the alternative probabilistic approach integrates the reliability of structures theory and probability density functions (PDFs) of displacements obtained via InSAR technology. In summary, the proposed study focused on the analysis of two years of vertical displacements and monthly velocities; then, implementing the alternative probabilistic approach, the reliability index (β) and probability of risk (PR) of the bridge were extracted, respectively. Based on the results of the experimental part of the paper, the displacements indicated maximum and minimum values of reliability index of 8.1 and 3.4, respectively. Within this context, the mean and standard deviation obtained were 5.9 and 1.4, respectively. On the other hand, the monthly velocities showed a maximum probability of risk of 2.61%, minimum value of 1.5 × 10−5%, mean of 0.4%, and standard deviation of 0.8%. Hence, the above-documented results indicate that the Usumacinta Bridge did not suffer any damage during its overloading condition period.
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利用 InSAR 半静态位移时间序列分析乌苏马辛塔大桥的结构可靠性
近年来,干涉合成孔径雷达(InSAR)技术已经能够确定桥梁的半静力性能。然而,大多数关于在桥梁监测中使用InSAR的研究仅应用于对其性能的确定性评估。因此,在当前的手稿中,基于概率方法,使用Sentinel-1的图像来定义结构可靠性,对位于墨西哥的Usumacinta桥进行了评估。此外,利用角反射器(CR)进行了一项对照实验,以评估InSAR确定垂直位移的能力。在试验中,CR被设计、定位和实施,发现水平小于2毫米的差异。另一方面,替代概率方法将结构可靠性理论与通过InSAR技术获得的位移概率密度函数(pdf)相结合。总之,拟议的研究侧重于分析两年来的垂直位移和每月速度;然后,采用备选概率法,分别提取桥梁的可靠度指标β和风险概率PR。根据本文实验部分的结果,位移的可靠度指标最大值为8.1,最小值为3.4。在这种情况下,得到的均值和标准差分别为5.9和1.4。另一方面,月速度的风险概率最大值为2.61%,最小值为1.5 × 10 - 5%,平均值为0.4%,标准差为0.8%。因此,上述研究结果表明,Usumacinta大桥在超载期间没有受到任何破坏。
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来源期刊
Infrastructures
Infrastructures Engineering-Building and Construction
CiteScore
5.20
自引率
7.70%
发文量
145
审稿时长
11 weeks
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