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Testing and long-term monitoring of a curved concrete box girder bridge

机译:曲线混凝土箱梁桥的测试和长期监控

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摘要

Capital investment in national infrastructure is significant. The need to maintain and protect critical infrastructure links has led in recent years to significant developments in the area of structural health monitoring. The objective is to track a structure's long-term performance, typically using sensors, and to successively compare the most recently measured responses with prior response history. During construction of the West Street On-Ramp, a curved concrete box girder bridge, located in the city of Anaheim (California), eleven accelerometers were permanently installed on its bridge deck. The associated data acquisition system was configured to record once a specified threshold acceleration response was exceeded; during the period 2002-2010 a total of 1350 datasets including six earthquakes, for each of the eleven sensors, were acquired. This automatically acquired data was supplemented, during the summer of 2009, with responses measured during controlled vehicle tests. Six accelerometers were additionally installed on the frame of the weighed test vehicle. This paper presents the findings of the analyses of these measured data sets and serves to inform owners and managers as to the potential feedback from their instrumentation investment. All response histories were analyzed using frequency domain techniques for system identification. Extraction of the modal characteristics revealed a continuous reduction, of approximately 5%, in the first three natural frequencies over the period of the study. The measured responses from the vehicle sensors are discussed in the context of identifying the potential for bridge frequency measurement using instrumented vehicles.
机译:对国家基础设施的资本投资是巨大的。近年来,维护和保护关键基础设施链接的需求导致了结构健康监控领域的重大发展。目的是通常使用传感器来跟踪结构的长期性能,并将最近测量的响应与先前的响应历史相继进行比较。在位于加利福尼亚州阿纳海姆市(Anaheim)(加利福尼亚州)的弯曲混凝土箱梁桥West Street On-Ramp的建造过程中,其桥面上永久安装了11个加速度计。相关的数据采集系统配置为一旦超过指定的阈值加速度响应即进行记录;在2002-2010年期间,针对11个传感器中的每一个,共获取了1350个数据集,包括6次地震。这种自动获取的数据在2009年夏季得到了补充,并在受控车辆测试中进行了测量。在称重的测试车的车架上另外安装了六个加速度计。本文介绍了对这些测得的数据集进行分析的结果,并向业主和经理告知了他们从仪器投资中获得的潜在反馈。使用频域技术对所有响应历史进行了分析,以进行系统识别。在研究期间,模态特征的提取显示在前三个自然频率中连续降低约5%。在识别使用仪表车辆进行桥梁频率测量的可能性的背景下,讨论了来自车辆传感器的测量响应。

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