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Full-Scale Measurements and System Identification on Sutong Cable-Stayed Bridge during Typhoon Fung-Wong

机译:台风凤旺期间苏通斜拉桥的全尺寸测量与系统辨识

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摘要

The structural health monitoring system (SHMS) provides an effective tool to conduct full-scale measurements on existing bridges for essential research on bridge wind engineering. In July 2008, Typhoon Fung-Wong lashed China and hit Sutong cable-stayed bridge (SCB) in China. During typhoon period, full-scale measurements were conducted to record the wind data and the structural vibration responses were collected by the SHMS installed on SCB. Based on the statistical method and the spectral analysis technique, the measured data are analyzed to obtain the typical parameters and characteristics. Furthermore, this paper analyzed the measured structural vibration responses and indicated the vibration characteristics of the stay cable and the deck, the relationship between structural vibrations and wind speed, the comparison of upstream and downstream cable vibrations, the effectiveness of cable dampers, and so forth. Considering the significance of damping ratio in vibration mitigation, the modal damping ratios of the SCB are identified based on the Hilbert-Huang transform (HHT) combined with the random decrement technique (RDT). The analysis results can be used to validate the current dynamic characteristic analysis methods, buffeting calculation methods, and wind tunnel test results of the long-span cable-stayed bridges.
机译:结构健康监测系统(SHMS)提供了一种有效的工具,可以对现有桥梁进行全面测量,从而对桥梁风能工程进行必要的研究。 2008年7月,台风“凤凰”袭击中国,袭击了中国的苏通斜拉桥(SCB)。在台风期间,进行了全面测量以记录风数据,并通过安装在SCB上的SHMS收集了结构振动响应。基于统计方法和光谱分析技术,对实测数据进行分析,得到典型的参数和特征。此外,本文还分析了所测得的结构振动响应,并指出了斜拉索和桥面的振动特性,结构振动与风速之间的关系,上,下游电缆振动的比较,电缆阻尼器的有效性等。 。考虑到阻尼比在减振中的重要性,结合希尔伯特-黄变换(HHT)和随机减量技术(RDT)来确定SCB的模态阻尼比。分析结果可用于验证大跨度斜拉桥的当前动力特性分析方法,抖振计算方法和风洞试验结果。

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