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Forced-Vibration Testing and Experimental Modal Analysis of a Steel Footbridge for Structural Identification

机译:钢天桥用于结构识别的强迫振动测试和实验模态分析

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Dynamic characteristic identification provides an important insight about structural behavior of steel structures. The experimental modal analysis is used to detect dynamic characteristics and consists of several phases. First, forced-vibration tests are carried out, spectral functions are produced, dynamic characteristics are determined by analyzing processed spectral functions, and, finally, analytical models are calibrated or updated depending on experimental analysis results. In this study, forced-vibration testing is conducted on the steel footbridge by using an impact hammer. Low-amplitude broadband excitations are applied using an impact hammer to excite the bridge. The excitation force and measured responses are processed by passing them through a band-pass filter to obtain frequency-response functions, cross-power spectra, auto-power spectra, power spectral densities, and spectrograms. The system-identification procedure is based on input-output measurements. The obtained system-identification results are compared with the analytical results, which were obtained in a different previous study. A very good agreement is observed, thus providing a reliable set of identified modal properties (natural frequencies, damping ratios, and mode shapes) of the structure. The good correlations between analytical and experimental analyses show that no anomalies are detected along the structure. The experimental mode shapes are similar to what is expected from this type of structure. There is not any unexpected mechanism that changes the dynamic characteristics of the system.
机译:动态特征识别为钢结构的结构行为提供了重要的见识。实验模态分析用于检测动态特性,并包含几个阶段。首先,进行强制振动测试,产生频谱函数,通过分析处理后的频谱函数确定动态特性,最后,根据实验分析结果对分析模型进行校准或更新。在这项研究中,使用冲击锤对钢人行天桥进行了强制振动测试。使用冲击锤施加低振幅宽带激励来激励电桥。通过使它们经过带通滤波器来处理激励力和测得的响应,以获得频率响应函数,交叉功率谱,自功率谱,功率谱密度和频谱图。系统识别过程基于输入输出测量。将获得的系统识别结果与先前不同研究中获得的分析结果进行比较。观察到非常好的一致性,从而为结构提供了一组可靠的已识别模态特性(固有频率,阻尼比和模态形状)。分析与实验分析之间的良好相关性表明,沿结构未检测到异常。实验模式的形状类似于这种类型的结构所期望的形状。没有任何意外的机制会改变系统的动态特性。

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