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Vulnerability Assessment of Existing Low-Rise Reinforced Concrete School Buildings in Low Seismic Region using Ambient Noise Method

机译:环境噪声法对低地震区现有低层钢筋混凝土学校建筑的脆弱性评估

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Ground movements triggered by the Bukit Tinggi earthquakes in 2007 to 2009 are believed to be the possible cause of several structural damages on a secondary school building of SMK Bukit Tinggi, in the state of Pahang, Malaysia. This paper describes the ambient noise study conducted on the damaged building (a 4-storey reinforced concrete frame laboratory building) and the adjacent buildings using tri-axial 1 Hz seismometer sensors. Fourier amplitude spectra (FAS) analysis was applied to determine the buildings natural frequencies for vulnerability assessment of the damaged structure in both longitudinal and transverse axes. Significant multiple peaks of FAS curves used for natural frequencies determination of the buildings show values between 4.18 to 4.34 Hz, 5.04 to 5.23 Hz, 6.07 to 6.54 Hz and 8.17 to 8.81 Hz, indicating the existence of translational and torsional vibration modes acting on the buildings. Differences in dynamic behaviour between the laboratory and the adjacent buildings may be responsible for the structural damages due to the independent structural response and excessive torsional effect during the Bukit Tinggi earthquake tremors.
机译:Bukit Tinggi地震在2007年至2009年触发的地面运动被认为是马来西亚彭亨州SMK Bukit Tinggi的中学建设的若干结构损害的可能原因。本文描述了在受损的建筑物进行的环境噪声的研究(一个4层钢筋混凝土框架实验楼),并用三轴向1个赫兹地震仪传感器相邻的建筑物。应用傅里叶幅度谱(FAS)分析来确定纵向和横向轴上损坏结构的脆弱性评估的建筑物自然频率。用于固有频率的FAS曲线的重要多个峰值确定建筑物的值显示4.18至4.34 Hz,5.04至5.23 Hz,6.07至6.54 Hz和8.17至8.81赫兹,表明存在于建筑物上的翻译和扭转振动模式。由于在Bukit Tinggi地震震颤期间,实验室和相邻建筑物之间的动态行为与相邻建筑物之间的动态行为的差异可能是由于独立的结构响应和过度扭转效应的结构损坏。

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