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FRF-based structural damage detection of controlled buildings with podium structures: Experimental investigation
Authors:YL Xu  Q Huang  S Zhan  ZQ Su  HJ Liu
Institution:1. Department of Civil and Environmental Engineering, The Hong Kong Polytechnic University, Hong Kong, China;2. Shenzhen Graduate School, Harbin Institute of Technology, Shenzhen, China;3. Department of Mechanical Engineering, The Hong Kong Polytechnic University, Hong Kong, China
Abstract:How to use control devices to enhance system identification and damage detection in relation to a structure that requires both vibration control and structural health monitoring is an interesting yet practical topic. In this study, the possibility of using the added stiffness provided by control devices and frequency response functions (FRFs) to detect damage in a building complex was explored experimentally. Scale models of a 12-storey main building and a 3-storey podium structure were built to represent a building complex. Given that the connection between the main building and the podium structure is most susceptible to damage, damage to the building complex was experimentally simulated by changing the connection stiffness. To simulate the added stiffness provided by a semi-active friction damper, a steel circular ring was designed and used to add the related stiffness to the building complex. By varying the connection stiffness using an eccentric wheel excitation system and by adding or not adding the circular ring, eight cases were investigated and eight sets of FRFs were measured. The experimental results were used to detect damage (changes in connection stiffness) using a recently proposed FRF-based damage detection method. The experimental results showed that the FRF-based damage detection method could satisfactorily locate and quantify damage.
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