ZHU Qian-kun, PU Xing-long, HUI Xiao-li, ZHANG Qiong, DU Yong-feng. Serviceability evaluation and control of suspension structure of Gansu gymnasium based on pedestrian- structure coupled vibration[J]. Engineering Mechanics, 2018, 35(S1): 46-52. DOI: 10.6052/j.issn.1000-4750.2017.06.S003
Citation: ZHU Qian-kun, PU Xing-long, HUI Xiao-li, ZHANG Qiong, DU Yong-feng. Serviceability evaluation and control of suspension structure of Gansu gymnasium based on pedestrian- structure coupled vibration[J]. Engineering Mechanics, 2018, 35(S1): 46-52. DOI: 10.6052/j.issn.1000-4750.2017.06.S003

Serviceability evaluation and control of suspension structure of Gansu gymnasium based on pedestrian- structure coupled vibration

  • In order to study the vibration serviceability of large-span floor under the motivation of pedestrians,, the Gansu Provincial Gymnasium is studied as an example. The finite element model of this large-span suspension structure is established using ANSYS. The biodynamic model is simulated with stiffness-mass-damping (SMD) of single degree of freedom system, which is combined with the Fourier series load model to represent a single pedestrian load. Then the combined pedestrian load is loaded in the finite element model, and the acceleration response of the fixed-point loading, single-step moving loading and moving loading of population synchronization under the conditions of considering the pedestrian-structure coupling vibration is analyzed. The serviceability of the suspension structure is evaluated by the peak acceleration as the index. A single degree of freedom TMD and 3-DOF TMD are used to control the excessive vibration of the structure, and the damping effect of the single degree of freedom TMD and 3-DOF TMD is compared. The results show that 3-DOF TMD has good effect in controlling human induced vibration of large span floor structure.
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