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Modeling and assessment of bridge structure for seismic hazardTI Modeling and assessment of bridge structure for seismic hazard prevention

机译:地震危险的桥梁结构建模与评估TI地震危险的桥梁结构建模与评估TI

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摘要

This study uses data from Mao-Luo-Hsi Bridge to model the bridge structure and a set of developed alarm and action values to formulate guidelines for bridge maintenance and seismic hazard prevention. The bridge model is improved by incorporating on-site ambient vibration measurement to perform modal analyses. Dynamic analyses of the bridge are implemented using the established 3D model subjected to uniform loading and seismic force, with or without consideration of soil interaction with the structure. The maximum displacements for different sections of the bridge are compared, and statistical regression analyses are used to explore their correlation. Information for bridge safety assessment is proposed, which can mitigate loss of property and lives due to bridge failure. Regression analyses of the maximum displacements between abutments D and E of the considered bridge in the axial, horizontal, and vertical directions under various seismic intensities are conducted, giving R (2) values of 0.9462, 0.9352, and 0.9010, respectively. The developed maintenance guidelines are reliable since all parameters from regression analyses have a 95% confidence interval excluding the zero value. The bridge alarm value and action value are determined for this bridge site at earthquake intensity scales of 4 and 5, respectively.
机译:这项研究使用毛罗西大桥的数据对桥梁结构进行建模,并开发了一套警报和行动值,以制定桥梁维护和地震灾害预防的指南。通过结合现场环境振动测量以执行模态分析,改进了桥梁模型。桥梁的动力分析是使用已建立的3D模型进行的,该模型在均匀荷载和地震力作用下,考虑或不考虑土壤与结构的相互作用。比较了桥梁不同断面的最大位移,并使用统计回归分析来探讨它们的相关性。提出了桥梁安全评估信息,可以减轻由于桥梁故障而造成的财产损失和生命损失。在各种地震烈度下,对所考虑桥梁的桥墩D和E在轴向,水平和垂直方向上的最大位移进行回归分析,得出R(2)值分别为0.9462、0.9352和0.9010。制定的维护准则是可靠的,因为回归分析中的所有参数都具有95%的置信区间(不包括零值)。在地震烈度等级分别为4和5的情况下,确定该桥梁站点的桥梁警报值和作用值。

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