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Influence of ground motion characteristics on the optimal single concave sliding bearing properties for base-isolated structures

机译:地震动对基础隔震结构最佳单凹滑动轴承性能的影响

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This study examines the influence of ground motion characteristics on the optimal friction properties of single concave sliding bearings employed for the seismic isolation of structural systems. The evaluation of the optimal properties is carried out by considering a non-dimensional formulation which employs the peak ground acceleration (PGA) and the peak ground acceleration-to-velocity (PGA/PGV) ratio as ground motion parameters. A two-degree-of-freedom (2dof) model is employed to describe the isolated system and two different families of records representative respectively of near fault and far field seismic inputs are considered. Following the nondimensionalization of the equation of motion for the proposed ground motion parameters, it is shown that the non-dimensional responses obtained for the two types of seismic inputs are similar. This result confirms that PGA/PGV is a good indicator of the frequency content and of other characteristics of ground motion records, helping to reduce the scatter in the response. Regression expressions are also obtained for the optimal values of the friction coefficient that minimizes the superstructure displacements relative to the base as a function of the abovementioned ground motion parameter and of the dimensionless system parameters. These expressions can be used for the preliminary estimation of the optimal properties of isolation bearings with a single concave sliding surface or double concave sliding surfaces with equal friction coefficient.
机译:本研究探讨了地面运动特性对用于结构系统隔震的单凹形滑动轴承最佳​​摩擦性能的影响。最佳性能的评估是通过考虑采用无量纲公式进行的,该公式采用峰值地面加速度(PGA)和峰值地面加速度与速度(PGA / PGV)之比作为地面运动参数。采用两自由度(2dof)模型来描述隔离系统,并考虑分别代表近断层和远场地震输入的两个不同记录族。对于提出的地面运动参数,对运动方程进行了无量纲化,结果表明,针对两种类型的地震输入获得的无量纲响应是相似的。该结果证实,PGA / PGV是频率含量和地面运动记录的其他特征的良好指示,有助于减少响应中的分散。还获得了摩擦系数的最优值的回归表达式,该最优表达式使上述上部地面运动参数和无量纲系统参数的相对于基础的上部结构位移最小化。这些表达式可用于初步估计具有相同摩擦系数的单凹面或双凹面的隔离轴承的最佳性能。

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