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The role of kinematic interaction on measured seismic response of soil-foundation-structure systems

机译:运动相互作用在土-基础-结构系统测得地震响应中的作用

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摘要

Kinematic interaction transfer functions, defined as the ratio of foundation input motion to free field motion, are commonly applied, while the motion measured at the foundation may differ from that of a hypothetical foundation input motion. Results from series of centrifuge experiments on a foundation-structure model, and two foundation models revealed that: (1) inertial interaction significantly affects the lateral and rocking transfer functions around structural flexible-base natural frequencies; (2) while amplitudes of the lateral transfer functions of the foundation-structure model are smaller than those of the two other the physical models, amplitudes of the rocking transfer functions are larger; thus, using available models may lead to over-reduction and over-introduction of lateral and rocking foundation motions, respectively; (3) the effect of foundation mass is not significant; (4) increasing the motion intensity decreases the incoherence parameters; and (5) incoherence parameters had good correlations with ground motion parameters and soil shear wave velocity.
机译:通常使用运动学相互作用传递函数,定义为基础输入运动与自由场运动的比率,而在基础上测量的运动可能与假设的基础输入运动不同。在基础结构模型和两个基础模型上进行的一系列离心实验结果表明:(1)惯性相互作用显着影响结构挠性基础固有频率周围的横向和摇摆传递函数; (2)虽然基础结构模型的横向传递函数的幅度小于其他两个物理模型的幅度,但摇摆传递函数的幅度较大;因此,使用可用的模型可能分别导致横向运动和摇摆基础运动的过度减小和过度引入; (3)基础质量的影响不大; (4)增加运动强度会降低不相干参数; (5)非相干参数与地震动参数和土剪波速度具有良好的相关性。

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