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Unified analysis of kinematic and inertial earthquake pile responses via the single-input response spectrum method

机译:用单输入响应谱法统一分析运动和惯性地震桩的响应

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In the seismic response of a structure-pile-soil system, a kinematic response due to the forced displacement of the surface ground is important, especially in a soft ground, together with the inertial response due to the inertial forces from superstructures. In this paper it is shown that a response spectrum method in terms of complex modal quantities can be used in the evaluation of the maximum kinematic and inertial seismic responses of the structure-pile-soil system to the ground motion defined at the engineering bedrock surface as an acceleration response spectrum. The notable point is that the kinematic response, the inertial response and the total response can be evaluated by the same analysis model and method by changing the model parameters. Then it is discussed which of the simple sum or the SRSS of the kinematic and inertial responses is appropriate even in resonant cases for the evaluation of the maximum pile-head bending moment. It is concluded through many examples that the validity of the simple sum or the SRSS depends on the relation between the fundamental natural period of the surface ground and that of the superstructure while an averaged evaluation is valid in resonant cases.
机译:在结构-桩-土系统的地震响应中,特别是在软土地基中,由于地表的强制位移而引起的运动响应以及由于上层建筑的惯性力而引起的惯性响应非常重要。本文表明,可以将基于复模态量的响应谱方法用于评估结构-桩-土系统对工程基岩表面所定义的地震动的最大运动和惯性地震响应。加速度响应谱。值得注意的是,可以通过更改模型参数,通过相同的分析模型和方法来评估运动响应,惯性响应和总响应。然后讨论了即使在共振情况下,运动和惯性响应的简单总和或SRSS中哪个适合于评估最大桩头弯矩。通过许多示例得出结论,简单总和或SRSS的有效性取决于地表基本自然周期与上部结构的自然周期之间的关系,而平均评估在共振情况下是有效的。

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