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Study on the effect of the motion state of interface on the damping characteristics of SSI system

机译:界面运动状态对SSI系统阻尼特性影响的研究

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Based on the theory of discontinuous dynamical systems, this paper investigates the effect of the motion state of interface on the damping characteristics of SSI system through the phase plane analysis method. The necessary and sufficient conditions for the coordinated motion state of interface between soil and structure are obtained. The relationship between the motion state of interface and the damping system is investigated via the shaking table test. It is verified that the coordinated motion state of interface is the decisive factor for the identification of damping system. The phase trajectories of the interface and the transfer functions of the system after the different magnitudes of vibration are further given. The test results show that the motion coordination mechanism is developed between soil and structure. The coordination mechanism enables soil and structure to have a unified and collaborative motion state after a small magnitude of the vibration. The SSI system can be viewed as an approximately classical damping system under a certain dynamic excitation.
机译:本文基于不连续动力系统理论,通过相平面分析方法研究了界面运动状态对SSI系统阻尼特性的影响。得到了土与结构界面协调运动状态的充要条件。通过振动台试验研究了界面运动状态与阻尼系统之间的关系。验证了界面协调运动状态是阻尼系统辨识的决定性因素。进一步给出了不同振动幅度后的界面相位轨迹和系统传递函数。试验结果表明,土壤与结构之间形成了运动协调机制。协调机制使土壤和结构在小幅度振动后具有统一的协同运动状态。可以将SSI系统视为在一定动态激励下的近似经典阻尼系统。

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