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STOCHASTIC ANALYSIS OF SENSITIVITY AND EFFICIENCY OF BASE ISOLATION SYSTEM IN SEISMIC STRUCTURAL PROTECTION

机译:隔震体系隔震体系灵敏度和效率的随机分析。

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In this research the seismic response of structures isolated at the base by means of High Damping Laminated Rubber Bearings (HDRB) is evaluated. The analysis is performed by using a stochastic approach and a Gaussian zero mean non stationary stochastic process is used in order to model the seismic acceleration acting at the base of the structure. In order to take into account of the non-linear constitutive behavior both of the base isolation device and of the structure, the hysteretic differential Bouc-Wen model (BWM) is adopted. Moreover, the stochastic linearization method in the time domain is adopted to estimate the statistical moments of the non-linear system response in the state space, After estimating the system response variance a sensitivity analysis is carried out. The final aim of the research is to asses the real capacity of base isolation devices in order to protect the structures from seismic actions, by avoiding a non-linear response with associated large plastic displacements, and, therefore, by limiting related damage phenomena in structural and non structural members. In order to achieve this objective the stochastic response of a non-linear n-dof shear-type base isolated building is analyzed. The protection level offered to the structure by the base isolators is then assessed by evaluating the reduction both of the displacement response and the hysteretic dissipated energy.
机译:在这项研究中,通过高阻尼层压橡胶轴承(HDRB)评估了在基础处隔离的结构的地震响应。通过使用随机方法进行分析,并使用高斯零均值非平稳随机过程来模拟作用在结构基础上的地震加速度。为了同时考虑基本隔离装置和结构的非线性本构行为,采用了迟滞微分Bouc-Wen模型(BWM)。此外,采用时域随机线性化方法估计状态空间中非线性系统响应的统计矩。估计系统响应方差后,进行灵敏度分析。该研究的最终目的是评估基础隔离装置的真实能力,从而通过避免与大塑性位移相关的非线性响应,从而限制结构中的相关破坏现象,从而保护结构免受地震作用。和非结构性成员。为了实现该目标,分析了非线性n-dof剪切型基础隔震建筑的随机响应。然后,通过评估位移响应和滞回耗能的降低,来评估基础隔离器为结构提供的保护等级。

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