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Uncertain-parameter sensitivity of earthquake input energy to base-isolated structure

机译:地震输入能量对基础隔震结构的不确定度敏感性

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摘要

The input energy to a base-isolated (BI) building during an earthquake is considered and formulated in the frequency domain. The frequency-domain approach for input energy computation has some notable advantages over the conventional time-domain approach. Sensitivities of the input energy to the BI building are derived with respect to uncertain parameters in the base-isolation system. It is demonstrated that the input energy can be of a compact form via the frequency integration of the product between the input component (Fourier amplitude spectrum of acceleration) and the structural model component (so-called energy transfer function). With the help of this compact form, it is shown that the formulation of earthquake input energy in the frequency domain is essential for deriving the sensitivities of the input energy to the BI building with respect to uncertain parameters. The sensitivity expressions provide us with information on the most unfavorable combination of the uncertain parameters which leads to the maximum energy input.
机译:地震期间对基础隔离(BI)建筑物的输入能量在频域中进行考虑和公式化。与传统的时域方法相比,用于输入能量计算的频域方法具有一些明显的优势。相对于基础隔离系统中的不确定参数,得出了BI建筑物输入能量的灵敏度。通过输入分量(加速度的傅立叶振幅谱)和结构模型分量(所谓的能量传递函数)之间乘积的频率积分,可以证明输入能量可以是紧凑形式。借助于这种紧凑的形式,表明了在频域中地震输入能量的公式化对于对于不确定参数推导输入能量对BI建筑物的敏感性至关重要。灵敏度表达式为我们提供了有关不确定参数最不利组合的信息,这些参数导致最大能量输入。

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