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Synthesis of a vector-valued intensity measure for improved prediction of seismic demands in Inter-Story-Isolated (ISI) buildings subjected to near fault ground motions

机译:用于近乎故障地面运动的故事中孤立(ISI)建筑物中地震要求预测的综合性强度措施的合成

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摘要

An optimal Intensity Measure (IM) is key to accurate prediction of the Engineering Demand Parameters (EDPs) in structures subjected to seismic excitations. This study synthesizes a structure-specific, vector-valued IM for assessing the EDPs in Inter-Story-Isolated (ISI) buildings under near-fault (pulse and non-pulse type) ground motions. The synthesis is inspired by the comparable modal masses in the fundamental and another higher (generally second) mode in ISI buildings. The synthesis accommodates the dual mode participation by employing the respective pseudo-spectral accelerations (S-pa) and the spectral shape ('epsilon'(epsilon)) parameters in the proposed IM as components. A suite of pulse and non-pulse type motions are employed for the synthesis and subsequently fitting an IM vs. EDP regression model. Thereafter, the "Efficiency" and "Sufficiency" analysis are conducted for validation. The EDPs are obtained by non-linear dynamic analyses on alternative building frames with High Damping Rubber Bearing (HDRB) based ISI systems. A Principal Component Regression (PCR) is employed for accommodating the multi-collinearity in the IM. The choice of the Principal Components (PCs) adopts a leave-one-out cross-validation approach. The proposed IM is shown to offer higher Efficiency and Sufficiency compared with the existing non-structure-specific (Peak Ground Acceleration, Velocity, Displacement, Arias Intensity, Cumulative Absolute Velocity, Characteristic Intensity, Specific Energy Density etc.) and structure-specific (Acceleration/Velocity Spectrum Intensity, Housner Intensity, Pseudo-spectral acceleration at fundamental time period etc.) IMs. Higher Efficiency is also noted under the pulse type motions comparing the non-pulse ones. The IM is more efficient in predicting the Inter-Story Drift Ratios (IDRs), Total Drift Ratios (TDRs) than the Peak Floor Accelerations (PFA) and Bearing Displacements (PBD). The proposed IM is shown to be unbiased and robust.
机译:最佳强度测量(IM)是精确预测经受地震激励的结构的工程需求参数(EDP)的关键。本研究合成了用于在近故障(脉冲和非脉冲型)地面运动的故事间隔内(ISI)建筑物中评估EDP的结构特异性矢量值IM。该合成通过ISI建筑物中的基本和另一个更高(一般二)模式的可比模态质量的启示。该合成通过在所提出的IM作为组件中采用各自的伪光谱加速度(S-PA)和光谱形状('epsilon'(epsilon))参数来容纳双模参与。用于合成的脉冲和非脉冲型运动套件,随后拟合IM与EDP回归模型。此后,进行“效率”和“足够”分析进行验证。 EDP​​是通过在具有高阻尼橡胶轴承(HDRB)的ISI系统的替代构建框架上的非线性动态分析获得。采用主成分回归(PCR)来适应IM中的多相共性性。主要组件(PC)的选择采用休假交叉验证方法。与现有的非结构特异性(峰接地加速度,速度,位移,芳叠强度,累积绝对速度,特征强度,特定能量密度等)相比,该提出的IM被证明提供更高的效率和充足性。(加速/速度频谱强度,租户强度,基本时间段的伪光谱加速度等)IMS。在比较非脉冲型运动下还注意到较高效率。 IM更有效地预测故事间漂移比(IDRS),总漂移比(TDRS)比峰底底部加速度(PFA)和轴承位移(PBD)。所提出的IM被证明是无偏的和稳健的。

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