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Conditional spectrum-based ground motion selection. Part II: Intensity-based assessments and evaluation of alternative target spectra

机译:基于条件频谱的地面运动选择。第二部分:基于强度的评估和替代目标光谱的评估

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In a companion paper, an overview and problem definition was presented for ground motion selection on the basis of the conditional spectrum (CS), to perform risk-based assessments (which estimate the annual rate of exceeding a specified structural response amplitude) for a 20-story reinforced concrete frame structure. Here, the methodology is repeated for intensity-based assessments (which estimate structural response for ground motions with a specified intensity level) to determine the effect of conditioning period. Additionally, intensity-based and risk-based assessments are evaluated for two other possible target spectra, specifically the uniform hazard spectrum (UHS) and the conditional mean spectrum (CMS, without variability).It is demonstrated for the structure considered that the choice of conditioning period in the CS can substantially impact structural response estimates in an intensity-based assessment. When used for intensity-based assessments, the UHS typically results in equal or higher median estimates of structural response than the CS; the CMS results in similar median estimates of structural response compared with the CS but exhibits lower dispersion because of the omission of variability. The choice of target spectrum is then evaluated for risk-based assessments, showing that the UHS results in overestimation of structural response hazard, whereas the CMS results in underestimation. Additional analyses are completed for other structures to confirm the generality of the conclusions here. These findings have potentially important implications both for the intensity-based seismic assessments using the CS in future building codes and the risk-based seismic assessments typically used in performance-based earthquake engineering applications.
机译:在随附的论文中,提出了基于条件谱(CS)进行地面运动选择的概述和问题定义,以进行基于风险的评估(估计超过特定结构响应幅度的年速率),评估20层钢筋混凝土框架结构。在此,重复进行基于强度的评估(确定具有指定强度水平的地面运动的结构响应)的方法,以确定调节周期的影响。此外,基于强度和基于风险的评估还针对其他两个可能的目标光谱进行了评估,特别是均匀危险光谱(UHS)和条件平均光谱(CMS,无变异性)。在基于强度的评估中,CS中的条件调整期会严重影响结构响应估计。当用于基于强度的评估时,UHS通常会导致结构响应的中值估计值与CS相等或更高。与CS相比,CMS的结构响应中值估计值相似,但由于省略了变异性,因此散度较低。然后评估目标光谱的选择以进行基于风险的评估,结果表明,UHS导致结构响应危害的高估,而CMS导致结构估算的危险低估。完成其他结构的其他分析,以确认此处结论的一般性。这些发现对于未来建筑规范中使用CS的基于强度的地震评估以及基于性能的地震工程应用中通常使用的基于风险的地震评估都具有潜在的重要意义。

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