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首页> 外文期刊>Journal of structural engineering >Peak Factor-Based Modal Combination Rule of Response-Spectrum Method for Peak Floor Accelerations
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Peak Factor-Based Modal Combination Rule of Response-Spectrum Method for Peak Floor Accelerations

机译:基于峰值因子的响应频谱法规则,用于峰底加速度

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摘要

The seismic safety of acceleration-sensitive secondary elements rigidly connected to the primary structure can be ensured in the case of ordinary structures by simply and accurately estimating the largest peaks in the floor accelerations consistent with a given seismic hazard. A new modal combination rule is developed in this study to estimate the peak floor accelerations in the case of lumped mass, classically damped, multistoried structures. The formulation is based on stationary random vibration theory and the use of nonstationary peak factors together with the amplitudes of the specified design spectra. The proposed formulation is supported by the development of (1) an expression for estimating the peak factor for floor acceleration from the peak factors for modal displacement responses and peak modal contributions to the peak floor response, wherein both floor acceleration and modal peak factors are normalized by the (nonstationary) peak factor for input ground acceleration, and (2) a two-parameter power function for estimating the normalized modal peak factors for relative velocity from the oscillator period, together with the scaling equations for the two parameters in terms of ground-motion characteristics. A numerical study using five example buildings and six example ground motions shows that the proposed modal combination rule works well, with the absolute error averaged over all floors of the structure being less than 10% for 90% of the cases. Also, the proposed rule works better compared to when various peak factors are taken to be identical. (C) 2021 American Society of Civil Engineers.
机译:通过简单准确地估计与给定地震危害一致的地板加速度中的最大峰,可以确保刚性连接到初级结构的加速敏感次级元件的抗震敏感性次要元件的地震安全性。在本研究中开发了一种新的模态组合规则,以估计大量质量,经典阻尼,多层结构的情况下的峰值地板加速度。该配方基于固定式随机振动理论和使用非间断峰值因子以及指定设计光谱的幅度。所提出的配方由(1)的发展支持(1)一种表达式,用于估计地板加速度的峰值因子与模态位移响应的峰值因子和峰值模态贡献到峰值地板响应,其中楼层加速度和模态峰值因子是标准化的通过输入接地加速度的(非置性)峰值因子,和(2)用于估计来自振荡器周期的相对速度的归一化模态峰值因子的双参数功率功能,以及在地面的两个参数中的缩放方程 - 调节特征。使用五个示例建筑物和六个示例地图的数值研究表明,所提出的模态组合规则运行良好,在所有结构的所有楼层上平均均匀的绝对误差均为90%的情况。此外,与各种峰值因素相同时,所提出的规则更好地工作。 (c)2021年美国土木工程师协会。

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