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首页> 外文期刊>Journal of structural engineering >Maximum Superstructure Response of Sliding-Base Structures under Earthquake Excitation
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Maximum Superstructure Response of Sliding-Base Structures under Earthquake Excitation

机译:地震励磁下滑动基地结构的最大上层建应响应

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Sliding-base (SB) systems are efficient for protecting low-rise buildings in high-seismicity rural areas. The normalized peak pseudoacceleration (NPPA) of one-story SB structures under three-component earthquake excitation and its dependency on various structural and ground motion characteristics are investigated herein. The relationships between the NPPA and the normalized peak ground acceleration (PGA) are basically identical for both orthogonal horizontal directions. The vertical earthquake component can either increase or reduce the horizontal superstructure response; for most cases, its effect is negligible. The NPPA first increases and then decreases as the natural period of the superstructure increases; the responses at the period of the maximum mean NPPA can be used to represent the responses of possible SB structures. The ratio of the natural periods in the two orthogonal horizontal directions and the difference between the static and dynamic friction coefficients affect the superstructure responses of SB structures little. The earthquake magnitude and source-to-site distance also exhibit negligible effects. The superstructure responses under pulse-like ground motions are generally smaller than those under non-pulse-like ground motions. Local site conditions affect the superstructure response; sites on softer soils display larger NPPAs. However, this effect decreases rapidly as the normalized PGA increases. For a given site class, mass ratio, and normalized PGA, the NPPA probability distribution approximately follows a normal distribution. Simplified equations with associated regression coefficients were proposed to estimate the mean values and coefficients of variation (COVs) of NPPAs. These equations can be further used to predict the NPPA corresponding to any probability of nonexceedance. (C) 2020 American Society of Civil Engineers.
机译:滑动底座(SB)系统是有效保护高地震性农村地区的低层建筑物。本文研究了三个组件地震激励下的一层SB结构的归一化峰伪卡(NPPA)及其对各种结构和地面运动特性的依赖性。 NPPA与归一化峰接地加速度(PGA)之间的关系对于两种正交水平方向基本相同。垂直地震部件可以增加或减少水平上部结构响应;对于大多数情况而言,其效果可忽略不计。 NPPA首先增加,然后随着上部结构的自然周期增加而降低;最大平均NPPA期间的响应可用于表示可能的SB结构的响应。两个正交水平方向上的自然周期的比率和静态和动态摩擦系数之间的差异影响了Sb结构的超结构响应。地震幅度和源距离距离也表现出可忽略的效果。脉冲状地运动下的上部结构响应通常小于非脉冲状地运动下的响应。本地站点条件影响超结构响应;柔软土壤上的网站显示较大的NPPA。然而,随着归一化的PGA增加,这种效果迅速降低。对于给定的站点类,质量比和归一化PGA,NPPA概率分布大致遵循正态分布。提出了具有相关回归系数的简化方程来估计NPPA的变异(COV)的平均值和系数。这些等式可以进一步用于预测对应于不扩展的任何概率的NPPA。 (c)2020年美国土木工程师协会。

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