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Optimal stiffness distribution of mid-storey- isolated buildings considering storey drift and floor acceleration response

机译:考虑楼层漂移和地板加速度响应的楼层隔离建筑的最佳刚度分布

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This paper formulates a response prediction formula based on complex modal superposition and frequency response functions of single-degree-of-freedom systems for both storey drift and floor acceleration of a mid-storey-isolated building under the assumption of white noise input. This study verifies that the proposed formula can estimate the seismic response of a building accurately, even if a system includes the overdamped mode, by comparing the same with the results of a time-history analysis. To support the structural design of a mid- storey-isolated building, the proposed formula is applied to an optimal design problem, which considers the objective function of acceleration response in a superstructure and constraints on storey drifts. A genetic algorithm is employed to obtain the optimal stiffness distribution and damping coefficient of the isolation layer. This study confirms that the acceleration response of the optimal design is successfully reduced, with other responses remaining within acceptable ranges.
机译:本文制定基于单度的自由度系统的一个中等层隔离建筑的白噪声输入的假设下两个层漂移和地板加速度复杂模态叠加和频率响应函数的响应预测公式。本研究验证所提出的公式可以估算建筑物准确的地震响应,即使系统包括过阻尼模式,通过用时程分析的结果比较相同。为了支持中期层隔离建筑的结构设计,所提出的公式应用于一个最佳设计的问题,它参考在上层漂移的上部结构和约束加速响应的目标函数。的遗传算法来获得所述隔离层的最佳刚度分布和阻尼系数。这项研究证实,优化设计的加速度响应成功地降低了,与可接受的范围内剩余的其他响应。

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