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Engineering analysis of strong ground rocking and its effect on tall structures

机译:强夯的工程分析及其对高层结构的影响

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Two, the most intensive 6-dof ground motion records were selected from a database of a program of acquiring seismic aftershocks at Kefalonia Greek Island as reported by Perron et al. in 2018 [1]. The maximum Modified Mercalli (MM) intensity VII and peak ground velocity 18.4 cm/s reached during these seismic events made it possible to investigate substantial structural response under combined translational and rotational excitations. Respective horizontal-rocking effects are studied first on a simplified cantilever model of a slender tower. Next, the seismic responses of two 10 and 30 story tall buildings and a 160 m, reinforced concrete industrial chimney under the joint rocking and horizontal excitations are investigated in detail. A complicated pattern of translational-rocking seismic effects on slender structures was observed. It was noted that sometimes the presence of seismic rotations about horizontal axis increases the overall response (up to 30%), sometimes it decreases the combined seismic response. The net effect depends primarily on two, the most important structural parameters: fundamental natural period and effective height of the analysed structure. The rocking response spectrum proposed in Eurocode 8 part 6 for slender structures was compared with seismic time history response analyses of the r/c chimney, yielding its substantial conservatism compared with the time history response computations using the chosen records of 6-dof strong ground motion. It is also concluded that the application of the familiar SRSS rule to combine the horizontal and rocking effects may underestimate the overall seismic response. This may be important for future calibrations of the seismic codes including rocking ground motion effects.
机译:根据Perron等人的报道,从Kefalonia希腊岛地震余震采集程序的数据库中,选择了两个最密集的6 d地面运动记录。在2018年[1]。在这些地震事件中达到的最大修正Mercalli(MM)强度VII和峰值地面速度18.4 cm / s,使得研究平动和旋转激励组合下的实质结构响应成为可能。首先在细长塔的简化悬臂模型上研究了各自的水平摇摆效应。接下来,详细研究了两个10和30层高的建筑物以及一个160 m的钢筋混凝土工业烟囱在共同的摇摆和水平激励作用下的地震响应。观察到了细长结构上平移摇摆地震效应的复杂模式。注意到有时绕水平轴的地震旋转会增加整体响应(高达30%),有时会降低组合的地震响应。净效应主要取决于两个最重要的结构参数:基本自然周期和所分析结构的有效高度。将欧洲规范8第6部分中提议的细长结构的摇摆响应谱与遥控烟囱的地震时程响应分析进行了比较,与使用6 dof强烈地面运动的选定记录的时程响应计算相比,它具有相当大的保守性。 。还得出结论,应用熟悉的SRSS规则来组合水平和摇摆效应可能会低估整体地震响应。这对于将来的地震代码校准(包括摇摆的地震动影响)可能很重要。

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