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Effect of the seismic excitation angle on the dynamic response of adjacent buildings during pounding

机译:冲击过程中地震激励角对相邻建筑物动力响应的影响

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摘要

The excitation angle or angle of incidence is the angle in which the horizontal seismic components are applied with respect to the principal structural axes during a time history analysis. In this study, numerical simulations and parametric studies are performed for the investigation of the effect of the angle of seismic incidence on the response of adjacent buildings, which may experience structural pounding during strong earthquakes due to insufficient or no separation distance between them. A specially developed software application has been used that implements a simple and efficient methodology, according to which buildings are modelled in three dimensions and potential impacts are simulated using a novel impact model that takes into account the arbitrary location of impacts and the geometry at the point of impact. Two typical multi-storey buildings and a set of earthquake records have been used in the performed analyses. The results of the conducted parametric studies reveal that it is very important to consider the arbitrary direction of the ground motion with respect to the structural axes of the simulated buildings, especially during pounding, since, in many cases, the detrimental effects of pounding become more pronounced for an excitation angle different from the commonly examined 0 or 90 degrees.
机译:激励角或入射角是在时程分析过程中相对于主要结构轴应用水平地震分量的角度。在这项研究中,进行了数值模拟和参数研究,以研究地震入射角对相邻建筑物的响应的影响,由于建筑物之间的间距不足或没有间距,它们可能会在强震中经历结构撞击。使用了专门开发的软件应用程序,该应用程序实现了一种简单而有效的方法,根据该方法,可以对建筑物进行三维建模,并使用新颖的碰撞模型模拟潜在的碰撞,该模型考虑了碰撞的任意位置和该点的几何形状影响。在执行的分析中使用了两座典型的多层建筑和一组地震记录。进行的参数研究结果表明,考虑地面运动相对于模拟建筑物的结构轴的任意方向非常重要,尤其是在夯实过程中,因为在许多情况下,夯实的有害影响越来越大对于与通常检查的0或90度不同的激发角,其音效明显。

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