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Spatial seismic modeling of base-isolated buildings pounding against moat walls: effects of ground motion directionality and mass eccentricity

机译:基础隔震建筑物撞击护城河墙的空间地震建模:地震动向和质量偏心的影响

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Structural impact between adjacent buildings may induce local and, in some extreme cases, severe damage, especially in the case of seismically isolated buildings. This study parametrically investigates in the three-dimensional domain the effect of pounding on the peak response of base-isolated buildings, which are simulated as nonlinear three-dimensional multi-degree-of-freedom systems. Firstly, it is shown that considering unidirectional, instead of bidirectional, excitations may lead to underestimation of the base drift demands. Subsequently, the peak responses of seismically isolated buildings utilizing lead rubber bearings are studied while varying important parameters, such as the incidence angle of seismic excitations, the available seismic clearance, and mass eccentricities, under the action of bidirectional horizontal excitations. A large number of numerical simulations are performed using a specially developed software that implements an efficient approach to model impacts, taking into account arbitrary locations of contact points. It is found that the peak interstory drift ratio is significantly influenced by the directionality of the ground motion. Therefore, the seismic performance of structures should ideally be assessed examining the peak structural response while bidirectional ground motions are imposed at various incident angles. Furthermore, it is also observed that the interstory drift ratios increase while decreasing the available gap size, up to a certain value. Finally, the parametric analyses indicate that the effects of impact are more severe for structures with mass eccentricities, and in which case, the estimation of the critical incidence angle becomes more laborious. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:相邻建筑物之间的结构冲击可能会导致局部损坏,在某些极端情况下会造成严重损坏,尤其是在地震隔离的建筑物中。这项研究在三维域中以参数方式研究了撞击对基础隔离建筑的峰值响应的影响,这些基础建筑被模拟为非线性三维多自由度系统。首先,它表明,考虑单向而不是双向的激励,可能会导致低估基本漂移需求。随后,在双向水平激励作用下,在改变重要参数(例如地震激励的入射角,可用的地震清除率和质量偏心率)的同时,研究了使用铅橡胶轴承的地震隔离建筑物的峰值响应。使用专门开发的软件可以执行大量的数值模拟,该软件采用了一种有效的方法来对影响进行建模,同时考虑了接触点的任意位置。发现峰值层间位移比受地震动的方向性影响很大。因此,理想情况下,应在检查峰值结构响应的同时评估双向地震动在各种入射角度下对结构的抗震性能进行评估。此外,还观察到,层间漂移率增加,同时减小可用间隙尺寸,直至达到一定值。最后,参数分析表明,对于具有质量偏心率的结构,冲击的影响更为严重,在这种情况下,临界入射角的估计变得更加费力。版权所有(c)2016 John Wiley&Sons,Ltd.

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