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Earthquake-induced poundings of a seismically isolated building with adjacent structures

机译:地震对相邻建筑物的隔震建筑物造成的冲击

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摘要

Past earthquakes have revealed detrimental effects of pounding on the seismic performance of conventional fixed-supported buildings, ranging from light local damage to more severe structural failure. However, the potential consequences of earthquake-induced poundings on seismically isolated buildings can be much more substantial, and, thus, should be assessed. This paper investigates, through numerical simulations, the effects of potential pounding incidences on the seismic response of a typical seismically isolated building. Such impact events may occur either with the surrounding moat wall at the building's base or against an adjacent building that may stand at a very close distance. A specialized software application has been developed in order to efficiently perform numerical simulations and parametric studies of this problem. The effects of certain parameters, such as the size of the separation distance, the characteristics of the adjacent structures and the earthquake characteristics, have been investigated using the developed software. The simulations have revealed that even if a sufficient gap is provided, with which poundings with the surrounding moat wall at the base of the building could be avoided, this does not ensure that the building will not eventually collide with neighboring buildings due to the deformations of their superstructures.
机译:过去的地震表明,冲击对常规固定支撑建筑物的地震性能有不利影响,范围从轻微的局部破坏到更严重的结构破坏。但是,地震引起的撞击在地震隔离的建筑物上的潜在后果可能要大得多,因此应进行评估。本文通过数值模拟研究了潜在的撞击事件对典型的地震隔离建筑物的地震响应的影响。此类撞击事件可能发生在建筑物底部的护城河墙,也可能发生在相距很近的相邻建筑物上。为了有效执行此问题的数值模拟和参数研究,已经开发了专用软件应用程序。使用开发的软件已经研究了某些参数的影响,例如间隔距离的大小,相邻结构的特性和地震特性。仿真显示,即使提供了足够的间隙,也可以避免建筑物底部周围的护城河壁受到重击,但这并不能确保建筑物最终不会由于建筑物的变形而与相邻建筑物发生碰撞。他们的上层建筑。

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