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Site effect on vulnerability of high-rise shear wall buildings under near and far field earthquakes

机译:近场和远场地震对高层剪力墙建筑易损性的场地效应

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摘要

Worldwide experience repeatedly shows that damages in structures caused by earthquakes are highly dependent on site condition and epicentral distance. In this paper, a 21-storey shear wall-structure built in the 1960s in Hong Kong is selected as an example to investigate these two effects. Under various design earthquake intensities and for various site conditions, the fragility curves or damage probability matrix of such building is quantified in terms of the ductility factor, which is estimated from the ratio of storey yield shear to the inter-storey seismic shear. For high-rise buildings, a higher probability of damage is obtained for a softer site condition, and damage is more severe for far field earthquakes than for near field earthquakes. For earthquake intensity of Ⅷ, the probability of complete collapse (P) increases from 1 to 24% for near field earthquakes and from 1 to 41% for far field earthquakes if the building is moved form a rock site to a site consisting a 80 m thick soft clay. For intensity Ⅸ, P increases from 6 to 69% for near field earthquake and from 14 to 79% for far field earthquake if the building is again moved form rock site to soft soil site. Therefore, site effect is very important and not to be neglected. Similar site and epicentral effects should also be expected for other types of high-rise structures.
机译:全世界的经验反复表明,地震造成的结构破坏高度依赖于场地条件和震中距离。本文以香港在1960年代建造的21层剪力墙结构为例来研究这两种作用。在各种设计地震烈度和各种工地条件下,根据延性因子对这种建筑物的易碎性曲线或破坏概率矩阵进行量化,该延性因子是根据层屈服剪切与层间地震剪切之比估算的。对于高层建筑,在较软的场地条件下,损坏的可能性更高,与近场地震相比,远场地震的破坏更为严重。对于is地震,如果建筑物从岩石场地移至80 m的场地,则完全倒塌(P)的概率对于近场地震从1%增加到24%,对于远场地震从1%增加到41%。厚软粘土。对于强度Ⅸ,如果建筑物再次从岩石位置移至软土位置,则对于近场地震,P从6%增加到69%,对于远场地震,从14%增加到79%。因此,场地效应非常重要,不容忽视。对于其他类型的高层结构,也应预期会有类似的位置和震中效应。

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