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Tall buildings in Turkey, their characteristic structural features and dynamic behaviour

机译:土耳其的高层建筑,其特征结构特征和动态行为

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Since the early twenty-first century, tall building construction has gained significant momentum in the urban cities of Turkey as a result of the population and economic growth. Accruing more than 1500 buildings by year 2015, the majority of the country's exposure now clusters across the seismically active landscape of the Istanbul metropolitan area. As such, the underlying earthquake risk calls for the investigation of the seismic performance of these structures. While hazard studies for Istanbul are available, the literature is still devoid of studies related to the seismic risk assessment of tall buildings located there. As an attempt to fill this gap, this paper focuses on the characterization and quantification of the existing exposure to allow risk assessment both at single building and portfolio levels. To this end, an extensive tall building inventory containing the structural drawings of 94 buildings is compiled and thoroughly examined to make a projection of the design practice. After establishing statistically representative archetypes, we quantified their dynamic response to 1999 Duzce and Kocaeli earthquake ground motions. We notice a maximum difference of 100% in the maximum interstory drift ratios (equaling a 2% increase in absolute value) between two different tall building archetypes. Moreover, the analysis results indicate that the incident angle of the applied ground-motion can be a discriminant factor between structural collapse and survival. The outcome of this study puts forward a robust basis for prospective structural analyses, collapse risk assessment as well as loss estimation analyses of tall buildings in Istanbul.
机译:自21世纪初以来,由于人口和经济增长,土耳其城市的高层建筑建设势头显著。到2015年,该国的建筑数量将超过1500座,目前该国的大部分建筑都集中在伊斯坦布尔大都会区地震活跃的地区。因此,潜在的地震风险要求对这些结构的抗震性能进行调查。虽然伊斯坦布尔的危险研究可用,但文献中仍然缺乏与位于那里的高层建筑的地震风险评估相关的研究。为了填补这一空白,本文侧重于现有风险敞口的表征和量化,以便在单个建筑和投资组合层面进行风险评估。为此,编制了一份包含94栋建筑结构图的广泛高层建筑清单,并对其进行了彻底检查,以对设计实践进行预测。在建立了具有统计代表性的原型之后,我们量化了它们对1999年Duzce和Kocaeli地震地面运动的动态响应。我们注意到,两种不同的高层建筑原型之间的最大层间位移比最大差异为100%(等于绝对值增加2%)。此外,分析结果表明,地面运动的入射角可以作为结构倒塌和存活的判别因素。这项研究的结果为伊斯坦布尔高层建筑的前瞻性结构分析、倒塌风险评估以及损失估计分析提供了坚实的基础。

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