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Seismic performance sensitivity to concrete strength variability: a case-study

机译:抗震性能对混凝土强度变化的敏感性:案例研究

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摘要

Existing building structures can easily present material mechanical properties which can largely vary even within a single structure. The current European Technical Code, Eurocode 8, does not provide specific instructions to account for high variability in mechanical properties. As a consequence of the high strength variability, at the occurrence of seismic events, the structure may evidence unexpected phenomena, like torsional effects, with larger experienced deformations and, in turn, with reduced seismic performance. This work is focused on the reduction in seismic performance due to the concrete strength variability. The analysis has been performed on a case-study, i.e., a 3D RC framed 4 storey building. A Normal distribution, compatible to a large available database, has been taken to represent the concrete strength domain. Different plan layouts, representative of realistic strength distributions, have been considered, and a statistical analysis has been performed on the induced reduction in seismic performance. The obtained results have been compared to the standard analysis as provided by Eurocode 8 for existing buildings. The comparison has shown that the Eurocode 8 provisions are not conservative for existing buildings having a large variability in concrete strength.
机译:现有的建筑结构可以很容易地表现出材料的机械性能,即使在单个结构内,其机械性能也可以有很大的变化。当前的欧洲技术法规,欧洲法规8,没有提供具体说明来说明机械性能的高度可变性。由于强度的高可变性,在发生地震事件时,该结构可能会显示出预料不到的现象,例如扭转效应,具有较大的经历的变形,进而降低了地震性能。这项工作的重点是由于混凝土强度变化而导致的抗震性能下降。该分析是在个案研究(即3D RC框架的4层建筑物)上进行的。已采用与大型可用数据库兼容的正态分布来表示混凝土强度域。已经考虑了代表实际强度分布的不同计划布局,并且对引起的抗震性能下降进行了统计分析。将获得的结果与欧洲规范8对现有建筑物提供的标准分析进行了比较。比较表明,对于混凝土强度差异较大的现有建筑物,欧洲规范8的规定并不保守。

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