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Variability in concrete mechanical properties as a source of in-plan irregularity for existing RC framed structures

机译:混凝土机械性能的变化是现有RC框架结构的计划内不规则源

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摘要

Mechanical properties of concrete can consistently affect the seismic performance of RC buildings. A proper determination of the concrete strength is therefore essential for a reliable modeling of the structure. The current European Technical Code, Eurocode 8, provides a criterion for the strength assumption related to the knowledge level of the structure, which does not take into account the variability of the strength. If the concrete strength is affected by a large variability, the conventional strength value suggested by Eurocode 8 can be not conservative, since it does not consider the possible torsional effects due to a not homogeneous strength distribution and the reduced capacity of the weaker members. In this paper the effects of the concrete strength variability on the seismic performance are investigated with a case study, that is a 4-storeys 3D framed building. The seismic response of the case study by assuming different amounts of strength variability has been compared with the Eurocode 8 previsions, both in terms of possible torsional effects and seismic performance.
机译:混凝土的机械性能会持续影响RC建筑物的抗震性能。因此,正确确定混凝土强度对于结构的可靠建模至关重要。当前的欧洲技术法规,欧洲法规8,为与结构知识水平相关的强度假设提供了标准,该标准未考虑强度的可变性。如果混凝土强度受较大变化的影响,则欧洲规范8提出的常规强度值可能并不保守,因为它没有考虑由于强度分布不均和弱构件的承载能力降低而可能产生的扭转效应。本文通过案例研究,即一栋4层3D框架建筑,研究了混凝土强度变化对抗震性能的影响。在可能的扭力影响和抗震性能方面,通过假设不同强度变化量的案例研究的抗震响应已与Eurocode 8规范进行了比较。

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