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Seismic risk assessment of reinforced concrete buildings

机译:钢筋混凝土建筑物的地震风险评估

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Earthquakes originating from the Vrancea seismic source in Romania affect large areas which include neighbouring countries such as Bulgaria or the Republic of Moldova. In Romania, over 50% of the territory and population is exposed to the Vrancea earthquakes; consequently, there are many pre-code Reinforced Concrete (RC) buildings. This type of buildings should be strengthened in accordance with the European and National Codes in force. Different scenarios of dynamic amplification on physical models tested on shaking tables in the laboratory and actual case studies were examined as to the provisions in force. The objective of this contribution is to propose a control method based on both seismic monitoring and the structural analysis of a RC building. The building considered was designed as a five stories masonry structure with reinforced concrete cores that was erected during the 1950s. The paper aims to assess the RC building by comparatively presenting the strengthening techniques of irregular RC buildings with reference to their structural performance. It suggests alternative solutions based on modern technologies and provides a practical and applicable interpretation of dynamic amplification at the upper part of buildings. In conclusion, it may be said that seismic instrumentation is an essential tool both for assessing building behaviour and monitoring RC building rehabilitation. The major outcomes of the collaborative research in the field of seismic risk assessment are outlined and a modern assessment concept is presented.
机译:源自罗马尼亚Vrancea地震震源的地震影响大范围,其中包括保加利亚或摩尔多瓦共和国等邻国。在罗马尼亚,超过50%的领土和人口遭受了Vrancea地震的袭击;因此,有许多预编码的钢筋混凝土(RC)建筑物。此类建筑物应根据现行的欧洲和国家法规予以加强。根据现行规定,对在实验室振动台上测试的物理模型进行动态放大的不同场景和实际案例研究进行了研究。该贡献的目的是提出一种基于地震监测和RC建筑物结构分析的控制方法。所考虑的建筑物设计为五层砌筑结构,带有钢筋混凝土芯,建于1950年代。本文旨在通过比较参考不规则钢筋混凝土结构的性能来评估钢筋混凝土建筑物的性能。它提出了基于现代技术的替代解决方案,并为建筑物上部的动态放大提供了实用且适用的解释。总之,可以说地震仪器是评估建筑物行为和监视RC建筑物修复的必不可少的工具。概述了地震风险评估领域合作研究的主要成果,并提出了现代评估概念。

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