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A simulated design procedure for the assessment of seismic capacity of existing reinforced concrete buildings

机译:评估现存钢筋混凝土建筑物抗震能力的模拟设计程序

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摘要

This paper presents the general criteria and implementation of an automatic procedure to evaluate the seismic capacity of existing reinforced concrete (RC) regular buildings. The method represents a useful tool in the framework of mechanical based vulnerability assessment methods. In particular, the seismic capacity is retrieved via pushover analyses on a lumped plasticity model for the building. Unlike recent approaches that rely on a single representative structural model for an entire building population, the proposed method allows virtually all the buildings of the population to be analysed in an automatic loop. With the aim of expediting and automatizing the analysis process, a dedicated software was implemented, whose main functions are: identifying possible structural systems compatible with regular building shapes of assigned dimensions and designing its elements in terms of cross-section and reinforcement; constructing the related nonlinear model and performing pushover analyses in order to determine synthetic capacity parameters useful for preliminary vulnerability assessment at a large scale. The software application and potentialities are shown in an example for the generic building of a class.
机译:本文介绍了用于评估现有钢筋混凝土(RC)常规建筑物的抗震能力的一般标准和自动程序的实现。该方法代表了基于机械的脆弱性评估方法框架中的有用工具。特别是,通过对建筑物的集总可塑性模型进行推覆分析来检索抗震能力。与依赖于整个建筑物人口的单个代表性结构模型的最新方法不同,所提出的方法实际上允许对人口中的所有建筑物进行自动循环分析。为了加快和自动化分析过程,实施了专用软件,其主要功能是:识别与指定尺寸的常规建筑物形状兼容的可能的结构系统,并根据横截面和钢筋设计其元素;建立相关的非线性模型并进行下推分析,以确定可用于大规模初步评估的综合能力参数。在示例中显示了该类的通用构建的软件应用程序和潜力。

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