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Application of Incremental Dynamic Analysis (IDA) Method for Studying the Dynamic Behavior of Structures During Earthquakes

机译:增量动力分析法在地震结构动力特性研究中的应用

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Prediction of existing buildings’ vulnerability by future earthquakes is one of the most essential topics in structural engineering. Modeling steel structures is a giant step in determining the damage caused by the earthquake, as such structures are increasingly being used in constructions. Hence, two same-order steel structures with two types of structural systems were selected (coaxial moment frames and moment frame). In most cases, a specific structure needs to satisfy several functional levels. For this purpose, a method is required to determine the input request to the structures under possible earthquakes. Therefore, the Incremental Dynamic Analysis (IDA) was preferred to the Push-Over non-linear static method for the analysis and design of the considered steel structures, due its accuracy and effect of higher modes at the same time intervals. OpenSees software was used to perform accurate nonlinear analysis of the steel structure. Two parameters (spectral acceleration and maximum ground acceleration) were introduced to the modeled frames to compare the numerical correlations of seismic vulnerability obtained by two statistical methods based on the "log-normal distribution" and "logistics distribution", and finally, the parameters of displacement and drift were assessed after analysis.
机译:预测未来地震对现有建筑物的脆弱性是结构工程中最重要的主题之一。对钢结构进行建模是确定地震造成的破坏的重要步骤,因为此类结构正越来越多地用于建筑中。因此,选择了两种具有两种结构体系的同阶钢结构(同轴弯矩框架和弯矩框架)。在大多数情况下,特定的结构需要满足几个功能级别。为此,需要一种方法来确定可能发生地震时对结构的输入请求。因此,在考虑的钢结构分析和设计中,增量动力分析(IDA)优于Push-Over非线性静态方法,因为它的准确性和在相同时间间隔的较高模态的影响。使用OpenSees软件对钢结构进行精确的非线性分析。将两个参数(频谱加速度和最大地面加速度)引入模型框架,以比较两种基于“对数正态分布”和“逻辑分布”的统计方法获得的地震易损性的数值相关性,最后,分析后评估位移和漂移。

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