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首页> 外文期刊>Bulletin of Earthquake Engineering >Development of computing environment for the seismic performance assessment of reinforced concrete frames by using simplified nonlinear models
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Development of computing environment for the seismic performance assessment of reinforced concrete frames by using simplified nonlinear models

机译:用简化非线性模型开发钢筋混凝土框架抗震性能评估的计算环境

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摘要

A computing environment for the seismic performance assessment of reinforced concrete frames has been developed in Matlab in combination with OpenSees. It includes several functions which provide calculations of the moment-rotation relationship of plastic hinges in columns and beams, rapid determination of simplified nonlinear structural models, the post-processing of the results of analyses and structural performance assessment with different methods. The user can add new functions to the PBEE toolbox in order to support additional procedures for the seismic performance assessment of RC frames, or can just change the rules for determining the moment-rotation relationship of plastic hinges in columns and beams, which are the main source of uncertainty in simplified nonlinear models. In the paper, the capabilities of the computing environment (PBEE toolbox) are first explained by focusing on the procedures for determining the moment-rotation relationship of plastic hinges. Different examples are then presented, starting with a comparison between the calculated response of a four-storey RC frame building and the response obtained in a pseudo-dynamic experiment. The calculated response was determined with the two different structural models which are later on used for the demonstration of the seismic performance assessment of the same structure by the N2 method. Lastly, seismic performance assessment of an eight-storey frame is performed by using incremental dynamic analysis with consideration of the modelling uncertainties.
机译:Matlab与OpenSees相结合,开发了一种用于评估钢筋混凝土框架抗震性能的计算环境。它包括几个功能,这些功能可以计算柱和梁中塑料铰链的弯矩-旋转关系,快速确定简化的非线性结构模型,对分析结果进行后处理以及用不同方法进行结构性能评估。用户可以将新功能添加到PBEE工具箱中,以支持用于RC框架抗震性能评估的其他程序,或者可以仅更改确定柱和梁中塑料铰链弯矩-旋转关系的规则。简化非线性模型中不确定性的来源。在本文中,首先通过确定塑料铰链的力矩-旋转关系的过程来首先说明计算环境(PBEE工具箱)的功能。然后给出了不同的示例,首先是对四层RC框架建筑物的计算响应与拟动力实验中获得的响应进行比较。用两个不同的结构模型确定了计算的响应,随后将其用于通过N2方法演示相同结构的抗震性能评估。最后,考虑模型的不确定性,通过使用增量动力分析对八层框架进行抗震性能评估。

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