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Characterization of Equivalent Struts for Macromodeling of Infilled Masonry RC Frames Subjected to Lateral Load

机译:用于横向载荷的infromodeling in infromodeling等效支柱的表征

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Evaluation of the seismic performance of infill frame structural systems using equivalent strut models and pushover analysis has gained popularity due to the simplicity of the evaluation process. Various strut macromodels have been developed for both static and dynamic evaluation of the behavior of the infill frames when subjected to seismic loading. Comparative studies of existing models revealed varying degrees of accuracy, with more detailed models able to produce better results due to improved material characterization and geometric configurations. The variations in the accuracy of model predictions can be linked to the simplifications adopted and/or variances from material behavior modeling of the infill masonry and frame. This paper provides a new approach for developing equivalent strut material and geometric properties that incorporate the behavior of dominant stress zones within the infill. The proposed equivalent strut is represented by dominant stress zones, modeled as nonlinear springs with specific characteristics derived from the dominating stress, and it connects these stress zones either as series or parallel elements. A parametric evaluation of the proposed model was conducted using numerical methods. The performance of the proposed model was validated using experimental data taken from literature. The results show good correlation of the proposed model with the experimental data. (c) 2019 American Society of Civil Engineers.
机译:使用等效的支柱模型的填充框架结构系统的抗震性能的评价由于评估过程的简单性而导致了普及。已经开发了各种支柱Macromodels,用于在经受地震载荷时对填充框架的行为的静态和动态评估。现有模型的比较研究显示出不同程度的精度,具有更详细的模型,能够由于改进的材料表征和几何配置而产生更好的结果。模型预测的准确性的变化可以与填充砌体和框架的材料行为建模采用的简化和/或差异相关联。本文提供了一种开发等效支柱材料和几何特性的新方法,这些方法将填充范围内的主要应力区域的行为纳入。所提出的等效支柱由主导应力区域表示,被建模为非线性弹簧,其具有源于主导应力的特定特性,并且它可以将这些应力区域连接为串联或并联元件。使用数值方法进行所提出模型的参数评估。使用从文献中取出的实验数据验证了所提出的模型的性能。结果表现出所提出的模型与实验数据的良好相关性。 (c)2019年美国土木工程学会。

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