基于二维纤维截面分析的约束混凝土应力-应变关系比较

Nia Dwi Puspitasari, Aulia Dewi Fatikasari
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引用次数: 0

摘要

应力应变关系是识别结构强度、延性和性能的主要参数。各种本构模型的建立是为了简化混凝土行为的分析方法。本文采用Attard和Setunge(1996)和Mander(1988)的应力-应变本构模型来模拟钢筋混凝土柱的受力性能。根据已有的试验数据,确定了合适的钢筋混凝土柱模型。在MATLAB中建立了基于纤维截面分析的钢筋混凝土柱的二维仿真模型。并将试验数据与仿真分析结果进行了对比。本研究采用了两种比较方法。第一种方法是将线性回归与参考线进行比较。期望线性回归与参考线之间的最小程度。第二种方法是比较均方根定义(RMSD)值。与实验数据比较,期望RMSD值最小得到最合适的本构模型。从计算过程中发现,在钢筋混凝土柱的进一步分析问题中,更倾向于采用曼德尔本构模型
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of Stress-Strain Relationship for Confined Concrete Using Two-Dimensional Fiber-Based Cross-Sectional Analysis
Stress-strain relationship is the main parameter to identify the strength, ductility and behavior of the structure. Various constitutive models were created in order to simplify the analytical approach of concrete behavior. In this paper, the behavior of reinforced concrete column is modeled using Attard and Setunge�s (1996) and Mander�s (1988) stress-strain constitutive model. The appropriate model for reinforced concrete column was determined based on the existing experimental data. Two-dimensional simulation of reinforced concrete column using fiber-based cross-sectional analysis in MATLAB is sighted. And the performance of the reinforced concrete column from the experimental data is compared with the analysis result from the simulation. There are two comparation methods used in this research. The first method is to compare the linear regression with the reference line. The smallest degree between the linear regression and the referrence line is expected. The second method is to compare the Root Mean Square Defiation (RMSD) value. The smallest RMSD value is expected to get the most suitable constitutive model compared to the experimental data. From the computational process, it was found that Mander�s Constitutive model is preferaed to be used in further analysis problem concerning reinforced concrete column
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