Homogenization of Masonry Wall using Sensitivity Analysis

Achyut Paudel, Anu Bhattarai, Radhakrishna Mallik, G. Motra
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Abstract

Though masonry buildings are most impacted during earthquakes, and the construction of masonry structure cannot be completely avoided in all part of the earth, there is no proper study regarding the behavior of masonry structure regarding seismic performance analysis and design. Detailed analysis of masonry structures requires a detailed micro-modeling technique using finite element method which requires complex calculation and numerous parameters for analysis. In this paper, an approximated simplified finite element computational technique for non-linear analysis of masonry wall is proposed using sensitivity analysis for the flow parameter of masonry wall using a macro-modeling approach in which the masonry unit and mortar are homogenized into a single panel. An experimental wall in which the nonlinear analysis was performed was considered and numerical simulation using a macro-modeling approach is performed with the experimental properties in ABAQUS Software. With making numerical model, tensile and compressive stress-strain curve were obtained which were used to prepare concrete damage plasticity model for the modelling of masonry wall. The sensitivity analysis was performed for the determination of viscosity parameter and dilation angle. The model is prepared and run with various changing values of viscosity parameter and the one that matches with the experimental result was selected. In the same way, the model is prepared for various changing values of dilation angle and the one that matches with the experimental result was selected. The final model was prepared with the values of dilation angle and viscosity parameters thus prepared and the nonlinear force displacement relation was obtained. Thus obtained, non-linear force displacement curve is compared with the actual experimental force-displacement curve.
利用敏感性分析实现砌体墙的均质化
虽然砌体建筑在地震中受到的影响最大,而且在地球上的所有地区都无法完全避免建造砌体结构,但目前还没有关于砌体结构抗震性能分析和设计的适当研究。砌体结构的详细分析需要使用有限元法进行详细的微观建模技术,这需要复杂的计算和大量的分析参数。本文提出了一种用于砌体墙非线性分析的近似简化有限元计算技术,使用宏观建模方法对砌体墙的流动参数进行敏感性分析,其中砌体单元和砂浆被均匀化为一个面板。考虑对实验墙进行非线性分析,并在 ABAQUS 软件中使用宏观建模方法对实验属性进行数值模拟。通过建立数值模型,获得了拉应力和压应力-应变曲线,并以此为砌体墙建模准备了混凝土破坏塑性模型。在确定粘度参数和扩张角时进行了敏感性分析。模型是在粘度参数值不断变化的情况下建立和运行的,并选择了与实验结果相匹配的参数。同样,根据扩张角的不同变化值制作模型,并选择与实验结果相匹配的值。最后,根据所制备的扩张角和粘度参数值制备模型,并得到非线性力位移关系。将得到的非线性力位移曲线与实际的实验力位移曲线进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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