Dynamic response of common stone masonry buildings under uncertain material properties

R. Adhikari, Sanjita Gotame, Puja Regmi, Bipin Karki, D. Gautam
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Abstract

The major causes of the failure of the structure are either improper design or improper construction. Therefore, accurate analysis for the design of the structure is of utmost importance. However, it is extremely difficult and impractical to determine all the engineering properties of the building structure and all of its components’ analysis of each building. It is customary to adopt typical values of material properties for the analysis of such structures, usually required for seismic vulnerability analysis. However, there is a high variation in material characteristics, especially of stone masonry that can have a significant effect on the analysis. Typical stone masonry was investigated at the site and then analyzed using finite element model (FEM). Parametric analysis was conducted for a range of young’s modulus of elasticity values of a masonry wall. The dynamic characteristics of the building were determined from the modal analysis. Seismic loading was done using dynamic methods and its effect was determined as design stresses and building deformations for the comparison. The results indicated that various building responses have a different relationship with the elasticity parameter of the wall, indicating that a very good engineering judgment is required in the analysis of stone masonry buildings that do not have standard material properties.
不确定材料性能下普通石砌体建筑的动力响应
结构破坏的主要原因要么是设计不当,要么是施工不当。因此,准确的分析对于结构的设计是至关重要的。然而,确定建筑结构的所有工程特性以及对每个建筑的所有部件进行分析是极其困难和不切实际的。对于地震易损性分析通常需要的这类结构,通常采用典型的材料性能值进行分析。然而,材料特性的变化很大,特别是石材砌体,这可能对分析产生重大影响。在现场对典型的石砌体进行了调查,并采用有限元模型对其进行了分析。对某砌体墙体的杨氏弹性模量进行了参数化分析。通过模态分析确定了建筑物的动力特性。采用动力方法进行了地震荷载计算,并将其作用作为设计应力和建筑变形进行了比较。结果表明,各种建筑响应与墙体弹性参数之间存在不同的关系,说明在分析非标准材料性能的石砌体建筑时,需要有很好的工程判断。
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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