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Nonlinear analysis of out-of-plane masonry facades: full dynamic versus pushover methods by rigid body and spring model

机译:平面外砖砌体外墙的非线性分析:刚体和弹簧模型的全动态与下垂方法

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The paper proposes a systematic comparison between two methods of analysis that are well established in the field of earthquake engineering: nonlinear dynamic analysis and nonlinear static procedure (NSP), applied to the out-of-plane seismic response of two masonry facades representative of many ancient Italian churches. The comparison is based on extensive numerical analyses, which focus on the flexural and torsional mechanisms, while the in-plane damage mechanisms and the possible detachment between the facade and the lateral walls because of a poor connection have been presently disregarded. The computations, both in the static and in the dynamic field, are based on a rigid body and spring model specifically implemented for this issue, computationally efficient and equipped with a realistic model of damage and hysteresis at the mesoscale. An innovative aspect of this study is the heuristic modelling of three-wythe masonry, to include some typical texture effects on the macroscale nonlinear response. For each facade, two different masonry textures were considered, performing extensive dynamic analyses that offered a detailed overview about the performance under earthquakes of different intensities. In parallel, NSP and the classical N2-based seismic assessment were applied. A critical discussion and comparison of the results of the two methods is presented to rationally appraise limits and opportunities. In particular, flexural and twisting out-of-plane mechanisms were clearly appraised in the dynamic field, whereas NSPs were not always able to describe the collapse, because they missed the partial failures determined by higher vibration modes, as could be expected.
机译:本文提出了在地震工程领域中建立的两种分析方法之间的系统比较:非线性动力分析和非线性静态过程(NSP),该方法应用于两个代表许多建筑物的砌体外墙的面外地震响应古老的意大利教堂。比较是基于大量的数值分析,这些数值分析集中在挠曲和扭转机制上,而平面内损伤机制以及由于连接不良而导致的立面和侧壁之间可能的分离目前都被忽略了。静态和动态领域的计算均基于针对此问题专门实现的刚体和弹簧模型,计算效率高,并配备了中尺度损伤和滞后的真实模型。这项研究的一个创新方面是三块砌体的启发式建模,包括对宏观非线性响应的一些典型纹理效果。对于每个立面,都考虑了两种不同的砌体纹理,进行了广泛的动态分析,详细分析了不同烈度下的地震表现。同时,采用了NSP和基于N2的经典地震评估方法。提出了对这两种方法的结果进行的批判性讨论和比较,以合理地评估限制和机会。特别是,在动态领域中,弯曲和扭转平面外机构得到了清晰的评估,而NSP并不总是能够描述坍塌,因为如预期的那样,它们错过了由较高振动模式确定的部分破坏。

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