Role of secondary components in the numerical analysis and in-plane seismic performance assessment of glass curtain walls

Nicola Cella, Chiara Bedon
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引用次数: 0

Abstract

Glass façades are complex mechanical systems, in which brittle and vulnerable glass panels interact with metal members and secondary components. Under extreme design actions, such as seismic events, glass failure in tension (cracking) or compression (crushing) is a critical condition for structural performance assessment. Compared to full-scale experiments, in this regard, Finite Element (FE) numerical tools can offer a robust support in design. Besides, many primary and secondary façade components should be properly taken into account, because responsible of possible major approximations in their expected mechanical interactions. In this paper, the in-plane seismic response of glass curtain walls is investigated with geometrically accurate and detailed (“MREF”) or simplified and efficient (“MSIMP”) numerical models. Comparative results are critically discussed, based on dynamic numerical simulations, with a primary attention which is focused on the mechanical performance of glass panels.
二次构件在玻璃幕墙数值分析及面内抗震性能评价中的作用
玻璃幕墙是复杂的机械系统,其中脆弱的玻璃板与金属构件和次级部件相互作用。在极端设计作用下,如地震事件,玻璃在拉伸(开裂)或压缩(破碎)下的破坏是结构性能评估的关键条件。在这方面,与全尺寸实验相比,有限元(FE)数值工具可以为设计提供强大的支持。此外,许多初级和次级farade组件应适当考虑,因为负责可能的主要近似在其预期的力学相互作用。本文采用几何精确和详细的(MREF)或简化和高效的(MSIMP)数值模型研究了玻璃幕墙的面内地震反应。基于动态数值模拟,对比较结果进行了批判性讨论,主要关注玻璃板的机械性能。
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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