在体育馆建筑中安装玻璃级消能支架

IF 3.9 2区 工程技术 Q1 ENGINEERING, CIVIL Structures Pub Date : 2024-09-04 DOI:10.1016/j.istruc.2024.107184
Stefano Sorace, Nicola Bidoli, Gloria Terenzi
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引用次数: 0

摘要

从 20 世纪 60 年代到 90 年代,意大利建造了大量钢筋混凝土(RC)体育馆和运动馆,这些体育馆和运动馆具有相似的建筑特点,其中包括两层分隔的外墙,下层是与框架结构完全接触的连续砌体填充物,上层是玻璃带状窗。1976 年建成的一所学校体育馆是这一建筑群的典型代表,本文对其进行了研究,旨在评估其当前的抗震性能,并提出一种基于阻尼的补充改造方案,能够为结构和非结构构件提供充分的保护。评估研究是通过非线性动态分析进行的,采用等效对角支撑对填充物进行建模,采用塑性铰链对 RC 构件进行建模。在分析中没有明确模拟的带状窗的响应也根据相关的层间漂移进行了检查。结果表明,在基本设计地震(BDE)规模的地震作用下,填充板和 RC 柱的非弹性响应非常明显,玻璃层的漂移非常大,导致带状窗完全坍塌。因此,我们提出了一种改造假设,即在玻璃层安装一个包含加压流体粘性装置的耗能支撑系统,并在填充层安装传统支撑。该系统的安装位置不影响建筑内部结构,也不影响建筑物的使用。干预后的分析结果表明,无论是在漂移还是应力状态方面,反应都显著减小,符合设计目标。这使得结构构件和带状窗的安全响应以及填充物的弹性响应都达到了 BDE 标准。
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Glazed-level dissipative brace incorporation in a gym building
A wide stock of reinforced concrete (RC) gyms and sports halls was built in Italy from 1960s through 1990s with similar architectural characteristics, among which the two-level partition of façades, displaying continuous masonry infills full in contact with the frame structure on the lower level, and glazed ribbon windows on the upper level. A school gym built in 1976, well representative of this stock of edifices, is examined herein with the aim of assessing its seismic performance in current state and proposing a supplemental damping-based retrofit solution capable of providing adequate protection both to the structure and the non-structural elements. The assessment study is carried out via non-linear dynamic analysis, by modelling infills by means of equivalent diagonal struts, and RC members by plastic hinges. The response of the ribbon windows, not expressly simulated in the analysis, is checked in terms of relevant inter-level drift. The results show a significant inelastic response of the infill panels and the RC columns, and very high drifts on the glazed level, resulting in full collapse conditions of the ribbon windows, under a Basic Design Earthquake (BDE)-scaled seismic action. Consequently, a retrofit hypothesis is conceived, based on the installation of a dissipative bracing system incorporating pressurized fluid-viscous devices on the glazed level, and conventional braces on the infilled level. The location of the system implies no architectural intrusion in the interiors or interruption in the usage of the building. The analyses in post-intervention conditions highlight a remarkable response reduction both in terms of drifts and stress states, consistently with the target design objectives. This allows reaching a safe response of structural elements and ribbon windows, and an elastic response of infills, up to the BDE.
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来源期刊
Structures
Structures Engineering-Architecture
CiteScore
5.70
自引率
17.10%
发文量
1187
期刊介绍: Structures aims to publish internationally-leading research across the full breadth of structural engineering. Papers for Structures are particularly welcome in which high-quality research will benefit from wide readership of academics and practitioners such that not only high citation rates but also tangible industrial-related pathways to impact are achieved.
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