Enhancing Seismic Resilience: Evaluating Buildings with Passive Energy Dissipation Strategies

Eng Pub Date : 2024-02-22 DOI:10.3390/eng5010020
A. Rasool, Muhammad Faheem Ud Din Afzal, Muhammad Usman Rashid
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Abstract

Structures are recommended to be designed and constructed with the integration of structural health monitoring techniques to ensure that they can dissipate a large amount of energy without considerable damage when subjected to earthquakes. Hysteretic (H), friction (F), viscous (V), and viscoelastic (VE) dampers were employed in this study to observe the response of buildings using the commercially available software ETABS. The effect of different dampers along with configurations on three prototype concrete buildings (3, 5, and 10-storey) was studied by performing a time history analysis. Initially, the response of the buildings was observed in terms of storey drifts, base shear, and displacement without using dampers, while gradually increasing the damping ratio from 0 to 40%. Subsequently, the response of the buildings was evaluated in terms of displacements and base shear using various types of dampers with different configurations. The analysis results demonstrated that the effectiveness of viscous and viscoelastic dampers is higher for 3 and 5-storey buildings, while friction and hysteresis dampers are more suitable for 10-storey buildings. This information enables informed decisions regarding the performance and maintenance of dampers, contributing to the overall resilience and durability of structures in seismic events.
增强抗震能力:评估采用被动消能策略的建筑物
建议在设计和建造建筑物时结合使用结构健康监测技术,以确保建筑物在遭受地震时能够消散大量能量而不会造成严重损坏。本研究采用了滞后(H)、摩擦(F)、粘性(V)和粘弹性(VE)阻尼器,使用市售软件 ETABS 观察建筑物的响应。通过进行时间历程分析,研究了不同阻尼器和配置对三栋混凝土原型建筑(3、5 和 10 层)的影响。最初,在不使用阻尼器的情况下,观察了建筑物在层高漂移、基底剪力和位移方面的响应,同时将阻尼比从 0% 逐步提高到 40%。随后,使用不同配置的各类阻尼器,从位移和基底剪力的角度对建筑物的响应进行了评估。分析结果表明,粘性和粘弹性阻尼器对 3 层和 5 层建筑的有效性更高,而摩擦和滞后阻尼器则更适用于 10 层建筑。这些信息有助于就阻尼器的性能和维护做出明智的决定,从而提高建筑物在地震事件中的整体抗震能力和耐久性。
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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来源期刊
Eng
Eng
CiteScore
2.10
自引率
0.00%
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