耗散拉杆抑制单边摇摆砌体墙:解析公式和试验试验

IF 3.8 2区 工程技术 Q2 ENGINEERING, GEOLOGICAL
Linda Giresini, Fabio Solarino, Omar AlShawa
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引用次数: 0

摘要

本文提出了研究耗散拉杆约束下岩石砌体墙体抗震性能的解析公式。通过对受DT约束的单侧摇摆壁的实验,验证了基于刚性基础上二自由度刚体摇摆动力学的公式,并对进入运动方程的力学参数进行了标定。通过单独考虑自重、金属拉杆、流体粘性阻尼器、重向部件等因素的影响,充分描述了受dt约束的摇摆壁的动力学。该框架随后被应用于一座纪念性建筑的主立面,这座教堂在最近的2023年土耳其地震中遭到破坏。考虑到地震的数值分析证实了DTs提供的预期效益:峰值响应减少至少60%(与传统拉杆约束的情况相比),振动时间减少近60%,避免拉杆屈服或破坏,减少对横向墙壁的冲击效应和有效的能量耗散(约占总输入能量的1/3)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Dissipative tie-rods restraining one-sided rocking masonry walls: analytical formulation and experimental tests

Dissipative tie-rods restraining one-sided rocking masonry walls: analytical formulation and experimental tests

This paper presents the analytical formulation to investigate the seismic performance of rocking masonry walls restrained by Dissipative Tie-rods (DTs). Experimental tests on one-sided rocking walls restrained by a DT are used to validate the formulation based on the dynamics of a two-degree-of-freedom rigid-block rocking on a rigid foundation, and to calibrate the mechanical parameters entering the equations of motion. The dynamics of the rocking wall restrained by DTs is fully described by separately considering each contribution due to self-weight, metal tie-rods, fluid viscous dampers, recentering components.The framework is then applied to the main façade of a monumental building, a church damaged by the recent 2023 Turkey earthquake. The numerical analysis considering that earthquake confirmed the expected benefits offered by the DTs: reduction of the peak response at least by 60% (in comparison with the case of façade restrained by a traditional tie-rod), a reduction of the vibration time by almost 60%, avoidance of tie-rod yielding or failure, reduced punching effect against transverse walls and efficient energy dissipation (around 1/3 of the total input energy).

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来源期刊
Bulletin of Earthquake Engineering
Bulletin of Earthquake Engineering 工程技术-地球科学综合
CiteScore
8.90
自引率
19.60%
发文量
263
审稿时长
7.5 months
期刊介绍: Bulletin of Earthquake Engineering presents original, peer-reviewed papers on research related to the broad spectrum of earthquake engineering. The journal offers a forum for presentation and discussion of such matters as European damaging earthquakes, new developments in earthquake regulations, and national policies applied after major seismic events, including strengthening of existing buildings. Coverage includes seismic hazard studies and methods for mitigation of risk; earthquake source mechanism and strong motion characterization and their use for engineering applications; geological and geotechnical site conditions under earthquake excitations; cyclic behavior of soils; analysis and design of earth structures and foundations under seismic conditions; zonation and microzonation methodologies; earthquake scenarios and vulnerability assessments; earthquake codes and improvements, and much more. This is the Official Publication of the European Association for Earthquake Engineering.
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