基于振动台试验对安装在全尺寸 RC 框架结构中的供水管道进行抗震性能评估

IF 2.6 2区 工程技术 Q2 ENGINEERING, CIVIL Earthquake Engineering and Engineering Vibration Pub Date : 2024-01-01 DOI:10.1007/s11803-024-2232-1
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引用次数: 0

摘要

摘要 室内给水管道作为非结构构件的重要组成部分,其地震响应值得重视。本文对安装在全尺寸钢筋混凝土(RC)框架结构中的给水管道进行了振动台试验研究。结合不同材料的管道和不同的钢筋混凝土楼板穿透方法,评估其抗震性能的差异。讨论了基于测试数据的楼板反应谱和管道加速度放大系数,并与规范规定进行了比较。基于数值模拟对位移需求进行了地震脆性研究。比较了不同组合的加速度反应和位移反应。结果表明,不同管道材料和不同穿越方法的组合会导致室内立管地震反应的明显差异。
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Seismic performance evaluation of water supply pipes installed in a full-scale RC frame structure based on a shaking table test

Abstract

As an important part of nonstructural components, the seismic response of indoor water supply pipes deserves much attention. This paper presents shaking table test research on water supply pipes installed in a full-scale reinforced concrete (RC) frame structure. Different material pipes and different methods for penetrating the reinforced concrete floors are combined to evaluate the difference in seismic performance. Floor response spectra and pipe acceleration amplification factors based on test data are discussed and compared with code provisions. A seismic fragility study of displacement demand is conducted based on numerical simulation. The acceleration response and displacement response of different combinations are compared. The results show that the combination of different pipe materials and different passing-through methods can cause obvious differences in the seismic response of indoor riser pipes.

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来源期刊
CiteScore
4.70
自引率
21.40%
发文量
1057
审稿时长
9 months
期刊介绍: Earthquake Engineering and Engineering Vibration is an international journal sponsored by the Institute of Engineering Mechanics (IEM), China Earthquake Administration in cooperation with the Multidisciplinary Center for Earthquake Engineering Research (MCEER), and State University of New York at Buffalo. It promotes scientific exchange between Chinese and foreign scientists and engineers, to improve the theory and practice of earthquake hazards mitigation, preparedness, and recovery. The journal focuses on earthquake engineering in all aspects, including seismology, tsunamis, ground motion characteristics, soil and foundation dynamics, wave propagation, probabilistic and deterministic methods of dynamic analysis, behavior of structures, and methods for earthquake resistant design and retrofit of structures that are germane to practicing engineers. It includes seismic code requirements, as well as supplemental energy dissipation, base isolation, and structural control.
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