|Table of Contents|

[1] Shang Qingxue, , Li Haiyang, et al. Floor response spectra for seismic performance tests of nonstructural components [J]. Journal of Southeast University (English Edition), 2023, 39 (4): 350-360. [doi:10.3969/j.issn.1003-7985.2023.04.004]
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Floor response spectra for seismic performance tests of nonstructural components()
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Journal of Southeast University (English Edition)[ISSN:1003-7985/CN:32-1325/N]

Volumn:
39
Issue:
2023 4
Page:
350-360
Research Field:
Civil Engineering
Publishing date:
2023-12-20

Info

Title:
Floor response spectra for seismic performance tests of nonstructural components
Author(s):
Shang Qingxue1 2 3 Li Haiyang2 3 Li Jichao2 3 Wang Tao2 3
1China Earthquake Disaster Prevention Center, Beijing 100029, China
2Key Laboratory of Earthquake Engineering and Engineering Vibration, Institute of Engineering Mechanics, China Earthquake Administration, Harbin 150080, China
3Key Laboratory of Earthquake Disaster Mitigation of Ministry of Emergency Management, Harbin 150080, China
Keywords:
nonstructural component floor response spectra shaking table test seismic performance test seismic fragility curve
PACS:
TU352.1;TU317.1
DOI:
10.3969/j.issn.1003-7985.2023.04.004
Abstract:
To determine the inputs of shaking table tests for acceleration-sensitive nonstructural components(NSCs), floor acceleration response spectra(FRS)for shaking table tests on NSCs were developed. Shaking table tests were conducted on floating-type medical infusion racks to verify the applicability of the proposed FRS. Nonlinear time-history analyses of standard frame structures under different earthquake intensities were conducted to determine the dynamic amplification factors(DAFs)of NSCs. Furthermore, FRS for seismic performance tests of NSCs were developed based on this analysis results. Shaking table tests for medical infusion racks were conducted using the proposed FRS and those for NSC tests. Seismic fragility curves under different earthquake inputs were generated based on the shaking table test results. The proposed response spectrum comprises short period, linear increase, plateau, and decrease segments. The DAF for the plateau segment should be 3.0. The test results indicate that the medical infusion racks exhibit a 50% probability of reaching or exceeding a residual displacement of 500 mm under the acceleration input of 0.307 4g. Therefore, the proposed FRS can be used for determining the table inputs for shaking table tests for performing the seismic performance tests of NSCs, facilitating seismic performance research on acceleration-sensitive NSCs.

References:

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Memo

Memo:
Biographies: Shang Qingxue(1993—), male, doctor, senior engineer; Wang Tao(corresponding author), male, doctor, researcher, wangtao@iem.ac.cn.
Foundation items: The National Key Research and Development Program of China(No. 2022YFC3803003), the National Science Foundation for Distinguished Young Scholars(No. 52125806), the National Natural Science Foundation of China(No. 52208483).
Citation: Shang Qingxue, Li Haiyang, Li Jichao, et al. Floor response spectra for seismic performance tests of nonstructural components[J].Journal of Southeast University(English Edition), 2023, 39(4):350-360.DOI:10.3969/j.issn.1003-7985.2023.04.004.
Last Update: 2023-12-20