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蒋家卫, 许成顺, 杜修力, 陈国兴, 许紫刚. 浅埋地铁车站地下框架结构抗震设计的最优地震动强度指标[J]. 岩土工程学报, 2023, 45(2): 318-326. DOI: 10.11779/CJGE20211498
引用本文: 蒋家卫, 许成顺, 杜修力, 陈国兴, 许紫刚. 浅埋地铁车站地下框架结构抗震设计的最优地震动强度指标[J]. 岩土工程学报, 2023, 45(2): 318-326. DOI: 10.11779/CJGE20211498
JIANG Jiawei, XU Chengshun, DU Xiuli, CHEN Guoxing, XU Zigang. Optimal index of earthquake intensity measures for seismic design of underground frame structure of shallow-buried subway station[J]. Chinese Journal of Geotechnical Engineering, 2023, 45(2): 318-326. DOI: 10.11779/CJGE20211498
Citation: JIANG Jiawei, XU Chengshun, DU Xiuli, CHEN Guoxing, XU Zigang. Optimal index of earthquake intensity measures for seismic design of underground frame structure of shallow-buried subway station[J]. Chinese Journal of Geotechnical Engineering, 2023, 45(2): 318-326. DOI: 10.11779/CJGE20211498

浅埋地铁车站地下框架结构抗震设计的最优地震动强度指标

Optimal index of earthquake intensity measures for seismic design of underground frame structure of shallow-buried subway station

  • 摘要: 本文旨在研究浅埋地铁车站地下框架结构概率地震需求分析中的最优地震动强度指标。基于ABAQUS/Standard软件平台,建立地下框架结构土-结构相互作用分析的二维模型,采用非线性动力时程分析方法获得了3种断面的地铁车站框架结构在22条远场地震动记录激励下的非线性地震反应数据。以峰值层间位移角作为结构损伤参数,基于效率性、实用性、有益性及充分性对15种地震动强度指标进行了检验分析。结果表明:PGA最适合作为地震动强度指标进行浅埋地铁车站地下框架结构的概率地震需求分析,速度反应谱与PGV可作为备选强度指标;PGD、位移均方根、速度平方积分,与位移平方积分等强度指标均未能满足充分性检验,不适用于浅埋地铁车站地下框架结构概率地震需求分析。上述结论可对指导浅埋地下结构基于性能的抗震设计、发展和完善现有地下结构概率地震需求模型地震动强度指标的确定方法提供有价值的参考。

     

    Abstract: The optimal index of earthquake intensity measures required in the probabilistic seismic demand model for seismic design of the underground frame structure of shallow-buried subway station is studied. Based on the ABAQUS/Standard platform, the two-dimension model for an underground frame structure is established. The seismic responses of three subway station cross-sections are obtained by using the nonlinear dynamic time-history analysis in term of 22 far-field earthquake records. The peaks of inter-story drift ratios are obtained and selected as the structural damage measure, and 15 candidate intensity measures (IMs) are examined based on the characteristics of efficiency, practicality, proficiency and sufficiency. The results show that PGA is an optimal IM for the probabilistic seismic demand model for the underground frame structure of shallow-buried subway station, whereas the PGV or the velocity response spectrum is an alternative IM. However, the PGD, root-square of displacement, root-mean-square of velocity and root-mean-square of displacement are failed in the tests on the sufficiency, in which they are not appropriate to the probabilistic seismic demand analysis for the underground frame structure of shallow-buried subway station. The findings may provide a helpful guide to the performance-based seismic design of underground structure and to the developing and improving of the determination method of optimal IMs of the existing probabilistic seismic demand model for shallow-buried underground structure.

     

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