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孟畅, 唐亮. 近岸液化场地高桩码头地震易损性分析[J]. 岩土工程学报, 2021, 43(12): 2274-2282. DOI: 10.11779/CJGE202112014
引用本文: 孟畅, 唐亮. 近岸液化场地高桩码头地震易损性分析[J]. 岩土工程学报, 2021, 43(12): 2274-2282. DOI: 10.11779/CJGE202112014
MENG Chang, TANG Liang. Seismic fragility analysis of pile-supported wharf in nearshore liquefiable ground[J]. Chinese Journal of Geotechnical Engineering, 2021, 43(12): 2274-2282. DOI: 10.11779/CJGE202112014
Citation: MENG Chang, TANG Liang. Seismic fragility analysis of pile-supported wharf in nearshore liquefiable ground[J]. Chinese Journal of Geotechnical Engineering, 2021, 43(12): 2274-2282. DOI: 10.11779/CJGE202112014

近岸液化场地高桩码头地震易损性分析

Seismic fragility analysis of pile-supported wharf in nearshore liquefiable ground

  • 摘要: 地震易损性分析已成为结构工程和桥梁工程界的研究热点。然而,近岸液化场地高桩码头地震易损性研究相对较少。鉴于此,依托典型工程实例,建立了近岸液化场地全直桩高桩码头地震反应分析数值模型,针对弯曲失效和弯剪失效两种失效模式,通过模态分析和Pushover分析,识别了高桩码头损伤演化过程,提出了各损伤阶段定量化判别准则。然后,以PGA为地震动强度指标,选取14组典型地震动并分别缩小至8个不同强度等级,通过增量动力分析,给出了近岸液化场地高桩码头IM-EDP曲线。最后,基于提出的高桩码头损伤判别标准,推导了高桩码头地震易损性曲线,采用对数正态分布累积分布函数对易损性曲线进行拟合,确定了便于实际应用、简化的高桩码头地震易损性曲线。研究工作可为近岸液化场地高桩码头的抗震加固提供重要的理论基础。

     

    Abstract: The seismic fragility analysis has become a research hotspot in structural engineering and bridge engineering, but there are few studies in the field of pile-supported wharf in nearshore liquefiable ground. Based on the typical engineering examples, a numerical model for seismic response analysis of all-straight pile and pile-supported wharf in nearshore liquefiable ground is established. In view of bending failure and bending shear failure, through the modal analysis and pushover analysis, the damage evolution process of pile-supported wharf and the quantitative discrimination criteria for each damage stage are proposed. With PGA as the ground motion intensity index, 14 groups of typical ground motions are selected and scaled to 8 different intensity levels. With the aid of the incremental dynamic analysis, the IM-EDP curve of the pile-supported wharf in nearshore liquefiable ground is proposed. Based on the proposed criterion for determining the damage of pile-supported wharf, the seismic fragility curve of pile-supported wharf is derived. The cumulative distribution function of log-normal distribution is used to fit the seismic fragility curve, and a simplified seismic fragility curve of pile-supported wharf is proposed for practical application. This work may provide important theoretical basis for the seismic reinforcement of pile-supported wharf in nearshore liquefiable ground.

     

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