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Seismic performance evaluation of a pile-supported wharf system at two seismic hazard levels

机译:两种地震危害水平桩支撑码头系统的地震性能评价

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摘要

This study presents a framework for assessing the seismic performance of a pile-supported wharf at different seismic hazard levels. A refined Three-Dimensional (3D) Finite Element (FE) model is conducted using the open-source computational platform OpenSees. The modeling strategies of the refined numerical model are given in detail, including refined modeling of free-field boundaries and soil-pile interaction. Two seismic hazard levels adopted by the design standard for seismic design of piers and wharves (ASCE 2014) are considered, namely, Contingency Level Earthquake (CLE) and Design Earthquake (DE). The seismic performance of the wharf-ground system is systematically explored in the following two aspects. First, the evaluation of seismic performance is based on the time history response for CLE (and DE) motion. Second, the seismic performance is assessed by averaging maximum response for all 28 DE and CLE motions. The results from this study reveal that (i) the seismic response of the wharf-ground system is larger under a DE motion than under a CLE motion; (ii) the pile foundation with a short free length is more vulnerable to damage for both seismic hazard levels; and (iii) the fiber strains of piles are significantly lower than the strain limits in the design standard (ASCE 2014).
机译:本研究介绍了评估不同地震危害水平的桩支撑码头的地震性能的框架。使用开源计算平台开放式进行精细的三维(3D)有限元(FE)模型。详细给出了精细数值模型的建模策略,包括自由场边界和土桩相互作用的精致建模。考虑了两种地震设计标准(ASCE 2014)的两种地震危险水平,即应急水平地震(CLE)和设计地震(DE)。在以下两个方面,系统地探讨了码头地面系统的地震性能。首先,对地震性能的评估基于CLE(和DE)运动的时间历史响应。其次,通过对所有28个德和CLE运动进行平均最大响应来评估地震性能。本研究的结果揭示了(i)码头地面系统的地震反应在比行动下的运动下更大; (ii)自由长度短的桩基更容易受到地震危害水平的损害; (iii)纤维桩的纤维菌株明显低于设计标准中的应变限制(ASCE 2014)。

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