基于 ASCE 61-14 的码头抗震性能评估

Kukuh Adhi Kafie, A. Triwiyono, Iman Satyarno, Hsuan-Teh Hu
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引用次数: 0

摘要

码头的结构性能能否充分承受地震荷载至关重要。因此,本研究旨在对位于印度尼西亚北苏拉威西岛的一个码头进行精确的推移分析。研究通过考察码头塑性铰链部件在各种荷载条件下的位移和应变参数,全面了解了码头的抗震性能。为了模拟意外扭转,研究人员对码头结构进行了分析,从质量中心引入了-5%、0%和5%的横向推移荷载偏心偏移变化。扭转行为分析包括对码头平面图每个角落的四个控制点进行全面检查。此外,调查还考虑到了土与结构相互作用的关键因素,即考虑桩的等效固定深度,并以此评估结构的固定长度。为了确定码头的目标位移,我们按照 FEMA 356 中概述的既定方法进行了分析。同样重要的是,码头的抗震性能是根据 ASCE 61-14 规定的验收标准进行评估的,验收标准的形式是对混凝土构件、钢筋和钢管等各种构件施加应变限制。在这项研究中,共对 30 个模型进行了检查,结果表明,即使在重现期为 475 年的地震(CLE:应急级地震)中,结构也表现出可控和可修复的损坏。随后,通过分析位移控制点的变化,确定了结构所表现出的固有扭转,并发现不同侧向荷载偏心偏移的引入和推力加载方向的变化导致了塑性铰部件位移和应变的增加。
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Seismic Performance Evaluation of Wharf Based on ASCE 61-14
The adequacy of the structural performance of a wharf in withstanding seismic loads is of paramount importance. Therefore, this research aims to conduct an accurate pushover analysis on the adequacy of a wharf located in North Sulawesi, Indonesia. The study provides a comprehensive overview of the seismic performance of the wharf by examining displacement and strain parameters of its plastic hinge components under various loading conditions. To simulate accidental torsion, the wharf structure was analyzed by introducing variations in the eccentricity offset of the lateral pushover load of -5%, 0%, and 5% from the center of mass. The analysis of the torsion behavior involved a comprehensive examination of four control points located at each corner of the wharf plan. Additionally, the investigation took into account, the crucial aspect of soil-structure interaction by considering the equivalent fixity depth of the pile, which was used to evaluate the fixity length of the structure. In order to determine the target displacement of the wharf, analysis was performed in accordance with the established methodologies outlined in FEMA 356. It is also important to note that the seismic performance of the wharf was evaluated based on acceptance criteria in the form of strain limits imposed on various components, including concrete elements, reinforcing steel, and steel pipes, as prescribed by ASCE 61-14. In this study, a total of 30 models were examined, and the obtained results showed that the structure exhibited controlled and repairable damage even when subjected to a 475-year earthquake return period (CLE: Contingency Level Earthquake). Following this, the analysis of variations in displacement control point served to determine the inherent torsion exhibited by the structure, and the introduction of different lateral load eccentricity offsets and variations in pushover loading direction were found to contribute to the increased displacement and strain in the plastic hinge components.
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审稿时长
15 weeks
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