沉箱的地震反应与破坏机制:离心机振动台研究

IF 4.6 2区 工程技术 Q1 ENGINEERING, GEOLOGICAL Soil Dynamics and Earthquake Engineering Pub Date : 2025-04-01 Epub Date: 2025-01-27 DOI:10.1016/j.soildyn.2025.109263
Linlu Zhou , Zifei Han , Lei Su , Hua-Ping Wan , Xianzhang Ling
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引用次数: 0

摘要

过去的地震事件表明,沉箱码头墙在地震中容易受到严重破坏,强调了评估其地震行为的重要性。然而,对沉箱-地基系统在地震作用下的土-结构-水相互作用的研究非常有限。本研究将通过离心振动台试验探讨沉箱的地震反应及破坏机理。具体讨论了回填体、沉箱和底土的地震响应结果;提出了一种识别永久位移的加速度积分法来估计回填体变形;并对沉箱-地基体系的地震响应进行了相位分析。结果表明,充填体液化导致沉箱后动土压力显著增大。沉箱的破坏模式为横向运动,并伴有轻微的倾斜和连续的摇摆振动。提出的加速度积分法可以有效地估计回填体的变形和横向扩展。相位分析结果揭示了沉箱-地基体系的破坏与地震作用之间的关系。
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Seismic response and failure mechanism of caisson: A centrifuge shake-table investigation
Past seismic events have shown that caisson quay walls are susceptible to severe damage during earthquakes, underscoring the importance of assessing their seismic behavior. However, very limited studies have been conducted on the soil-structure-water interaction of the caisson-ground system during earthquakes. This study will investigate the seismic response and failure mechanism of a caisson through a centrifuge shake-table test. Specifically, the seismic response results of the backfill, the caisson, and the subsoil are discussed; an acceleration integration method for identifying permanent displacement to estimate the backfill deformation is proposed; and a phase analysis of the seismic response of the caisson-ground system is conducted. It is found that the liquefaction of the backfill results in a substantial increase in the dynamic earth pressure behind the caisson. The failure mode of the caisson is lateral movement accompanied by slight tilting and continuous rocking vibrations. The proposed acceleration integration method can effectively estimate the deformation and lateral spreading of backfill. Phase analysis results reveal the relationship between the failure of the caisson-ground system and seismic action.
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来源期刊
Soil Dynamics and Earthquake Engineering
Soil Dynamics and Earthquake Engineering 工程技术-地球科学综合
CiteScore
7.50
自引率
15.00%
发文量
446
审稿时长
8 months
期刊介绍: The journal aims to encourage and enhance the role of mechanics and other disciplines as they relate to earthquake engineering by providing opportunities for the publication of the work of applied mathematicians, engineers and other applied scientists involved in solving problems closely related to the field of earthquake engineering and geotechnical earthquake engineering. Emphasis is placed on new concepts and techniques, but case histories will also be published if they enhance the presentation and understanding of new technical concepts.
期刊最新文献
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