地下结构对饱和珊瑚砂场地地震响应影响的试验研究

IF 4.4 2区 工程技术 Q1 ENGINEERING, OCEAN Applied Ocean Research Pub Date : 2025-01-01 Epub Date: 2024-12-26 DOI:10.1016/j.apor.2024.104392
Zhongxiang Zhang , Su Chen , Yongzhi Wang , Xiaojun Li
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引用次数: 0

摘要

了解地下结构对饱和珊瑚砂场地地震反应的影响,对于改善岛礁工程的抗震设计和预防液化灾害具有重要意义。尽管在这一领域取得了进展,但地下结构对珊瑚砂遗址地震行为的具体影响仍未得到充分探索。本研究通过对饱和珊瑚砂场地进行动态离心机振动台试验来解决这一问题,既有地下结构,也有地下结构。比较了自由场(FF)和结构场(SF)的孔隙压力、加速度、反应谱和剪切应力-应变行为。测试结果表明,地下结构的存在导致其下方有更深的液化区。结构上方土层超孔隙压力在达到峰值后迅速消散,在地震运动结束时完全消散。此外,靠近结构底部的土壤表现出较高的剪胀性。该结构放大了其底部上方和附近土壤的加速度,同时减小了其侧壁附近土壤的加速度。在0.9 ~ 3.0 s的周期范围内,结构的存在削弱了侧壁附近和结构上方土体的响应谱值衰减。此外,该结构限制了其侧壁附近土体的变形,增加了土体的剪切模量。
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Experimental study on the effect of an underground structure on the seismic responses of saturated coral sand site
Understanding the effect of underground structures on the seismic responses of saturated coral sand sites is crucial for improving seismic design and preventing liquefaction disasters in island reef engineering. Despite advancements in this field, the specific effects of underground structures on the seismic behavior of coral sand sites remain underexplored. This study addresses this issue by conducting dynamic centrifuge shaking table tests on saturated coral sand sites, both with and without an underground structure. The seismic responses between the free field (FF) and structure field (SF) were compared in terms of pore pressure, acceleration, response spectra, and shear stress-strain behavior. Test results reveal that the presence of the underground structure led to a deeper liquefaction zone beneath it. The excess pore pressure in the soil layer above the structure dissipated rapidly after peaking and completely dissipated by the end of the seismic motions. Additionally, the soil near the bottom of the structure exhibited higher dilatancy. The structure amplified the acceleration of the soil above and near its bottom while reducing the acceleration of the soil adjacent to its sidewall. In the period range of 0.9–3.0 s, the presence of the structure weakened the attenuation of response spectra values for the soil adjacent to the sidewall and above the structure. Furthermore, the structure limited the deformation of the soil adjacent to its sidewall and increased the soil shear modulus.
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来源期刊
Applied Ocean Research
Applied Ocean Research 地学-工程:大洋
CiteScore
8.70
自引率
7.00%
发文量
316
审稿时长
59 days
期刊介绍: The aim of Applied Ocean Research is to encourage the submission of papers that advance the state of knowledge in a range of topics relevant to ocean engineering.
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