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Seismic performance of block-type quay walls with liquefiable calcareous sand backfill

机译:块型码头壁的地震性能,液体钙质砂砂回填

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Block-type gravity quay walls are widely used in remote oceanic regions due to their cost and construction efficiency, where backfill and foundation soil often consist of liquefiable calcareous coral sand. The lack of connection between blocks and hence structure integrity can result in poor seismic performance of block-type quay walls, especially in liquefiable soil. Based on laboratory element tests on calcareous sand, centrifuge shaking table test, and high-fidelity numerical simulation, this paper investigates the seismic performance of block-type quay walls with liquefiable calcareous sand backfill. Undrained cyclic torsional shear tests are conducted on South China Sea calcareous coral sand to determine its dynamic properties, which are used to calibrate the unified plasticity model for large post-liquefaction shear deformation of sand. A centrifuge shaking table test is conducted to obtain the basic physical seismic response of a block-type quay wall in liquefiable calcareous backfill sand. Utilizing the understanding from laboratory tests, fully coupled dynamic effective stress analysis using the calibrated constitutive model is conducted. The influence of seismic input, quay wall structure, and backfill sand properties on the seismic response of the quay wall is analyzed. Input motion intensity and frequency are shown to be influential to the seismic response of the quay wall. Increase of backfill soil density, permeability, and block to block connection can significantly improve the seismic performance of the quay wall.
机译:由于其成本和施工效率,块型重力码头墙广泛用于远程海洋区域,其中回填和基础土壤通常由液态化钙质珊瑚沙子组成。块和因此结构完整性之间的连接缺乏可能导致块型码头墙的地震性能不佳,尤其是液化土壤。基于实验室元素试验在钙质砂,离心机振动台测试和高保真数值模拟上,研究了块型码头墙与液化钙质砂回填的地震性能。未经涉及的循环扭转剪切测试在南海钙质珊瑚砂上进行,以确定其动态特性,用于校准统计纯液化型砂浆后砂浆的变形。进行离心机振动台测试,以获得液体钙质回填砂中块型码头壁的基本物理地震反应。利用从实验室测试的理解,进行了使用校准本构体模型的完全耦合的动态有效应力分析。分析了地震输入,码头壁结构和回填砂性能对码头壁的地震响应的影响。输入运动强度和频率被显示为码头墙的地震反应影响。回填土壤密度的增加,渗透性和阻塞连接可以显着提高码头墙的地震性能。

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