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首页> 外文期刊>Journal of structural engineering >Three-Dimensional Wharf Response to Far-Field and Impulsive Near-Field Ground Motions in Liquefiable Soils
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Three-Dimensional Wharf Response to Far-Field and Impulsive Near-Field Ground Motions in Liquefiable Soils

机译:液化土壤中远场和脉冲近场地面运动的三维码头响应

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Seismic performance evaluation of wharf structures constitutes the core of the vulnerability assessment of seaport infrastructure exposed to seismic events. Because this performance will depend on complex interactions between the surrounding potentially liquefiable soils and wharf foundation and structure, detailed and careful implementation of advanced modeling techniques is needed. These models are required to capture such highly nonlinear phenomena as permanent seaward deformation of embankment soils, soil-structure interaction in liquefiable soils, spread of plasticity in prestressed piles, and force-deformation of pile-deck connections. This study utilizes such modeling approaches to investigate the three-dimensional (3D) nonlinear response of a typical pile-supported container wharf structure in liquefiable embankment soils. Input excitations for this analysis consist of embankment soil deformations for a far-field and an impulsive near-field ground motion. These excitations are derived using two-dimensional (2D) plane strain free-filed analyses for transverse (seaward-landward) and vertical directions and a spectral matching technique for the longitudinal (parallel to shoreline) direction. Results of these 3D analyses show that the oscillating component of embankment deformations is the primary contributor to the maximum response of the piles sections and pile-deck connections, and that effects of permanent deformations of the embankment soil are much smaller. The analysis results also demonstrate the importance of the structure's 3D response characteristics, including longitudinal and torsional responses of the structure that are comparable to the transverse wharf responses during large amplitude oscillating embankment deformations owing to impulsive near-field motions. These important 3D response characteristics are not captured by more typical 2D wharf response analyses. Detailed comparisons of the responses of the 3D wharf model to corresponding responses from the 2D model of the wharf are provided.
机译:码头结构的抗震性能评估是遭受地震事件影响的海港基础设施脆弱性评估的核心。由于此性能将取决于周围可能液化的土壤与码头基础和结构之间的复杂相互作用,因此需要详细而谨慎地实施高级建模技术。需要使用这些模型来捕获高度非线性的现象,例如路堤土壤的永久性向海变形,可液化土壤中的土壤-结构相互作用,预应力桩中的塑性传播以及桩-桥面连接的力变形。这项研究利用这种建模方法来研究液化路堤土壤中典型的桩支撑集装箱码头结构的三维(3D)非线性响应。此分析的输入激励包括远场路堤土壤变形和近场脉冲式地震动。这些激励是使用二维(2D)平面应变自由分析(横向(向海-陆向)和垂直方向)和频谱匹配技术(纵向(平行于海岸线))得出的。这些3D分析的结果表明,路堤变形的振动分量是导致桩截面和桩-甲板连接的最大响应的主要因素,路堤土壤的永久变形的影响要小得多。分析结果还证明了该结构的3D响应特性的重要性,包括结构的纵向和扭转响应,这些响应可在大幅度振动堤岸变形(由于脉冲近场运动)引起的横向码头响应中媲美。这些重要的3D响应特征无法通过更典型的2D码头响应分析捕获。提供了3D码头模型的响应与来自2D模型的相应响应的详细比较。

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