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Benefits of inclined pile foundations in earthquake resistant design of bridges

机译:倾斜桩基在桥梁抗震设计中的优势

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This paper studies the effects of the use of inclined pile foundations on the seismic response of bridges, and shows that this type of foundation is able to promote significant reductions in the ductility demand of reinforced concrete piers. To this end, a set of nine multi-span roadway viaducts with different pier heights and span lengths is defined. Each configuration is designed and dimensioned in detail following a displacement-based approach, considering both linear and non-linear expected behaviours and assuming different target ductilities for piers. The systems are assumed to be founded on a specific soil profile, and suitable pile foundation layouts and dimensions are determined for each case, with four different pile rake angles (including the vertical case) in each configuration. Soil-structure interaction phenomena are incorporated through the corresponding frequency-dependent impedance functions and kinematic interaction factors. The transverse response of the viaducts, subject to a set of seven suitable scaled real accelerograms, is computed and analysed making use of a sub-structuring approach and non-linear time-domain analysis in which a lumped parameter model is adopted to represent the foundation response. Results, presented not only in terms of ductility demand but also of energy dissipated in the structural system by damping or by yielding, suggest that inclined piles are clearly beneficial to the seismic response of bridges, contributing to significant reductions in ductility demand due to the particular kinematic seismic response of this type of foundations and associated reductions in the input seismic energy to the system.
机译:本文研究了倾斜桩基础的使用对桥梁地震响应的影响,并表明这种基础能够显着降低钢筋混凝土墩的延性要求。为此,定义了一组九个具有不同桥墩高度和跨度长度的多跨度道路高架桥。每种配置均按照基于位移的方法进行详细设计和确定尺寸,同时考虑线性和非线性预期行为,并假设墩的目标延展性不同。假定系统建立在特定的土壤剖面上,并针对每种情况确定了合适的桩基础布局和尺寸,每种配置中有四个不同的桩前角(包括垂直情况)。通过相应的频率相关的阻抗函数和运动学相互作用因子将土壤-结构相互作用现象纳入其中。利用子结构方法和非线性时域分析方法(其中采用集总参数模型代表基础),计算并分析了高架桥的横向响应,该响应受一组七个适当的比例缩放的真实加速度图的影响。响应。结果不仅显示在延性需求方面,而且还显示了结构系统通过阻尼或屈服所耗散的能量,这些结果表明,倾斜桩显然有利于桥梁的地震反应,由于特殊情况,可显着降低延性需求这种基础的运动地震响应以及系统输入地震能量的相应减少。

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