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NUMERICAL MODELING OF DYNAMIC SOIL-STRUCTURE INTERACTION IN BRIDGES WITH HP DRIVEN PILES

机译:HP驱动桩桥梁动态土结构相互作用的数值模型

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HP-Pile foundations are the most favorable type of foundations for bridges because of their constructability, versatility with regard to subsoil conditions, and settlement controllability. For many years, bridge engineers have puzzled over the most economical way to orient HP-Piles: Should the strong axis be oriented in the longitudinal direction or in the transverse direction? The accurate design of foundations may considerably reduce construction costs. In order to answer this question, 3-D finite element models will be set up to analyze the effects of pile orientation on bridge behavior. Because seismic loading usually controls the structural design in seismic zones, it is important to investigate the effects of pile orientation under such loading. HP-Piles are designed conservatively due to the uncertainty of the dynamic soil-structure interaction during earthquakes. For the bridge substructure, the soil's stiffness plays an important role in load distribution as the soil and piles act as a combined system to resist the seismic loading. The dynamic soil-structure interaction mechanisms of bridges in both the longitudinal and the transverse directions will be investigated through the use of 3-D finite element models. The numerical models will realistically simulate the soil-pile-abutment-wingwall-superstructure system subjected to seismic loads. Nonlinear soil springs will be employed to model the non-elastic soil behavior. The analysis will provide theoretical support to the design practice.
机译:由于其结构性,关于岩土条件的结构,并且可沉降可控性,HP-PIN桩基础是最有利的桥梁基础,并且具有稳定性。多年来,桥梁工程师对东方的最经济的方式感到困惑:如果坚固的轴应沿纵向或横向定向?基础的准确设计可能会显着降低施工成本。为了回答这个问题,将建立3-D有限元模型,以分析桩取向对桥梁行为的影响。因为地震载荷通常控制地震区的结构设计,所以重要的是要在这种载荷下探讨桩取向的影响。由于地震过程中动态土结构相互作用的不确定性,HP-PI桩设计。对于桥梁子结构,土壤的刚度在负荷分布中起重要作用,因为土壤和桩作为抵抗地震载荷的组合系统。通过使用3-D有限元模型,将研究纵向和横向桥梁在横向和横向中的动态土结构相互作用机制。数值模型将现实地模拟经过地震载荷的土桩邻近翼壁 - 上部结构系统。非线性土壤弹簧将用于模拟非弹性土壤行为。分析将为设计实践提供理论支持。

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