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Numerical simulation and analytical modeling of pile-supported structures subjected to ship collisions including soil-structure interaction

机译:包括土-结构相互作用的船舶碰撞桩结构的数值模拟与分析模型

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Most of the pile-supported protection structures were designed by empirical and static analyses to resist ship impact loading. Limited studies were carried out to reveal the failure modes and the dynamic interaction process of the pile-supported structures subjected to ship collisions. To clarify these issues, high-resolution finite element models of the ship-structure-soil interactions are developed in this paper. Several modeling issues (e.g., material model, artificial boundary and stress initialization) are discussed herein to ensure the rationality of the numerical models. Numerical simulations indicate that the platform and the connection of the protective system should be carefully designed to prevent their brittle failure besides providing the piles with enough ductility. Four interaction phases (i.e., initial contact, loading with approximate velocities, unloading and free vibration) are clearly identified for the overall flexural failure of the pile-supported structures. To efficiently predict the collision-induced responses, an analytical model with two-degree-of-freedom is proposed based on the high-resolution simulation observations. Methods of determining the equivalent mass and the force-deformation relationship involved in the analytical model are discussed in detail. The dynamic responses obtained from the analytical model are compared with the high-resolution FE results. It is found that the proposed simplified model is reasonable and efficient.
机译:大多数桩支撑的防护结构都是通过经验和静态分析来设计的,以抵抗船舶的冲击载荷。进行了有限的研究,以揭示遭受船舶碰撞的桩支撑结构的破坏模式和动力相互作用过程。为了阐明这些问题,本文开发了船舶-结构-土壤相互作用的高分辨率有限元模型。为了确保数值模型的合理性,本文讨论了几个建模问题(例如,材料模型,人工边界和应力初始化)。数值模拟表明,除了为桩提供足够的延展性外,还应仔细设计保护系统的平台和连接件,以防止其脆性破坏。对于桩支撑结构的整体挠曲破坏,清楚地确定了四个相互作用阶段(即初始接触,以近似速度加载,卸载和自由振动)。为了有效地预测碰撞引起的响应,基于高分辨率的模拟观测结果,提出了具有两自由度的分析模型。详细讨论了确定等效质量和分析模型中涉及的力-变形关系的方法。将分析模型获得的动态响应与高分辨率有限元结果进行比较。发现所提出的简化模型是合理和有效的。

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