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Limitations and Improvement Thinking of Code-Prescribed Static Analysis Method for Vessel Impact Design of Bridge Structures

机译:规范的静力分析方法在桥梁结构容器碰撞设计中的局限性和改进思​​路

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Analysis methods are essential for the vessel-impact resistant design of bridge structures, which have respect to reasonably determine the demand and capacity of bridge structures subjected to vessel impact loading. For this reason, a number of researchers have paid their attention to develop the reasonable analysis method for vessel-bridge collisions in the past twenty or thirty years, facilitating the development of the design methodology of bridge structures under vessel collisions. For example, with the development of the nonlinear contact-impact finite element (FE) technique, the FE-based method has been developed and used in engineering practices. Also, some simplified methods have been proposed based on the nonlinear contact-impact FE technique. Although these methods are capable of clarifying the interaction mechanism between vessels and bridges, they cannot be used to replace the code-prescribed static analysis method due to computational efficiency. Hence, this paper places emphasis on the code-prescribed static analysis method. First, the limitation of the code-prescribed static analysis method is presented by comparing their results with the dynamic results. Then, based on the two degrees of freedom (DOF) system, the equivalent static analysis method considering the load pattern is investigated through the shock spectrum analysis method. This work provides an idea for improving the code-specified static analysis method.
机译:分析方法对于桥梁结构的抗船舶冲击设计至关重要,考虑到合理确定承受船舶冲击载荷的桥梁结构的需求和承载力的方法。因此,在过去的二十或三十年中,许多研究人员将注意力集中在开发合理的船只-桥梁碰撞分析方法上,从而促进了船只碰撞下桥梁结构设计方法的发展。例如,随着非线性接触冲击有限元(FE)技术的发展,基于FE的方法已被开发并用于工程实践中。而且,已经提出了一些基于非线性接触-冲击有限元技术的简化方法。尽管这些方法能够阐明船只和桥梁之间​​的相互作用机理,但是由于计算效率高,它们不能用来代替代码规定的静态分析方法。因此,本文将重点放在代码规定的静态分析方法上。首先,通过将代码规定的结果与动态结果进行比较,提出了代码规定的静态分析方法的局限性。然后,基于二自由度(DOF)系统,通过冲击谱分析方法研究了考虑载荷模式的等效静力分析方法。这项工作为改进代码指定的静态分析方法提供了一个思路。

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