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Vulnerability of coastal bridges under extreme hurricane conditions

机译:极端飓风条件下沿海桥梁的脆弱性

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Accurate methodologies to quantify the vulnerability and resiliency of coastal infrastructure to wave-induced forces are crucial to sound risk management in coastal regions where hurricane hazard is high. This paper describes a high-resolution coupled Eulerian-Lagrangian (CEL) finite element model to evaluate the vulnerability of coastal bridges to wave-induced forces during large storms. The modeling technique was calibrated and shown to be in good agreement with experimental results from a reduced-scale bridge structure tested at the O.H. Hinsdale Wave Research Laboratory at Oregon State University. The high-resolution bridge model was used to simulate the response of common types of bridge structures to hydrodynamic loads under hurricane conditions (i.e. surge height, wave height, and frequency) expected in the Texas-Louisiana coast. Results show that superstructure-substructure connection demands for bridges under wave impact loading are sensitive to the flexibility of the substructure, which has historically been modeled as rigid in flume experiments and computer simulations used to develop current design provisions.
机译:准确量化沿海基础设施对波浪引起的力量的脆弱性和弹性的方法对于在飓风危害高的沿海地区进行合理的风险管理至关重要。本文描述了高分辨率耦合的欧拉-拉格朗日(CEL)有限元模型,用于评估大风暴期间沿海桥梁对波浪感应力的脆弱性。建模技术已经过校准,显示与在O.H测试的缩小规模桥梁结构的实验结果非常吻合。俄勒冈州立大学Hinsdale Wave研究实验室。高分辨率桥梁模型用于模拟德克萨斯州-路易斯安那州海岸预期的飓风条件下常见类型桥梁结构对水动力载荷的响应。结果表明,波浪冲击荷载作用下桥梁的上部结构与下部结构的连接要求对下部结构的柔性很敏感,而在过去的水槽实验和计算机仿真中,这种结构一直被建模为刚性模型,用于制定当前的设计规定。

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