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首页> 外文期刊>Journal of Performance of Constructed Facilities >Nonlinear Dynamic Response and Assessment of Bridges under Barge Impact with Scour Depth Effects
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Nonlinear Dynamic Response and Assessment of Bridges under Barge Impact with Scour Depth Effects

机译:驳船冲击下的桥梁下的非线性动力响应与评估

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摘要

The lateral impact of barges is a vital load case for river-crossing bridges. In addition, flood-induced scour has been recognized as a leading cause of bridge failure. However, current bridge performance assessment often takes the original bridge configuration as the basis for analyzing such impact without considering the effects of scour depth. In this paper, high-resolution finite-element (FE) based modeling is conducted to investigate barge impact on the nonlinear response of a pile-supported bridge with variable scour depths. The significant findings are multifold. First, it is favorable to find that the peak impact force and the crush deformation in the bow of the barge generally do not change significantly as scour depth varies. However, it is cautious to note that the peak displacement at the pier and the local deformation in the piles significantly increases as scour depth increases. It is stated that these findings and the method in this paper can assist in the quantitative assessment of the performance of river-crossing bridges in service and may provide information for the development of the next-generation bridge design specifications regarding barge impact.
机译:驳船的侧面撞击是河流交叉桥的重要载荷盒。此外,洪水引起的斯科尔被认为是桥梁失败的主要原因。然而,目前的桥梁性能评估通常将原始桥接配置作为分析这种影响的基础,而不考虑冲刷深度的影响。本文采用了高分辨率有限元(Fe)的建模,以调查驳船对具有可变冲刷深度的桩支撑桥的非线性响应的驳船。重要的发现是多变的。首先,有利的是发现驳船弓的峰值冲击力和压碎变形通常不会随着冲刷深度而变化而显着变化。然而,谨慎地注意到,随着冲刷深度的增加,夹子中的峰值位移和桩中的局部变形显着增加。据称,本文中的这些发现和该方法可以有助于定量评估河流交叉桥在服务中的性能,并可提供关于驳船影响的下一代桥梁设计规范的发展信息。

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