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Investigation on Flooding-Resistant Performance of Integral Abutment and Jointless Bridge

机译:整体基台和无缝桥梁抗抗抗抗抗抗桥梁的调查

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Bridge washouts connected to flood events are deemed one of the main reasons for structural collapse. Compared to traditional continuous jointed bridges, integral abutment and jointless bridges (IAJBs) have better lateral stability because there are no expansion devices. The mechanical performance of Shangban IAJ bridge, located in Fujian, China, is thoroughly investigated by Finite Element Analysis (FEA). The numerical model is created and validated based on experimental results obtained from static load tests performed on the bridge. A detailed parametric analysis is carried out to assess the correlation between the flood-resistant performance and a number of parameters: skew angle, water-blocking area, span number, pile section geometry, and abutment height. Except for the abutment height, other parameters significantly affect the bridge performance. Furthermore, the change in the span number has a meaningful impact only when fewer than four spans are modeled. Finally, pushover analyses estimate the maximum transverse displacement and the sequence of plastic hinge creation as well as the mechanical behaviour of the structure under lateral flood loads. The analysis results show that IAJBs have better flooding-resistant performance than conventional jointed bridges.
机译:连接到洪水事件的桥梁冲洗被认为是结构崩溃的主要原因之一。与传统的连续连接桥相比,整体基台和无缝桥(IAJBS)具有更好的横向稳定性,因为没有扩展装置。 Shadban Iaj桥梁的机械表现,位于中国福建,通过有限元分析(FEA)进行彻底调查。基于在桥上执行的静态载荷测试获得的实验结果来创建和验证数值模型。进行了详细的参数分析,以评估抗抗抗抗抗抗抗抗抗抗抗抗抗抗抗抗抗抗抗抗抗性性能,偏斜角度,防水区域,跨度数,桩段几何形状和邻接高度。除了邻接高度外,其他参数显着影响桥接性能。此外,跨度数的变化仅在少于四个跨度时都具有有意义的影响。最后,推送分析估计横向泛荷载下结构的最大横向位移和塑料铰链创造序列以及结构的力学行为。分析结果表明,IAJBS具有比传统的连接桥更好的抗漏电性能。

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