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Centrifuge Model Test and FEM Analysis of Dynamic Interactive Behavior between Embankments and Installed Culverts in Multiarch Culvert Embankments

机译:多拱涵洞路堤与既有涵洞动力相互作用行为的离心模型试验及有限元分析

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摘要

A multiarch culvert embankment is a new type of filling structure for which several precast arch culverts are installed continuously in the direction of the road extension. The key points in the design are to estimate the practical, optimal spacing between installed arch culverts and to clarify the interactive seismic behavior of the filling material and the culvert structure. In the current study, first, dynamic centrifuge model tests and a numerical analysis were carried out to clarify the basal earthquake behavior of the structure and verify the numerical approach. Then, the full-scale numerical analysis was performed to investigate the influence of spacing between multiarch culverts and the mechanical behavior under seismic conditions. From the results, it is confirmed that when the unit spacing is narrow, the whole rigidity of the ground and the arch culvert increases relatively. This is because the volume in the fill part, where the rigidity is small, decreases comparatively. Hence, the section force and the deformation are controlled.
机译:多层拱涵路堤是一种新型的填充结构,为此,在道路延伸方向上连续安装了多个预制拱涵。设计的重点是估算安装的涵洞之间的实用最佳间距,并阐明填充材料与涵洞结构的相互作用地震行为。在当前的研究中,首先,进行了动态离心模型试验和数值分析,以弄清结构的基础地震行为并验证了数值方法。然后,进行了全面的数值分析,以研究多拱涵洞之间的间距和地震条件下的力学行为的影响。从结果可以确认,当单位间隔窄时,地面和拱涵的整体刚度相对增加。这是因为刚性小的填充部分的体积相对减小。因此,控制了截面力和变形。

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