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Experimental and numerical investigations of the effect of buried box culverts on earthquake excitation

机译:箱形暗涵对地震激励影响的实验与数值研究

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The seismic response of soils consisting of uniform sandy soils with two different relative densities Dr (50% and 90%) was investigated using the RPI geotechnical centrifuge facility, with a one-dimensional earthquake simulator at 60 g. The seismic soil structure interaction between the sand, buried box culvert, and surface foundations was also studied. The models were subjected to three earthquakes with different amplitudes and frequencies. Model settlements were recorded from 1 g to 60 g and during the seismic shakings; the ground response parameters were assessed. Rocking of structures was observed to be small for the box culverts compared to the surface foundation due to the soil confinement. The effect of kinematic soil structure interaction between the dry sand, box culverts and foundations was also explored. Kinematic soil culvert interaction was found to lead to a large reduction in the peak ground acceleration at the soil surface, which can reach up to 50%. Further numerical modeling was performed to investigate the effect of soil cover height on the kinematic soil culvert interaction and these results are also discussed in the paper. (c) 2015 Elsevier Ltd. All rights reserved.
机译:使用RPI岩土离心机和60 g一维地震模拟器,研究了由两种相对密度Dr(分别为50%和90%)的均匀砂土组成的土壤的地震响应。还研究了沙子,埋箱涵和地基之间的地震土结构相互作用。这些模型遭受了三个振幅和频率不同的地震。在地震过程中记录了1 g至60 g的模型沉降。评估地面响应参数。由于土壤的限制,与表面基础相比,箱形涵洞的结构摇摆很小。还研究了干沙,箱涵和地基之间运动学土壤结构相互作用的影响。运动的涵洞相互作用被发现导致在土壤表面的峰值地面加速度大大降低,最高可达到50%。进行了进一步的数值模拟,以研究土壤覆盖高度对运动型涵洞相互作用的影响,并对这些结果进行了讨论。 (c)2015 Elsevier Ltd.保留所有权利。

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