首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Pile and Pile-Group Response to Liquefaction-Induced Lateral Spreading in Four Large-Scale Shake-Table Experiments
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Pile and Pile-Group Response to Liquefaction-Induced Lateral Spreading in Four Large-Scale Shake-Table Experiments

机译:四个大型振动台试验中桩和桩组对液化引起的横向扩展的响应

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摘要

Four large laminar-box shaking table experiments are conducted to document pile response due to the mechanism of liquefaction-induced lateral spreading. Single-pile and pile-group configurations are tested in a mildly inclined ground configuration. Two ground profiles of about 5 m in height are investigated, one with a liquefiable saturated sand stratum and the second with an added upper crust. The recorded data sets from this series of experiments are analyzed collectively to document and track the evolution of lateral loading on the deployed pile and pile-group configurations. Ground and pile lateral displacement as well as excess pore pressure are discussed. In this series of tests, it is observed that some of the highest pile lateral loads occur at the initial stages of lateral deformation, as the excess pore pressures approach the level of liquefaction. Thereafter, lateral load might decrease with further shear strength reduction and deformation in the liquefied stratum. For such soil profiles, lateral ground deformation that continues to accumulate due to the shaking process may not always result in significantly larger loads on the embedded pile foundation.
机译:进行了四个大型层流箱振动台实验,以记录由于液化引起的横向扩展机制而引起的桩响应。单桩和桩组配置在轻度倾斜的地面配置中进行测试。研究了两个大约5 m高的地面剖面,一个剖面具有可液化的饱和砂层,第二个剖面具有增加的上地壳。将从该系列实验中记录的数据集进行集中分析,以记录和跟踪部署的桩和桩组配置上的横向载荷的演变。讨论了地面和桩的侧向位移以及过大的孔隙压力。在这一系列测试中,观察到一些最高的桩侧向载荷发生在侧向变形的初始阶段,这是因为多余的孔隙压力接近液化水平。此后,随着剪切强度的进一步降低和液化层变形,横向载荷可能会降低。对于这种土壤剖面,由于振动过程而不断累积的侧向地面变形可能并不总是会导致嵌入桩基上的载荷明显增加。

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