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Seismic response of pile-raft-clay system subjected to a long-duration earthquake: centrifuge test and finite element analysis

机译:桩筏-黏土体系在长时间地震中的地震响应:离心试验和有限元分析

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A series of seismic centrifuge model tests were performed to study the behavior of pile groups in soft kaolin clay. Several small-scale pile-raft models were fabricated, ranging from a 2x 1 to a 4x3 pile group. Pile and raft were made of aluminum, rigidly connected each other at the pile head via a through bolt system. The excited long duration ground motion of about 200 s strong motion was employed to represent a far-field earthquake arising from Sunda Subduction Trench. Experimental investigation into the influence of group size on both raft acceleration and pile bending moment response was conducted. It was found that both acceleration and pile bending moment response were influenced by stiffness-to-mass ratio of the pile-raft system; while pile spacing had no evident influence on acceleration response but significantly influenced the pile bending moment response. Besides, pile bending moment was also influenced by the row location of pile in the 4x3 pile group. Furthermore, by employing a hyperbolic-hysteretic soil constitutive model to model the kaolin clay, a series of three-dimensional finite element analyses were carried out to compare with the seismic centrifuge tests. Reasonably well comparisons between centrifuge test and numerical computed results were obtained, which suggest that the 3D finite element modelling procedure with a hyperbolic-hysteretic soil constitutive model can be extended to complement seismic centrifuge tests.
机译:进行了一系列地震离心模型试验,以研究软高岭土中桩群的行为。制作了几个小型桩筏模型,范围从2x 1到4x3桩组。桩和筏由铝制成,并通过穿墙螺栓系统在桩头处彼此牢固地连接。大约200 s的强运动激发的长时程地震动被用来代表由Sun田俯冲海沟引起的远场地震。实验研究了组数对筏板加速度和桩弯矩响应的影响。结果表明,桩筏系统的刚度质量比对加速度和桩弯矩响应都有影响。桩距对加速度响应无明显影响,但对弯矩响应有明显影响。此外,在4x3桩组中,桩的弯矩也受桩的行位置影响。此外,通过使用双曲线-滞回土本构模型对高岭土进行建模,进行了一系列三维有限元分析,以与地震离心试验进行比较。在离心试验和数值计算结果之间进行了合理的比较,这表明采用双曲线-滞回土本构模型的3D有限元建模程序可以扩展以补充地震离心试验。

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