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Geosynthetic-reinforced cushioned piles with controlled rocking for seismic safeguarding

机译:带有可控摇摆的土工合成材料加筋缓冲桩用于地震防护

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摘要

In this study, a cushioned pile foundation reinforced with geosynthetics is proposed to protect buildings and foundations from seismic energy. This composite foundation utilises piles to control foundation settlement while the geosynthetic-reinforced cushion modifies the dynamic structural characteristics and the load transfer mechanism. The seismic performance of this proposed foundation system is evaluated numerically using FLAC3D software. A fully coupled nonlinear dynamic analysis was conducted in the time domain. The variation of shear modulus corresponding to shear strains in the soil is used to simulate the dynamic behaviour of the soil, while the influence of the plasticity index is also captured. The soil-geosynthetic interface utilises the Mohr-Coulomb failure criterion to capture possible sliding and pull-out of the reinforcement layers. 3D numerical predictions of the tensile forces mobilised in the geosynthetic layers, the shear forces, the lateral deformations and maximum and residual inter-storey drifts in the building are presented and discussed in this paper, as well as how the shear forces and bending moments develop in the piles, and the lateral pile displacements. The results indicate that the proposed geosynthetic-reinforced cushioned pile foundation can provide design engineers with an alternative solution for safeguarding buildings constructed on soft soils in earthquake-prone regions.
机译:在这项研究中,提出了一种用土工合成材料加固的缓冲桩基础,以保护建筑物和地基免受地震能量的侵害。这种复合地基利用桩来控制地基沉降,而土工合成材料增强的垫层则可以改变动态结构特性和荷载传递机制。使用FLAC3D软件对该提议的基础系统的抗震性能进行了数值评估。在时域中进行了完全耦合的非线性动力学分析。对应于土壤中的剪切应变的剪切模量的变化被用于模拟土壤的动态行为,同时还捕获了可塑性指数的影响。土-土工合成材料界面利用Mohr-Coulomb破坏准则来捕获增强层可能的滑动和拉出。本文介绍并讨论了建筑物中土工合成层中所移动的拉力,剪切力,侧向变形以及最大和剩余层间漂移的3D数值预测,以及剪切力和弯矩如何发展在桩中,以及桩的横向位移。结果表明,所提出的土工合成材料加筋缓冲桩基础可以为设计工程师提供另一种解决方案,以保护地震多发地区的软土建筑。

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