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Passive load estimation on single piles and pile groups from visco-plastic mud-flow

机译:基于粘塑性泥浆流的单桩和桩群被动荷载估算

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If piles are installed in creeping slopes or next to heavy loads in soft soils (with high water content) they may be loaded due to large, progressive horizontal ground displacements. In such cases pile shafts will be stressed by heavy shear forces and bending moments that may lead to serviceability problems (SLS) or even pile failure (ULS), as that soil squeezes between and around the piles. When modelling such phenomena one should consider the nonlinear material behaviour, as well as the complex nonlinear deformation and contact processes imposed by the horizontally moving ground. The objective of this paper is to give recommendations for estimating passive loads on piles based on numerical simulations, using the visco-plastic material model of Zienkiewicz & Godbole (1974). Additionally, experimental and numerical results of a back analysis of a sophisticated large scale test for the design of a piled foundation of a runway next to a steel yard on alluvium soil in Brazil are presented. Both allow a better understanding of the state of stresses and displacements in the near-field of the piles, as well as a comprehensive understanding of soil-pile interaction; i.e. flow of soil around the pile.
机译:如果将桩安装在蠕变的斜坡上或在软土(含水量高)的重负载附近安装,则可能由于大的渐进式水平地面位移而使桩受力。在这种情况下,大的剪力和弯矩会给桩身施加压力,这可能会导致使用性问题(SLS)甚至桩身失效(ULS),因为土壤会在桩之间和桩周围挤压。在对这种现象进行建模时,应考虑材料的非线性行为,以及水平移动地面施加的复杂的非线性变形和接触过程。本文的目的是使用Zienkiewicz&Godbole(1974)的粘塑性材料模型,为基于数值模拟的桩身被动载荷估算提供建议。此外,还提供了对复杂的大型试验进行反演的实验和数值结果,该试验用于设计巴西冲积土上紧邻钢厂的跑道的桩基。两者都可以更好地了解桩近场中的应力和位移状态,以及对桩土相互作用的全面理解。即桩周围的土壤流向。

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