首页> 外文会议>International Conference on Soil Mechanics and Geotechnical Engineering(16 ICSMGE) vol.4; 2005; Osaka(JP) >Effects of pore pressure response around pile on horizontal subgrade reaction during liquefaction and lateral spreading in large shaking table tests
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Effects of pore pressure response around pile on horizontal subgrade reaction during liquefaction and lateral spreading in large shaking table tests

机译:大型振动台试验中桩周围孔隙压力响应对液化和横向扩展过程中水平路基反应的影响

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摘要

Effects of pore water pressure response on the subgrade reaction of a pile during liquefaction and lateral spreading are investigated through large shaking table tests. In liquefied soils, the extension and compression stress states cyclically develop on both sides of the pile. The pore water pressure and earth pressure on the extension side decrease significantly, while keeping those on the compression side constant. As a result, the pile is pulled back by the soil where the reduction in pore water pressure occurs. In laterally spreading ground, a large pore water pressure reduction occurs only on the downstream side when the ground moves downstream, but on neither side when the ground moves upstream. Thus, the pile is pulled by the downstream soil only when the ground moves downstream. Such mechanisms of p-y relation in liquefied and laterally spreading soils are completely different from those occurring in dry sand.
机译:通过大型振动台试验研究了孔隙水压力响应对桩在液化和横向扩展过程中路基反应的影响。在液化土壤中,延伸应力和压缩应力状态在桩的两侧周期性地发展。延伸侧的孔隙水压力和土压力显着降低,而压缩侧的孔隙水压力和土压力保持恒定。结果,桩被土壤拉回,土壤中的孔隙水压力降低。在横向扩展的地面中,当地面向下游移动时,大的孔隙水压力降低仅发生在下游侧,而当地面向上游移动时,则没有出现大的孔隙水压力降低。因此,仅当地面向下游移动时,堆垛才由下游土壤拉动。在液化和横向扩展的土壤中,这种p-y关系的机制与在干沙中发生的那些完全不同。

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