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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Effectiveness of vertical drains in mitigation of liquefaction
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Effectiveness of vertical drains in mitigation of liquefaction

机译:垂直排水管在减轻液化方面的有效性

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摘要

One method of mitigating the damaging effects of earthquake-induced liquefaction is to provide rapid dissipation of excess pore pressures by the use of vertical drains through the liquefiable material. Drain systems are currently designed using a chart-based approach. Field experience suggests that the performance of these installations cannot yet be accurately predicted. In this paper, high quality centrifuge testing is used to help clarify drain behaviour. It will be established, supported by centrifuge test data, that the pore water from a radially expanding zone of soil contributing to drainage through the drains is developed. Naturally, the geometry of this expanding zone changes with time. It will be shown that fluid from deeper strata is drained first, reducing the effectiveness of the drain for near-surface soil layers. It is concluded that these zones are useful in analysing more complicated drain system geometries.
机译:减轻地震引起的液化的破坏作用的一种方法是通过使用通过可液化材料的垂直排水来快速消散多余的孔隙压力。排水系统目前使用基于图表的方法进行设计。现场经验表明,这些装置的性能尚无法准确预测。在本文中,使用高质量的离心机测试来帮助阐明排水行为。在离心测试数据的支持下,可以确定,土壤径向扩展区域的孔隙水得到了开发,有助于通过排水管排水。自然地,该扩展区的几何形状随时间变化。结果表明,较深层的流体首先​​被排出,这降低了排水对近地表土壤层的有效性。结论是,这些区域对于分析更复杂的排水系统几何形状很有用。

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