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TIMBER PILE FOUNDATIONS FOR EXPANSIVE SOILS

机译:膨胀土的木桩基础

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摘要

This paper describes the results of a study in which two groups of small diameter timber test piles were driven to depths of between 0.5 to 3.5m into a relatively dry expansive clay soil, and subsequently monitored through changing seasons. The vertical displacements of the head of each of the piles were recorded as the soil profile heaved and fell in response to seasonal changes in ground moisture levels. These observations were found to be consistent with previous studies. It was found that piles driven to about the active depth on this site (1.7m) are likely to experience about 22 percent of the adjacent ground surface movement, and that piles installed to about 2.3 m or deeper on this site will experience less than 10 percent of the adjacent ground surface movement. The ratio of pile movements to ground surface movements were found to be in good agreement with the results of a simplified analysis in which the soil stiffness is assumed to increase linearly with depth. It is concluded that driven, preservative treated, timber mini piles have good potential for use in constructing soil movement resistant foundations in expansive soils.
机译:本文描述了一项研究的结果,其中将两组小直径木材测试桩打入相对干燥的膨胀粘土中,深度在0.5至3.5m之间,然后通过变化季节进行监测。记录每根桩头的垂直位移,以反映地面湿度水平的季节性变化导致土壤剖面隆起和下落。发现这些观察结果与先前的研究一致。结果发现,在此站点上打入活动深度约1.7m的桩很可能会经历相邻地面运动的22%,而在该站点上安装约2.3m或更深的桩的经验不到10%。相邻地面运动的百分比。发现桩运动与地表运动的比率与简化分析的结果非常吻合,在简化分析中,假定土的刚度随深度线性增加。结论是,经过驱动,防腐处理的微型木材桩具有良好的潜力,可用于在膨胀土壤中建造抗土壤运动的地基。

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