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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Development of Pervious Concrete Pile Ground-Improvement Alternative and Behavior under Vertical Loading
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Development of Pervious Concrete Pile Ground-Improvement Alternative and Behavior under Vertical Loading

机译:竖向荷载下透水混凝土桩的地面改良方案及性能研究

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Permeable granular columns are used to increase the time rate of consolidation, reduce liquefaction potential, improve bearing capacity, and reduce settlement. However, their behavior depends on the confinement provided by surrounding soil, which limits their use in very soft clays and silts, and organic and peat soils. This research effort aims to develop a new ground-improvement method using pervious concrete piles. Pervious concrete piles provide higher stiffness and strength that are independent of surrounding soil confinement while offering permeability comparable to granular columns. This proposed ground-improvement method can improve the performance of different structures supported on poor soils. To achieve the goal of the research project, four vertical load tests were performed on one granular column and three pervious concrete piles. In this paper, the material properties of pervious concrete, the developed installation method, and the vertical load response of pervious concrete and aggregate piles are presented, and the variation of soil stresses and displacement during pile installation are briefly discussed. The experimental test results show that the ultimate load capacity of the pervious concrete pile was 4.4 times greater than that of an identical granular column. In addition, the ultimate load capacity of a pervious concrete pile installed using the developed technique was 2.6 times greater than a precast pervious concrete pile. The used installation method created nonuniform lateral soil displacement and increased vertical and horizontal soil stresses.
机译:渗透性颗粒柱用于增加固结时间,降低液化潜力,提高承载能力并减少沉降。但是,它们的行为取决于周围土壤的限制,这限制了它们在非常软的粘土和粉砂以及有机和泥炭土壤中的使用。这项研究工作旨在开发一种使用透水混凝土桩的新地面改良方法。透水混凝土桩具有更高的刚度和强度,而不受周围土壤限制,同时具有与粒状柱子相当的渗透性。提出的地面改良方法可以改善贫瘠土壤上支撑的不同结构的性能。为了达到研究项目的目的,在一个颗粒柱和三个透水混凝土桩上进行了四个垂直荷载测试。本文介绍了透水混凝土的材料特性,开发的安装方法以及透水混凝土和骨料桩的竖向荷载响应,并简要讨论了桩身安装过程中土应力和位移的变化。实验测试结果表明,透水混凝土桩的极限承载能力是相同颗粒桩的极限承载能力的4.4倍。此外,使用开发的技术安装的透水混凝土桩的极限承载能力是预制的透水混凝土桩的2.6倍。使用的安装方法产生了不均匀的横向土壤位移,并增加了垂直和水平土壤应力。

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