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Stone columns as liquefaction countermeasure in non-plastic silty soils

机译:石柱作为非塑性粉质土壤液化对策

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In many cases densification with vibro-stone columns cannot be obtained in non-plastic silty soils. Shear stress re-distribution concepts have been previously proposed as means to assess stone columns as a liquefaction countermeasure in such non-plastic silty soils. In this study, centrifuge testing is conducted to assess the performance of this liquefaction countermeasure. Attention is focused on exploring the overall site stiffening effects due to the stone column placement rather than the drainage effects. The response of a saturated silt stratum is analyzed under base dynamic excitation conditions. In a series of four separate model tests, this stratum is studied first without, then with stone columns, as a free-field situation, and with a surface foundation surcharge. The underlying mechanism and effectiveness of the stone columns are discussed based on the recorded dynamic responses. Effect of the installed columns on excess pore pressures and deformations is analyzed and compared. The test results demonstrate that stone columns can be an effective technique in the remediation of liquefaction induced settlement of non-plastic silty deposits particularly under shallow foundations, or vertical effective stresses larger than about 45 kPa (1000 psf) in free field conditions.
机译:在许多情况下,无法在非塑性粉质土壤中使用振动石柱进行致密化。先前已经提出了剪应力的重新分配概念,作为评估石柱作为这种非塑性粉质土壤液化对策的手段。在这项研究中,进行离心机测试以评估该液化对策的性能。注意集中在探索由于石柱放置而不是排水效果引起的整体现场加固效果。在基本动力激励条件下分析了饱和粉土层的响应。在一系列四个单独的模型测试中,首先在没有田间情况下,无石柱的情况下研究此地层,作为自由场情况,并在地表附加费的情况下进行研究。基于所记录的动力响应,讨论了石柱的潜在机理和有效性。分析并比较了安装柱对过大孔隙压力和变形的影响。测试结果表明,石柱可以有效地补救液化引起的非塑性粉质沉积物的沉降,特别是在浅基础或在自由场条件下垂直有效应力大于约45 kPa(1000 psf)的情况下。

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