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Behavior of Nonplastic Silty Soils under Cyclic Loading

机译:循环荷载作用下非塑性粉质土的行为

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摘要

The engineering behavior of nonplastic silts is more difficult to characterize than is the behavior of clay or sand. Especially, behavior of silty soils is important in view of the seismicity of several regions of alluvial deposits in the world, such as the United States, China, and Turkey. In several hazards substantial ground deformation, reduced bearing capacity, and liquefaction of silty soils have been attributed to excess pore pressure generation during dynamic loading. In this paper, an experimental study of the pore water pressure generation of silty soils was conducted by cyclic triaxial tests on samples of reconstituted soils by the slurry deposition method. In all tests silty samples which have different clay percentages were studied under different cyclic stress ratios. The results have showed that in soils having clay content equal to and less than 10%, the excess pore pressure ratio buildup was quicker with an increase in different cyclic stress ratios. When fine and clay content increases, excess pore water pressure decreases constant cyclic stress ratio in nonplastic silty soils. In addition, the applicability of the used criteria for the assessment of liquefaction susceptibility of fine grained soils is examined using laboratory test results.
机译:与粘土或沙子的行为相比,非塑料淤泥的工程行为更难以表征。鉴于美国,中国和土耳其等世界上几个冲积层地区的地震活动性,尤其是粉质土壤的行为非常重要。在一些危险中,由于动态加载过程中产生了过多的孔隙压力,导致大量的地面变形,承载能力降低以及粉质土壤液化。本文通过循环三轴试验,通过淤浆沉积法对再生土样品进行了粉质土孔隙水压力产生的实验研究。在所有测试中,研究了在不同的循环应力比下具有不同粘土含量的粉质样品。结果表明,在粘土含量等于或小于10%的土壤中,随着不同循环应力比的增加,多余的孔隙压力比的建立更快。当细土和粘土含量增加时,多余的孔隙水压力会降低非塑性粉质土壤中的恒定循环应力比。另外,使用实验室测试结果检查了所用标准在评估细粒土壤的液化敏感性方面的适用性。

著录项

  • 期刊名称 other
  • 作者

    Nazile Ural; Zeki Gunduz;

  • 作者单位
  • 年(卷),期 -1(2014),-1
  • 年度 -1
  • 页码 635763
  • 总页数 12
  • 原文格式 PDF
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