首页> 外文学位 >Effect of non-plastic fines on cone resistance in silty sands.
【24h】

Effect of non-plastic fines on cone resistance in silty sands.

机译:非塑料细粉对粉砂的抗锥性的影响。

获取原文
获取原文并翻译 | 示例

摘要

Effect of non-plastic fines on the cone resistance and cyclic resistance of sands and silty sands remains an unresolved problem. This study focuses on: (a) model cone penetrometer experiment study on penetration resistance of sands and silty sands at 15 and 25% silt content, (b) numerical study on the effect of permeability and compressibility (representing the effect of silt content), diameter of cone (dc) and penetration rate (v) on cone resistance in sands and silty sands, and (c) comparative analysis of the results from (a) and (b) of the effect of silt content on cone resistance through a non-dimensional parameter To (=vdc/cv, where v is the penetration rate, dc is the cone diameter and cv is the coefficient of consolidation) for all soils at the same equivalent inter-granular void ratio [(ec)eq] or relative density [(Drc)eq].;In both experimental and numerical studies for saturated sands and silty sands, the normalized cone resistance (qc1N) decreased with an increase in silt content, at the same [(Drc)eq], from 0 to 25%. However this influence of silt content on penetration resistance was absent for dry sands and silty sands at the same [(Drc) eq]. The difference of cone resistance in saturated sands and silty sands, is thought to be due to partial drainage occurring in saturated silty sands whereas the penetration process is thought to be nearly drained in saturated sands. In the case of dry soils, this pore pressure influence is absent and hence the same penetration resistance is observed in sands and silty sands. This indicates the important influence of pore pressures and its dissipation rates, depending on the silt content, on cone resistance.;Both experimental data and numerical results indicate that for the same (Drc)eq, qc1N decreases as T o increases, which implies a decrease in cv (or increase in silt content), because of the penetration process transition from drained to partially drained or even undrained condition. In addition, the numerical analysis shows that v and dc also influence qc1N in silty sands. q c1N decreases as v increase or dc increases (To increases) in the partially drained condition. Since fines content is not the only factor affecting cone resistance a To dependent relationship between cyclic resistance ratio (CRR) and qc1N for sands and silty sands was proposed. Further research is needed to evaluate and validate such a procedure using field data and physical model tests.
机译:非塑料细粉对砂和粉质砂的抗锥性和抗循环性的影响仍未解决。这项研究的重点是:(a)在15%和25%的粉砂含量下,砂土和粉质砂的渗透阻力的模型锥形渗透仪实验研究;(b)渗透性和可压缩性影响的数值研究(代表粉砂含量的影响),圆锥直径(dc)和渗透率(v)对砂和粉质砂中圆锥阻力的影响,以及(c)比较(a)和(b)淤泥含量对非饱和砂对圆锥阻力的影响的比较分析尺寸参数To(= vdc / cv,其中v是穿透率,dc是圆锥直径,cv是固结系数),在相同的当量粒间孔隙率[[ec] eq]或相对当量下密度[(Drc)eq]。在饱和砂和粉质砂的实验和数值研究中,在相同的[(Drc)eq]范围内,归一化的圆锥阻力(qc1N)随着泥沙含量的增加而从0降低到25%。但是,对于干砂和粉砂,在相同的[(Drc)eq]情况下,粉尘含量对抗渗透性的影响不存在。饱和砂和粉砂中的锥阻力的差异被认为是由于饱和粉砂中发生了部分排水,而渗透过程被认为是饱和砂中的近排水。在干燥土壤的情况下,没有这种孔隙压力的影响,因此在沙子和粉质沙子中观察到相同的抗渗透性。这表明孔隙压力及其消散速率(取决于淤泥含量)对锥孔阻力的重要影响。;实验数据和数值结果均表明,对于相同的(Drc)eq,qc1N随T o的增加而减小,这意味着cv降低(或淤泥含量增加),因为渗透过程从排水状态过渡到部分排水状态甚至不排水状态。另外,数值分析表明,v和dc也影响粉砂中的qc1N。在部分耗尽的情况下,c1N随着v的增加或dc的增加(To的增加)而减小。由于细粉含量不是影响耐锥性的唯一因素,因此提出了砂和粉质砂的循环阻力比(CRR)和qc1N之间的依赖关系。需要使用现场数据和物理模型测试进行进一步研究,以评估和验证这种程序。

著录项

  • 作者

    Huang, Qiqi.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Engineering Civil.;Geotechnology.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 518 p.
  • 总页数 518
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号