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Drained residual shear strength of fine-grained soils and soil-solid interfaces at low to medium effective normal stresses: Analyses and applications.

机译:中低有效法向应力下细颗粒土和土-固体界面的排水残余剪切强度:分析和应用。

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摘要

A laboratory research program was undertaken to study the large-strain shear strength characteristics of fine-grained soils under low effective normal stresses (~3 to 6 kPa). Soils that cover a wide range of plasticity and composition were utilized in the program. The interface shear strength of these soils against a number of solid surfaces having different roughness was also investigated at similar low effective normal stress levels. The findings contribute to advancing the knowledge on the parameters needed for the design of pipelines placed on sea beds and the stability analysis of shallow soil slopes. A Bromhead-type torsional ring shear apparatus was modified to suit measuring soil-soil and soil-solid interface drained residual shear strengths at the low effective normal stresses. In consideration of increasing the accuracy of assessment and depicting the full-scale field behavior, the interface residual shear strengths measured using the modified ring shear apparatus were compared with those measured by research collaborators for similar interfaces using a macro-scale interface direct shear device with a plan interface shear area of approximately 3.0 m2. Correlations are developed to estimate the soil-soil and soil-solid interface residual shear strengths at low effective normal stresses. The correlations are compared with soil-soil and soil-solid interface drained residual shear strengths and correlations presented in the literature.;Data of torsional ring shear tests at a wide range of effective normal stress (10 to 700 kPa) for soils, mudstones and shales of different plasticity and gradation were analyzed. The data were made available for this research to study the effects of the change in non linearity of shear strength envelope over the normal stress ranges relevant to soil slope stability analyses. Using this data set, new empirical residual shear strength correlations were developed as a function of soil index parameters and wide range of effective normal stresses. In essence, the correlations are presented as revised versions of those previously developed for a limited number of normal stresses utilizing the same soil index parameters. Comparisons were made with a considerable amount of back-calculated shear strength data reported in the literature for reactivated landslides as well as results predicted from existing shear strength correlations to verify the increased suitability of the new correlations for use in slope stability analyses. A numerical expression was also introduced to express the residual shear strength correlations for direct incorporation in slope stability software.
机译:进行了一项实验室研究计划,以研究低有效法向应力(约3至6 kPa)下细颗粒土的大应变抗剪强度特性。该程序利用了覆盖范围广泛的可塑性和组成的土壤。在相似的低有效法向应力水平下,还研究了这些土壤对许多具有不同粗糙度的固体表面的界面剪切强度。这些发现有助于增进对海床管线设计和浅层土质边坡稳定性分析所需参数的认识。修改了Bromhead型扭转环剪切仪,以适合在低有效法向应力下测量土壤-土壤和土壤-固体界面排水的残余剪切强度。考虑到提高评估的准确性并描述全尺寸场行为,将使用改进型环形剪切仪测量的界面残余剪切强度与研究合作者使用大型界面直接剪切装置对相似界面的相似残余强度进行比较。平面界面剪切面积约为3.0平方米。建立相关性以估计低有效法向应力下的土壤-土壤和土壤-固体界面残余剪切强度。将相关性与土壤-土壤和土壤-固体界面排水的残余剪切强度及相关性进行了比较。在各种有效法向应力(10至700 kPa)下,土壤,泥岩和地基的扭转环剪试验数据分析了不同塑性和层次的页岩。数据可用于本研究,以研究抗剪强度包线的非线性变化在与土质边坡稳定性分析有关的法向应力范围内的影响。使用该数据集,开发了新的经验残余抗剪强度相关性,作为土壤指标参数和有效法向应力的范围的函数。本质上,相关性表示为以前使用相同的土壤指数参数为有限数量的正应力开发的相关性的修订版本。与文献中报告的大量重新计算的滑坡抗剪强度数据以及现有抗剪强度相关性预测的结果进行了比较,以验证新的相关性在边坡稳定性分析中的适用性增加。还引入了一个数值表达式来表达残余抗剪强度的相关性,以便直接纳入边坡稳定性软件中。

著录项

  • 作者

    Rabie, Khaled Hassan.;

  • 作者单位

    Qatar University (Qatar).;

  • 授予单位 Qatar University (Qatar).;
  • 学科 Civil engineering.;Geotechnology.
  • 学位 M.S.
  • 年度 2016
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:14

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