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An experimental study of the dynamic behavior of slickensided surfaces.

机译:光滑表面动力学行为的实验研究。

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摘要

When a clay soil is sheared, clay particles along the shear plane become aligned in the direction of shear, forming "slickensided" surfaces. Slickensided surfaces are often observed along the sliding plane in field landslides. Because the clay particles along a slickensided surface are already aligned in the direction of shear, the available shear resistance is significantly less than that of the surrounding soil.; During an earthquake, ground shaking often causes landslide movement. For existing landslides or repaired landslides that contain slickensided rupture surfaces, it is reasonable to expect that the movement will occur along the existing slickensided surfaces, because they are weaker than the surrounding soil. The amount of movement that occurs is controlled by the dynamic resistance that can be mobilized along the slickensided surfaces.; The objective of this study was to investigate, through laboratory strength tests and centrifuge model tests, the shearing resistance that can be mobilized on slickensided rupture surfaces in clay slopes during earthquakes. A method was developed for preparing slickensided rupture surfaces in the laboratory, and a series of ring shear tests, direct shear tests, and triaxial tests was conducted to study the static and cyclic shear resistance of slickensided surfaces. Two dynamic centrifuge tests were also performed to study the dynamic shear behavior of slickensided clay slopes. Newmark's method was used to back-calculate cyclic strengths from the centrifuge data.; Test results show that the cyclic shear resistance that can be mobilized along slickensided surfaces is higher than the drained shear resistance that is applicable for static loading conditions. These results, coupled with a review of existing literature, provide justification for using cyclic strengths that are at least 20% larger than the drained residual shear strength for analyses of seismic stability of slickensided clay slopes. This represents a departure from the current state of practice, which is to use the drained residual shear strength as a "first-order approximation of the residual strength friction angle under undrained and rapid loading conditions" (Blake et al., 2002).
机译:当剪切粘土土时,沿剪切平面的粘土颗粒在剪切方向上对齐,形成“光滑面”表面。在野外滑坡中,通常沿滑动面观察到光滑的表面。因为沿光滑面的粘土颗粒已经沿剪切方向排列,所以可用的剪切阻力明显小于周围土壤的剪切阻力。在地震期间,地面震动通常会导致滑坡运动。对于包含滑面破裂面的现有滑坡或已修复的滑坡,可以合理预期移动会沿着现有滑面破裂的表面进行,因为它们比周围的土壤弱。发生的运动量由可沿光滑面移动的动态阻力控制。这项研究的目的是通过实验室强度测试和离心机模型测试来研究在地震过程中可以调动在粘土斜坡上光滑面破裂表面上的抗剪强度。在实验室中开发了一种制备光滑面破裂表面的方法,并进行了一系列环剪切试验,直接剪切试验和三轴试验,以研究光滑面的静态和循环剪切强度。还进行了两个动态离心试验,以研究光滑面粘土边坡的动态剪切行为。 Newmark方法被用来从离心机数据反算循环强度。测试结果表明,可以沿光滑面移动的循环剪切阻力高于适用于静态载荷条件的排水剪切阻力。这些结果,加上对现有文献的回顾,为使用循环强度至少比排水残余抗剪强度大20%的情况提供了合理的理由,用于分析滑面黏土边坡的地震稳定性。这代表了与当前实践状态的背离,后者是将排出的残余剪切强度用作“在不排水和快速加载条件下残余强度摩擦角的一阶近似值”(Blake等,2002)。

著录项

  • 作者

    Meehan, Christopher L.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 296 p.
  • 总页数 296
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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