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Assessment of anisotropic elastic parameters of saturated clay measured in triaxial apparatus: Appraisal of techniques and derivation procedures

机译:三轴仪测量的饱和黏土各向异性弹性参数的评估:技术和推导程序的评估

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摘要

Recent developments in laboratory techniques adopting highly precise local instrumentation have made possible the determination of all five independent elastic parameters necessary for describing the small-strain stiffness in cross-anisotropic soils. However, the techniques and the derivation procedures are not necessarily straightforward, and different processes sometimes lead to apparently inconsistent sets of parameters, revealing their complex and sensitive nature. This paper firstly reports a new fully-instrumented triaxial system that was optimised to test Japanese standard-sized (Ø70-75 mm) clay samples. The testing techniques and procedures to obtain the five cross-anisotropic elastic parameters, defined in this paper for recoverable strain smaller than 0.001%, are reviewed. Some updates, including notes on how to deal with creep in soft clays and the optimisation of drained probe rates, are described. A simplified procedure is proposed for completing the parameter determination, without actually measuring the radial displacement, by inverting the relationship between the undrained Young's modulus and the drained elastic parameters in saturated soils. The validity of this approach is demonstrated by comparing the parameters of sedimentary clays obtained with and without radial measurements. By eliminating the need for complex radial instrumentation, this approach will make the quantification of stiffness anisotropy more accessible in less-equipped laboratories.
机译:采用高精度本地仪器的实验室技术的最新发展使得确定描述各向异性土中小应变刚度所需的所有五个独立弹性参数成为可能。但是,这些技术和推导过程不一定是直接的,并且不同的过程有时会导致参数组明显不一致,从而揭示其复杂和敏感的性质。本文首先报道了一种新型的全仪器三轴系统,该系统经过优化可用于测试日本标准尺寸(Ø70-75mm)的粘土样品。本文对获得的五个交叉各向异性弹性参数的测试技术和程序进行了综述,这些参数在本文中针对小于0.001%的可恢复应变进行了定义。描述了一些更新,包括有关如何处理软粘土中的蠕变以及优化排水探针速率的说明。通过反转饱和土壤中不排水的杨氏模量和排水的弹性参数之间的关系,提出了一种简化的过程,无需实际测量径向位移即可完成参数确定。通过比较使用和不使用径向测量获得的沉积粘土的参数,可以证明这种方法的有效性。通过消除对复杂的径向仪器的需求,这种方法将使装备较少的实验室更容易进行刚度各向异性的量化。

著录项

  • 来源
    《Soils and foundations 》 |2014年第3期| 364-376| 共13页
  • 作者

    Satoshi Nishimura;

  • 作者单位

    Research Group of Geotechnical and Material Engineering for Disaster Prevention, Division of Field Engineering for the Environment, Faculty of Engineering,Hokkaido University, Kita-13 Nishi-8, Kita-ku, Sapporo, Hokkaido 060-8628, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Anisotropy; Elastic modulus; Small-strain stiffness; Clay;

    机译:各向异性弹性模量小应变刚度;粘土;

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