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A modified ring shear test device for determining the hydro-mechanical behaviour of unsaturated soils.

机译:一种用于确定非饱和土壤水力学行为的改进的环剪试验装置。

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摘要

This thesis presents the design details of an automated modified ring shear apparatus for the testing of unsaturated soils using the axis translation technique. The system is fully automated and it can be used for conducting Constant Load and constant Suction (CLS) shear tests, Constant Volume and constant Suction (CVS) shear tests, Constant Load and constant Water content (CLW) shear tests as well as Constant Volume and constant Water content (CVW) shear tests. In addition to shear tests, the soil-water retention curve (SWRC) can also be generated for the same specimen in the same testing device. The principal advantages of the device include its ability to shear unsaturated soils to very large deformations as well as conducting tests under constant volume conditions. Analysis of the experimental data using these characteristics suggests that the volumetric changes of the sheared specimen are not the only factor affecting the changes of its water content under constant matric suction conditions. In addition, the experimental evidence suggests that shear deformations much greater than those typically used in the testing of unsaturated soils are required if an ultimate water content equilibrium condition is to be reached. Such an equilibrium condition is required if critical state data is to be determined for unsaturated soils.; The thesis also presents the design and use of additional equipment utilised for testing unsaturated soils. This includes the use of an electronic balance to measure the change in water volume of the specimen, and provides details on how the readings of the balance can be stabilized to remove the noise caused by the connection of the tubes to the overflow jar. A simple technique relying solely on the measurement of the water volume change to determine the volume of diffused air removed by the flushing operations is also presented. The other pieces of equipment described include a volume gauge/air trap that can be used to measure the water volume changes of unsaturated soil specimens, and a simple, robust, and precise pressure gauge.
机译:本文介绍了使用轴平移技术测试非饱和土的自动改进型环形剪切仪的设计细节。该系统是全自动的,可用于进行恒定载荷和恒定吸力(CLS)剪切测试,恒定体积和恒定吸力(CVS)剪切测试,恒定载荷和恒定水含量(CLW)剪切测试以及恒定体积和恒定水含量(CVW)剪切测试。除了剪切测试,还可以在同一测试设备中为同一样本生成土壤保水曲线(SWRC)。该设备的主要优点包括能够将不饱和土壤剪切成很大的变形,以及在恒定体积条件下进行测试。利用这些特性对实验数据进行分析表明,在恒定的基质吸力条件下,剪切试样的体积变化并不是影响其含水量变化的唯一因素。另外,实验证据表明,如果要达到最终的水分平衡条件,则需要的剪切变形要比不饱和土壤测试中通常使用的剪切变形大得多。如果要确定非饱和土壤的临界状态数据,则需要这种平衡条件。本文还介绍了用于测试非饱和土壤的附加设备的设计和使用。这包括使用电子天平测量样品水量的变化,并提供有关如何稳定天平读数以消除由管子与溢流罐连接所引起的噪音的详细信息。还提出了一种仅依靠水量变化的测量来确定通过冲洗操作去除的扩散空气量的简单技术。所描述的其他设备包括可用于测量非饱和土壤样本的水量变化的体积计/空气阱,以及简单,坚固且精确的压力计。

著录项

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 267 p.
  • 总页数 267
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

  • 入库时间 2022-08-17 11:40:03

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