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Numerical analysis of the mechanical behavior of collapsing earth dams during first reservoir filling.

机译:初次水库充填过程中塌方土坝力学行为的数值分析。

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摘要

The primary objective of this dissertation is the development of practical procedures to better understand the mechanical behavior of small collapsing dams during the first reservoir filling. To achieve this objective, the present research study was conducted from both experimental and theoretical bases.; The influence of the wetting-induced collapse on the mechanical and hydraulic properties for the residual soil compacted as a metastable-structured material was experimentally investigated. Volume changes and the water coefficient of permeability were investigated using the triaxial permeameter system where the stress state variables were independently controlled. As-compacted residual soil specimens were consolidated isotropically after which measurements of total volume change, water content change, and coefficient of permeability were made at specified matric suctions following a wetting stress path. Shear strength was investigated using the modified shear box equipment. As-compacted residual soil specimens were consolidated and sheared at specified stress states. The experimental data were analyzed to define constitutive relationships for the metastable-structured soil.; The procedure developed to simulate the mechanical behavior of a metastable soil following a wetting stress path couples stress equilibrium and water flow using a generalized form of the theory of consolidation for unsaturated soils. The modified Mohr-Coulomb failure criterion is utilized to define the failure conditions in soil elements within the dam. The model takes account of the varying permeability of the collapsing soil when following a wetting stress path. Finite element analyses were found to reproduce analytical/numerical solutions for the consolidation of both saturated and unsaturated soils. Finite element analyses were also performed to study the post-filling performance of small dams. These analyses indicate realistic predictions in comparison to field experience and allow a better understanding of the failure mechanisms of small collapsing dams in Northeast Brazil.
机译:本文的主要目的是开发实用的程序,以更好地理解初次蓄水期间小型溃坝的力学行为。为了达到这个目的,本研究从实验和理论两个方面进行了研究。实验研究了湿润塌陷对压实为亚稳结构材料的残余土壤的力学和水力性能的影响。使用三轴渗透仪系统研究了体积变化和渗透率水系数,其中应力状态变量是独立控制的。压实的残余土壤样品各向同性固结,然后在湿应力路径下,在指定的矩阵吸力下测量总体积变化,含水量变化和渗透系数。使用改良的剪切箱设备研究剪切强度。压实后的残余土壤样品在指定的应力状态下被固结和剪切。分析实验数据以定义亚稳结构土壤的本构关系。该程序用于模拟湿润应力路径下的亚稳态土壤的力学行为,它使用非饱和土壤固结理论的广义形式来耦合应力平衡和水流。修改后的Mohr-Coulomb破坏准则用于定义大坝内土壤元素的破坏条件。该模型考虑了沿湿应力路径时塌陷土壤的变化渗透率。发现有限元分析可以为饱和土和非饱和土的固结提供解析/数值解。还进行了有限元分析,以研究小型水坝的后填充性能。这些分析表明,与现场经验相比,预测更为现实,并且可以更好地了解巴西东北部小型坍塌水坝的破坏机理。

著录项

  • 作者单位

    The University of Saskatchewan (Canada).;

  • 授予单位 The University of Saskatchewan (Canada).;
  • 学科 Engineering Civil.; Agriculture Soil Science.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 448 p.
  • 总页数 448
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;土壤学;
  • 关键词

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