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Compression of a thin layer overlying deep soil deposit.

机译:覆盖深层土壤沉积物的薄层压缩。

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摘要

Roads constitute the largest and most expensive project governments undertake. The deterioration of the infrastructure of these roads represents a major and outstanding problem in transportation engineering. Construction of roads is usually made by stripping the top soil (600 to 1000 mm), which often contains organic materials, and replacing it with a layer of subgrade material (crushed stones, well-graded sand). A thin layer of asphalt or concrete is usually placed on the top of the subgrade layer to provide a durable surface.;This thesis examines the role of a deep deposit on the compression of the overlain subgrade layer. The object of this study is to provide a practical method of analysis for the design of airport runways. The cross-anisotropic elastic body that is characterized by three independent elastic constant with a plane of isotropy is suggested as an improved mathematical model of natural soil deposit. The theory of stresses and displacements in a two-layer system is presented in accordance with the theory of elasticity. The theory present herein reveals the controlling influence of two important ratios on the load-settlement characteristics of the "two-layer system," namely; the ratio of the thickness of the upper layer to the radius of the bearing area and the ratio of the modulus of the deposit to that of the upper layer. For practical design purposes, the theoretical results of settlement and compression of the upper layer have been evaluated numerically and expressed in basic influence curves, for rough and smooth interfaces at the center and the edge of the load. These influence curves are made for a various combination of anisotropic and isotropic two-layer system. The influence curves of the compression of a thin layer overlying deep deposit, confirm that the stiffness of the lower layer has a significant influence on the compression of the upper layer.
机译:道路是政府承担的最大,最昂贵的项目。这些道路的基础设施的恶化代表了运输工程中的主要和突出的问题。修路通常是通过剥去通常包含有机物质的表层土壤(600至1000毫米),然后用一层路基材料(碎石,分级良好的沙子)代替。通常在路基层的顶部放置一层薄薄的沥青或混凝土,以提供坚固的表面。本论文研究了深层沉积物对覆层路基层压缩的作用。这项研究的目的是为机场跑道的设计提供一种实用的分析方法。提出了以各向异性的三个独立的弹性常数和各向同性的平面为特征的各向异性各向异性弹性体,作为改进的天然土壤沉积数学模型。根据弹性理论介绍了两层系统中的应力和位移理论。本文提出的理论揭示了两个重要比率对“两层系统”的载荷沉降特性的控制影响,即:上层的厚度与承载区域的半径之比,以及沉积物的模量与上层的弹性率之比。出于实际设计的目的,已对上层沉降和压缩的理论结果进行了数值评估,并以基本影响曲线表示,以分析载荷中心和边缘处的粗糙和光滑界面。这些影响曲线是针对各向异性和各向同性两层系统的各种组合制作的。覆盖深层沉积的薄层压缩的影响曲线证实了下层的刚度对上层的压缩有重要影响。

著录项

  • 作者

    Khamis, Enad.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Civil.
  • 学位 M.A.Sc.
  • 年度 2004
  • 页码 76 p.
  • 总页数 76
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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