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Direct CPT Method for 130 Footings on Sands

机译:沙滩上130个立足点的直接CPT方法

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摘要

Using the concept of a characteristic load-displacement curve for shallow foundations, a direct design method based on cone penetration testing (CPT) is applied to a database compiled from a total 130 footings on sands. Performance results are based solely on field load test data from large foundations (B >0.5 m) in order to avoid known scaling effects from small model size footings. The footing responses are presented in terms of applied stress (pF) versus square root of normalized displacements (s/B) so that a single parameter represents the behavior of all size foundations on the particular sand. Furthermore, footing stresses are normalized by the cone tip resistance (qc) to obtain a unique relationship for shallow foundations on sands. While the method was originally developed from field load tests on square and circular footings, it is now extended to include rectangular foundations via elasticity solutions using a dimensionless length-to-width ratio. Limited data from eight footings on calcareous sands also show compatibility with the derived algorithm.
机译:利用浅层地基的特征荷载-位移曲线的概念,将基于圆锥渗透试验(CPT)的直接设计方法应用于从总共130个沙地基础上编译的数据库。性能结果仅基于大型基础(B> 0.5 m)的现场载荷测试数据,以避免模型尺寸较小的基础产生已知的缩放效应。根据施加应力(pF)与归一化位移的平方根(s / B)的关系来表示基础响应,以便单个参数代表特定沙子上所有尺寸基础的行为。此外,基础应力通过锥顶阻力(qc)进行归一化,从而获得沙地上浅层基础的独特关系。虽然该方法最初是通过对方形和圆形立脚进行现场载荷测试而开发的,但现在通过使用无量纲长宽比的弹性解决方案将其扩展到包括矩形基础。来自钙质砂的八个基础的有限数据也显示了与派生算法的兼容性。

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  • 来源
  • 会议地点 Orlando FL(US)
  • 作者

    P. W. Mayne; D. Dasenbrock;

  • 作者单位

    Geosystems Engineering Group, School of Civil and Environmental Engineering,Georgia Institute of Technology, 790 Atlantic Dr., Atlanta, GA 30332-0355;

    Geotechnical Engineering Section, MnDOT Office of Materials and Road Research, 1400 Gervais Ave., Maplewood, MN 55109;

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  • 正文语种 eng
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