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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Investigation of Composite Compacted Ground Using Microtremors
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Investigation of Composite Compacted Ground Using Microtremors

机译:利用微震研究复合压实地面

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摘要

This paper presents an interesting and unique case study of a composite compacted site where the upper section of dynamically compacted material achieved in the first stage of compaction was subsequently removed, reinstated, and recompacted in lifts in the second stage using conventional roller compaction. Dynamic compaction was employed initially in this area because of the need to densify deep fill materials. Although a number of mechanical methods are already available for assessing deep compaction, it has been particularly rare to find a cost-effective method that can be applied to a deep and extensive compacted site. Noninvasive techniques based on measurement of the horizontal-to-vertical spectral ratio (HVSR) of ambient vibrations (microtremors) are proposed in this paper to assist in a pilot appraisal of this area, which occupies a part of a deep and laterally extensive compacted site. First, the key features of the measured HVSR curves were interpreted to give a preliminary insight into the quality of compaction achieved. Second, a trial-and-error forward modeling procedure fitting the theoretical HVSR curve to the measured HVSR curve then allowed the shear-wave velocity (V_s) profile conveying the compaction quality of the compacted ground to be inferred. An initial calibration was carried out to match the inferred V_s profile in a relative sense against the cone-penetration-test (CPT) data at a test location. Verification was further made by comparing the inferred V_s profiles against independent CPT, dialatometer-test (DMT), and dry-density data at two other locations. The HVSR technique was then applied to appraise the consistency and quality of compaction at grid points not covered by the localized mechanical and other independent tests.
机译:本文介绍了一个有趣的独特案例,研究了复合压实现场,在该阶段中,在压实第一阶段中获得的动态压实材料的上部随后通过常规的压路机在第二阶段的举升机中被移除,恢复和重新压实。由于需要压实深层填充材料,因此最初在这一领域采用了动态压实。尽管已经有许多机械方法可用于评估深层压实度,但是找到一种可应用于深层和广泛压实现场的经济有效的方法尤为罕见。本文提出了一种基于测量环境振动(微震)的水平与垂直频谱之比(HVSR)的非侵入性技术,以帮助对该区域进行试点评估,该区域占据了一个深而横向扩展的压实场地的一部分。首先,对测得的HVSR曲线的关键特征进行了解释,以初步了解所获得的压实质量。其次,通过反复试验的正演模拟程序,将理论HVSR曲线拟合到测得的HVSR曲线,然后允许推导剪切波速度(V_s)曲线,从而传达压实地面的压实质量。进行了初始校准,以使推断的V_s轮廓相对于测试位置的锥入度测试(CPT)数据相对匹配。通过将推断的V_s轮廓与其他两个位置的独立CPT,测斜仪测试(DMT)和干密度数据进行比较,进一步进行了验证。然后应用HVSR技术评估局部机械和其他独立测试未涵盖的网格点处压实的一致性和质量。

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  • 作者单位

    School of Computing, Engineering and Mathematics, Univ. of Western Sydney, Penrith, NSW 2751, Australia;

    School of Computing, Engineering and Mathematics, Univ. of Western Sydney, Penrith, NSW 2751, Australia;

    Institute for Infrastructure Engineering, Univ. of Western Sydney, Penrith, NSW 2751, Australia;

    Laboratoire Geomateriaux, Ecole Nationale des Travaux Publics de l'Etat, 69518 Vaulx en Velin Cedex, France;

    Dept of Physics and Astronomy, Univ. of Bologna, 40127 Bologna, Italy;

    School of Computing, Engineering and Mathematics, Univ. of Western Sydney, Penrith, NSW 2751, Australia;

    School of Computing, Engineering and Mathematics, Univ. of Western Sydney, Penrith, NSW 2751, Australia;

    Laboratoire Geomateriaux, Ecole Nationale des Travaux Publics de l'Etat, 69518 Vaulx en Velin Cedex, France;

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

    Dynamic compaction; HVSR; Microtremors; Roller compaction; Shear-wave velocity (V_s);

    机译:动态压实;HVSR;微震;压路机压实;横波速度(V_s);

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