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Investigation of dynamically compacted ground by HVSR-based approach

机译:基于HVSR的方法研究动态压实地面

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This paper proposes a HVSR (horizontal to vertical spectral ratio)-based approach to assess a deep and dynamically compacted fill area in Western Sydney. In addition to recognizing that the predominant resonance peak of the HVSR curve is a reflection of the impedance contrast between the surface layers and bedrock, the present paper recognizes that the secondary resonance peaks of the curve at higher frequencies may reflect strong impedance contrast within surface layers. This concept has been applied to develop a methodology of HVSR-based approach relying on the measurement of the HVSR of microtremors at measuring stations, and calibration and verification by independent mechanical and MSOR (multichannel simulation with one receiver) tests. The use of MSOR tests is introduced in this paper to facilitate the calibration of the HVSR forward model, particularly in terms of providing information for the initial guess of the shear wave velocity, Vs, profile in the HVSR forward modelling. The present paper demonstrates the effective use of the HVSR-based approach to assess dynamic compaction in the gaps away from and not covered by the mechanical tests. The mapping between the depth of bedrock and the predominant resonance frequency is also extended to include the mapping of the depths of layers with strong impedance contrasts to the secondary resonance peaks, after the data have been verified by independent mechanical tests.
机译:本文提出了一种基于HVSR(水平与垂直光谱之比)的方法来评估西悉尼西部一个深而动态压实的填土区。除了认识到HVSR曲线的主要共振峰是表层和基岩之间阻抗对比的反映外,本文还认识到,较高频率的曲线次要共振峰可能反映了表层内的强阻抗对比。 。该概念已被用于开发基于HVSR的方法,该方法依赖于在测量站对微震的HVSR进行测量,并通过独立的机械和MSOR(具有一个接收器的多通道模拟)测试进行校准和验证。本文介绍了使用MSOR测试来促进HVSR正向模型的校准,特别是在为HVSR正向建模中的剪切波速度Vs剖面的初始猜测提供信息方面。本文演示了基于HVSR的方法的有效使用,以评估远离机械测试且未覆盖的间隙中的动态压实。在通过独立的机械测试验证了数据之后,基岩深度和主要共振频率之间的映射也扩展为包括具有强阻抗对比的层的深度与次级共振峰值的映射。

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  • 来源
    《Soil Dynamics and Earthquake Engineering》 |2013年第3期|20-29|共10页
  • 作者单位

    School of Computing Engineering and Mathematics University of Western Sydney Locked Bag 1797 Penrith NSW 2751 Australia;

    Institute for Infrastructure Engineering University of Western Sydney Locked Bag 1797 Penrith NSW 2751 Australia;

    Ecole Nationaie des Travaux Publics de I'Etat Laboratoire Geomateriawc 2 Rue M. Audin 69518 Vaulx en Velin Cedes. France;

    Dipartimento di Fisica e Astronomia Universita di Bologna v.le C.B. Pichat 8 40127 Bologna Italy;

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