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Geotechnical site investigation for tunneling and underground works by advanced passive surface wave survey

机译:利用高级被动表面波勘测技术对隧道和地下工程进行岩土现场勘测

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摘要

This study introduces crosscorrelation seismic interferometry, a new and feasible complimentary surface wave survey for geotechnical site investigation for tunneling and underground works. Crosscorrelation seismic interferometry uses ambient noise as source to estimate the green's functions received by geophones. The proposed methodology is presented and demonstrated by three case studies in Singapore. The 1st case study demonstrates the workflow of the proposed method. Conventional active multichannel analysis of surface waves (MASW) and passive microtremor array measurement (MAM) have also been carried out on the same site. The comparison with classic active MASW shows that the dispersion curves and shear wave velocity profiles derived by crosscorrelation are more comparable and reasonable. With multiple signal classification (MUSIC) beamforming, the direction of arrival (DOA) of ambient noise field can be characterized. As the prerequisite of crosscorrelation method, with the known DOA, it also affords the opportunity to measure both Rayleigh and Love waves. The 2nd case study demonstrates that the polarization of shear wave velocities can be distinguished by the proposed method. The 3rd case study shows a feasible way to construct a 2D shear wave velocity profile. In short, with a simple linear array, fewer geophones, crosscorrelation is considered to be an attractive complement to the conventional MAM and MASW survey.
机译:这项研究介绍了互相关地震干涉测量法,这是一种新的可行的互补面波测量方法,用于隧道和地下工程的岩土现场调查。互相关地震干涉法使用环境噪声作为来源来估计地震检波器接收到的绿色函数。在新加坡的三个案例研究中提出并演示了所建议的方法。第一个案例研究演示了该方法的工作流程。表面波的常规主动多通道分析(MASW)和被动微震颤阵列测量(MAM)也已在同一地点进行。与经典有源MASW的比较表明,通过互相关得到的色散曲线和剪切波速度分布曲线具有更好的可比性和合理性。通过多信号分类(MUSIC)波束成形,可以表征环境噪声场的到达方向(DOA)。作为互相关方法的前提,使用已知的DOA,它还提供了测量瑞利波和洛夫波的机会。第二个案例研究表明,所提出的方法可以区分剪切波速度的极化。第三个案例研究显示了构建二维剪切波速度剖面的可行方法。简而言之,对于简单的线性阵列,较少的检波器,互相关被认为是对传统MAM和MASW测量的有吸引力的补充。

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