Research and application of Rayleigh wave imaging based on the Born–Jordan time‐frequency distribution

Author:

Min Xiang12,Xuhui Zhang12,Xiaoyong Yao12,Zhongxiang Jiang3

Affiliation:

1. Key Laboratory of Coal Resources and Green Mining in Xinjiang (Xinjiang Institute of Engineering) Ministry of Education Urumqi Xinjiang China

2. The State Key Laboratory of Coal Resources and Safe Mining Xu Zhou Jiangsu China

3. Geophysical and Chemical Prospecting Brigade of Xinjiang Bureau of Geology and Mineral Resources Changji City Xinjiang China

Abstract

AbstractCurrently, the horizontal resolution of Rayleigh wave exploration is low. In this study, we propose the Born–Jordan time‐frequency distribution to analyse Rayleigh waves. The seismic signal was filtered with a wavelet transform for denoising, and the Rayleigh wave was separated in the time domain. Using the Born–Jordan time‐frequency distribution, the time waveform of each frequency comprising the Rayleigh wave from every seismic channel was obtained, and the time difference of the Rayleigh wave with the same frequency was calculated, based on which the dispersion curve between the two channels was obtained. Combined with the multichannel Rayleigh wave dispersion curve, phase velocity and frequency imaging under the seismic arrangement were obtained. Applying this method to detect abnormal geological bodies in engineering investigations showed that hard geologic bodies, such as comcrete rocks, have high velocity and frequency, whereas weak ones have low velocity and frequency. This strategy facilitated the detection of fractured zones, underground goafs and obstacles during pipe‐jacking construction near the surface.

Funder

Natural Science Foundation of Xinjiang Uygur Autonomous Region

Publisher

Wiley

Reference23 articles.

1. Space and time spectra of stationary stochastic waves, with special reference to microtremors;Aki K.;Bulletin of the Earthquake Research Institute, University of Tokyo,1957

2. On bias and noise in passive seismic data from finite circular array data processed using SPAC methods

3. Inversion of Rayleigh wave dispersion curves based on firefly and bat algorithms;Cai W.;Chinese Journal of Geophysics,2018

4. Generalized Phase-Space Distribution Functions

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