91
Views
1
CrossRef citations to date
0
Altmetric
Articles

Estimation method of coal channel Q value based on frequency shift phenomenon of transmitting channel wave

, , &
Pages 79-87 | Received 06 Mar 2021, Accepted 13 Mar 2022, Published online: 28 Jul 2022

References

  • Bai, C.Y., S. Greenhalgh, and B. Zhou. 2007. 3-D ray tracing using a modified shortest-path method. Geophysics 72 no. 4: T27–T36.
  • Buchanan, D.J. 1978. The propagation of attenuated SH channel waves. Geophysical Prospecting 26: 16–28.
  • Gao, J., S. Yang, and D. Wang. 2008. Using the instantaneous frequency of the envelope peak of the direct wave of VSP data to extract the medium quality factor. Chinese Journal of Geophysics 51 no. 3: 853–861. (in Chinese).
  • He, W. 2017. Three dimensions in-seam wave field simulation and detection method research of working face fault. China University of Mining and Technology: 98–109 (in Chinese).
  • Hu, Z., P. Zhang, and G. Xu 2018. Dispersion features of transmitted channel waves and inversion of coal seam thickness. Acta Geophysica 66 no. 5: 1001–1009.
  • Ji, G., J. Cheng, J. Hu, J. Wang, G. Li, and B. Wang. 2014. Imaging method and application of channel wave attenuation coefficient. Journal of China Coal Society 39 no. S2: 471–475. (in Chinese).
  • Ji, G., J. Cheng, and P. Zhu. 2011. Numerical simulation of love type channel wave in coal seam and analysis of its dispersion characteristics. Coal Science and Technology 39 no. 6: 106–109. (in Chinese).
  • Ji, G., J. Cheng, P. Zhu, and H. Li. 2012. Three-dimensional numerical simulation and dispersion analysis of channel waves in coal mines. Chinese Journal of Geophysics 55 no. 2: 645–654. (in Chinese).
  • Ji, G., J. Wei, S. Yang, J. Yang, R. Ding, and G. Zhang. 2019. Preliminary study on the wave field and dispersion characteristics of HTI coal seam media. Chinese Journal of Geophysics 62 no. 2: 789–801. (in Chinese).
  • Lei, F., W. Wang, S. Li, X. Yao, J. Teng, and X. Gao. 2017. Research on the Channel Wave Field Characters of Goaf in Coal Mine and Its Application. In Technology and Application of Environmental and Engineering Geophysics, ed. Q. Di, G. Xue, and J. Xia, 57–70. Beijing, Singapore: Springer.
  • Li, H., P. Zhu, G. Ji, and Q. Zhang. 2016. Modified image algorithm to simulate seismic channel waves in 3D tunnel model with rugged free surfaces. Geophysical Prospecting 64 no. 5: 1259–1274.
  • Li, X.P., W. Schott, and H. Rüter. 1995. Frequency-dependentQ-estimation of love-type channel waves and the application of Q-correction to seismograms. Geophysics 60 no. 6: 1773–1789.
  • Liu, T. 1994. Channel wave seismic exploration. Xuzhou, Jiangsu Province: China University of Mining and Technology Press.
  • Liu, T., and J. Cheng. 1993. Absorption and attenuation of channel wave. Journal of China Coal Society 18 no. 05: 83–86. (in Chinese).
  • Luxbacher, K., Westman, E., Swanson, P. and M. Karfakis 2008. Three-dimensional time-lapse velocity tomography of an underground longwall panel. International Journal of Rock Mechanics and Mining Sciences 45 no. 4: 478–485.
  • Quan, Y., and J.M. Harris. 1997. Seismic attenuation tomography using the frequency shift method. Geophysics 62 no. 3: 895–905.
  • Wang, B., S. Liu, F. Zhou, Z. Hu, L. Huang, and Y. Jiang. 2016aa. Dispersion characteristics of SH transmitted channel waves and comparative study of dispersion analysis methods. Journal of Computational and Theoretical Nanoscience 13 no. 2: 1468–1474.
  • Wang, B., H. Sun, X. Li, S. Xing, and X. Ding. 2021. Study on seismic wave field characteristics and application of CO2 concentrated force source. Journal of China Coal Society 46 no. 2: 556–565. (in Chinese).
  • Wang, J. 2015. Research on the experiment and method of detecting goaf roadway with reflection channel wave. Journal of China Coal Society 8: 1879–1885. (in Chinese).
  • Wang, J., G. Li, G. Wu, H. Niu, S. Liu, and B. Wang. 2016ba. Transmission channel wave detection technology for geological anomalies in coal mining face. Coal Science and Technology 44 no. 6: 159–163. (in Chinese).
  • Wang, Q., and J. Gao. 2018. An improved peak frequency shift method for Q estimation based on generalized seismic wavelet function. Journal of Geophysics and Engineering 15 no. 1: 164–178.
  • Wang, W., X. Gao, S. Li, Y. Le, G. Hu, and Y. Li. 2012. The application of channel wave tomography in coal field exploration-An example of henan yima mining area. Chinese Journal of Geophysics 55 no. 3: 1054–1062 (in Chinese).
  • Wang, W., G. Xue, X. Gao, J. Teng, and H. Cui. 2016bb. Channel wave tomographic imaging method and its application in detection of collapse column in coal. International conference on Environment and Engineering geophysics & summit forum of Chinese academy of Engineering on Engineering Science and technology, Pp.149-152.
  • Wang, Y. 2002. A stable and efficient approach of inverse Q filtering. Geophysics 67: 657–663.
  • Wang, Y. 2004. Constructing subsurface structures of the chelungpu fault to investigate mechanisms leading to abnormally large ruptures during the 1999 Chi-Chi earthquake, taiwan. Geophysical Research Letters 31: L17606.
  • Wang, Y. 2014. Stable Q analysis on vertical seismic profiling data. Geophysics 79: D217–D225.
  • Wang, Z., T. Fan, S. Ma, H. Fan, H. Zhang, and Y. Ma. 2015. Variation law of seismic wave centroid frequency. Petroleum Geophysical Prospecting 5: 861–872(in Chinese).
  • Yang, S., J. Wei, J. Cheng, L. Shi, and Z. Wen. 2016. Numerical simulations of full-wave fields and analysis of channel wave characteristics in 3-D coal mine roadway models. Applied Geophysics 13 no. 4: 621–630.
  • Yang, X., S. Cao, D. Li, P. Yu, and H. Zhang. 2014. Analysis of quality factors for Rayleigh channel waves. Applied Geophysics 11 no. 1: 107–114.
  • Zhang, J., Y. Huang, L.P. Song, and Q.H. Liu. 2011. Fast and accurate 3-D ray tracing using bilinear traveltime interpolation and the wave front group marching. Geophysical Journal International 184 no. 3: 1327–1340.
  • Zhang, Y. 2003. Numerical simulation method of seismic wave field. Geophysical Prospecting for Petroleum 42 no. 2: 143–148. (in Chinese).
  • Zhu, M., J. Cheng, W. Cui, and H. Yue. 2019. Comprehensive prediction of coal seam thickness by using in-seam seismic surveys and Bayesian kriging. Acta Geophysica 67 no. 3: 825–836.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.