Retrieving drill bit seismic signals using surface seismometers

Linfei Wang , Huaishan Liu , Siyou Tong , Yanxin Yin , Lei Xing , Zhihui Zou , Xiugang Xu

Journal of Earth Science ›› 2015, Vol. 26 ›› Issue (4) : 567 -576.

PDF
Journal of Earth Science ›› 2015, Vol. 26 ›› Issue (4) : 567 -576. DOI: 10.1007/s12583-015-0568-1
Article

Retrieving drill bit seismic signals using surface seismometers

Author information +
History +
PDF

Abstract

Seismic while drilling (SWD) is an emerging borehole seismic imaging technique that uses the downhole drill-bit vibrations as seismic source. Without interrupting drilling, SWD technique can make near-real-time images of the rock formations ahead of the bit and optimize drilling operation, with reduction of costs and the risk of drilling. However, the signal to noise ratio (SNR) of surface SWD-data is severely low for the surface acquisition of SWD data. Here, we propose a new method to retrieve the drill-bit signal from the surface data recorded by an array of broadband seismometers. Taking advantages of wavefield analysis, different types of noises are identified and removed from the surface SWD-data, resulting in the significant improvement of SNR. We also optimally synthesize seismic response of the bit source, using a statistical cross-coherence analysis to further improve the SNR and retrieve both the drill-bit direct arrivals and reflections which are then used to establish a reverse vertical seismic profile (RVSP) data set for the continuous drilling depth. The subsurface images derived from these data compare well with the corresponding images of the three-dimension surface seismic survey cross the well.

Keywords

seismic while drilling (SWD) / drill-bit signals / wavefield analysis / moveout with offset / cross-coherence

Cite this article

Download citation ▾
Linfei Wang, Huaishan Liu, Siyou Tong, Yanxin Yin, Lei Xing, Zhihui Zou, Xiugang Xu. Retrieving drill bit seismic signals using surface seismometers. Journal of Earth Science, 2015, 26(4): 567-576 DOI:10.1007/s12583-015-0568-1

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Angeleri G. P., Persoglia S., Poletto F., . Process and Device for Detecting Seismic Signals in order to Obtain Vertical Seismic Profiles during Bore Drilling Operations. U.S. Patent 5 511 038, 1996

[2]

Asalnuma H., Niitsuma H. Soc. Expl. Geophys.. BG3.3, 1992

[3]

Aki K. Space and Time Spectra of Stationary Stochastic Waves with Special Reference to Microtremors. Bull. Earthq. Res. Inst., 1957, 35: 415-456.

[4]

Chávez-García F. J., Luzón F. On the Correlation of Seismic Microtremors. Journal of Geophysical Research, 2005, 110 B11 B11313

[5]

Chen H. Q., Hu Y. L., Jin J. Q., . Fine Stratigraphic Division of Volcanic Reservoir by Uniting of Well Data and Seismic Data—Taking Volcanic Reservoir of Member one of Yingcheng Formation in Xudong Area of Songliao Basin for an Example. Journal of Earth Science, 2014, 25(2): 337-347.

[6]

Chen L., Lu Y. C., Guo T. L., . Seismic Sedimentology Study in the High-Resolution Sequence Framework—A Case Study of Platform Margin Reef-Beach System of Changxing Formation, Upper Permian, Yuanba Area, Northeast Sichuan Basin, China. Journal of Earth Science, 2012, 23(4): 612-626.

[7]

Du W., Jiang Z. X., Zhang Y., . Sequence Stratigraphy and Sedimentary Facies in the Lower Member of the Permian Shanxi Formation, Northeastern Ordos Basin, China. Journal of Earth Science, 2013, 24(1): 75-88.

[8]

Gibson J., Lin F., Egreteau A., . The Case for Longer Sweeps in Vibrator Acquisition. The Leading Edge, 2010, 29(6): 648-652.

[9]

Haldorsen J. B. U., Farmer P., Desler J. Method for Vertical Seismic Profiling. U.S. Patent 5148407. September 15, 1992, 1992

[10]

Haldorsen J. B. U., Miller D. E., Walsh J. J., . Multichannel Approach to Signature Estimation and Deconvolution for Drill Bit Imaging. SEG Technical Program Expanded Abstracts 1992, 1992, 182: 181-184.

[11]

Haldorsen J. B. U., Miller D. E., Walsh J. J. Multichannel Wiener Deconvolution of Vertical Seismic Profiles. Geophysics, 1994, 59(10): 1500-1511.

[12]

Haldorsen J. B. U., Miller D. E., Walsh J. J. Walk-away VSP Using Drill Noise as a Source. Geophysics, 1995, 60(4): 978-997.

[13]

Katz L. J. Method and System for Seismic Continuous Bit Positioning. U. S. Patent 4460059. July 17, 1984, 1984

[14]

Lansley M., Reknnes P. Higher Density Improves Quality of 3D. American Oil & Gas Reporter, 2002, 126-129.

[15]

Miller D. E., Haldorsen J. B. U. Methods for Deconvolution of Unknown Source Signatures from Unknown Waveform Data. U.S. Patent 4922362. May 1, 1990, 1990

[16]

Naville C., Layotte P. C., Pignard G., . Well Seismic—Application of the TRAFOR MWD System to Drill-Bit Seismic Profiling. 56th EAEG Meeting, 1994, 73 G045.

[17]

Nakata N., Snieder R., Tsuji T., . Shear Wave Imaging from Traffic Noise Using Seismic Interferometry by Cross-Coherence. Geophysics, 2011, 76(6): SA97-SA106.

[18]

Poletto F., Rocca F. L., Bertelli L. Drill-Bit Signal Separation for RVSP Using Statistical Independence. Geophysics, 2000, 65(5): 1654-1659.

[19]

Poletto F. Energy Balance of a Drill-Bit Seismic Source, Part 1: Rotary Energy and Radiation Properties. Geophysics, 2005, 70(2): T13-T28.

[20]

Poletto F. Energy Balance of a Drill-Bit Seismic Source, Part 2: Drill-Bit versus Conventional Seismic Sources. Geophysics, 2005, 70(2): T29-T44.

[21]

Rector J. W., Marion B. P., Widrow B. Use of Drill-Bit Energy as a Downhole Seismic Source. 58nd Annual International Meeting. Soc. Expl. Geophys., 1988, 161-164.

[22]

Rector, J. W., 1990. Utilization of Drill Bit Vibrations as a Downhole Seismic Source: [Dissertation]. Stanford University, Stanford

[23]

Rector J. W., Marion B. P. The Use of Drill-Bit Energy as a Downhole Seismic Source. Geophysics, 1991, 56(5): 628-634.

[24]

Rector J. W., Hardage B. A. Radiation Pattern and Seismic Waves Generated by a Working Roller-Cone Drill Bit. Geophysics, 1992, 57(10): 1319-1333.

[25]

Staron P., Gros P., Arens G. October 15, 1986, 1985

[26]

Wang L. F. Ocean University of China, Qingdao, 2009

[27]

Widrow B. Seismic Processing and Imaging with a Drill-Bit Source. U.S. Patent 4964087. October 16, 1990, 1990

[28]

Yu J., Schuster G. Crosscorrelogram Migration of IVSPWD Data. 71st Annual International Meeting. Soc. Expl. Geophys., 2001, 456-459.

[29]

Yang W. The Institute of Geophysics of China Earthquake Administration, Beijing, 2007

AI Summary AI Mindmap
PDF

165

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/