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Erschienen in: Rock Mechanics and Rock Engineering 2/2021

17.11.2020 | Original Paper

Evaluation of Borehole Hydraulic Fracturing in Coal Seam Using the Microseismic Monitoring Method

verfasst von: Nan Li, Liulin Fang, Weichen Sun, Xin Zhang, Dong Chen

Erschienen in: Rock Mechanics and Rock Engineering | Ausgabe 2/2021

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Abstract

Accurate evaluation of the influence range of borehole hydraulic fracturing (HF) in coal seam is crucial for optimizing the design scheme of HF. In this study, we adopted the microseismic (MS) monitoring technology to monitor and characterize the spatial shape of cracks caused by borehole HF in coal seam in an underground coal mine. And we also tested and analyzed the stress and moisture content changes of coal mass at different distances from the borehole after HF program. The number of MS waveforms and the energy of MS events show a good positive correlation with the water pressure curve. The response of the energy curve to the extension of the hydraulic cracks is ahead of the water pressure curve. Based on the short-time average/long-time average (STA/LTA), the interference signal recognition method (ISR) and the improved Akaike information criterion (AIC) method, we developed a comprehensive MS event detection and arrival time picking (CMDP) program that are suitable for the weak MS signals with low signal to noise ratio (SNR) induced by HF in coal seam. And then we were able to more accurately locate the MS events of the hydraulic cracks using the simplex source location method. We have conducted a comprehensive analysis of the relationship between the temporal and spatial distribution of MS events and hydraulic cracks propagation. The results show that there is an apparent correlation between the MS activities and HF operation. The expansion of hydraulic cracks generates MS events, and the larger the size of the cracks, the greater the energy of MS events. Based on the MS monitoring results, the HF produces a crack network of flat ellipsoid in the No. 6 coal seam, which indicates that there is obvious stimulated reservoir volume (SRV) fracturing effect during the borehole HF process. The influence radius of HF based on the moisture content is the smallest (about 20 m), followed by the stress monitoring (about 30 m), and the MS monitoring is the largest (about 40 m). The high-precision MS source location (location errors < 2.5 m) results combined with roadway roof watering phenomenon indicate that the influence radius of HF based on the moisture content and stress release may be underestimated. And the effective influence radius of the borehole HF is about 40 m for this HF program.

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Literatur
Zurück zum Zitat Adachi J, Siebrits E, Peirce A, Desroches J (2007) Computer simulation of hydraulic fractures. Int J Rock Mech Min Sci 44:739–757 Adachi J, Siebrits E, Peirce A, Desroches J (2007) Computer simulation of hydraulic fractures. Int J Rock Mech Min Sci 44:739–757
Zurück zum Zitat Akram J, Eaton DW (2014) A review and appraisal of arrival-time picking methods for downhole microseismic data. Geophysics 81(2):KS71–KS91 Akram J, Eaton DW (2014) A review and appraisal of arrival-time picking methods for downhole microseismic data. Geophysics 81(2):KS71–KS91
Zurück zum Zitat Allen R (1978) Automatic earthquake recognition and timing from single traces. Bull Seismol Soc Am 68:1521–1532 Allen R (1978) Automatic earthquake recognition and timing from single traces. Bull Seismol Soc Am 68:1521–1532
Zurück zum Zitat Bao XW, Eaton DW (2016) Fault activation by hydraulic fracturing in western Canada. Science 354(6318):1406–1409 Bao XW, Eaton DW (2016) Fault activation by hydraulic fracturing in western Canada. Science 354(6318):1406–1409
Zurück zum Zitat Chen BR, Feng XT, Zeng XH, Xiao YX, Zhang ZT, Ming HJ, Feng GL (2011) Real-time microseismic monitoring and its characteristic analysis during TBM tunneling in deep-buried tunnel. Chin J Rock Mech Eng 30(2):275–283 Chen BR, Feng XT, Zeng XH, Xiao YX, Zhang ZT, Ming HJ, Feng GL (2011) Real-time microseismic monitoring and its characteristic analysis during TBM tunneling in deep-buried tunnel. Chin J Rock Mech Eng 30(2):275–283
Zurück zum Zitat Dou LM, Mu ZL, Lu CP (2014) Theory and technology of mining geophysics. Science press, Beijing Dou LM, Mu ZL, Lu CP (2014) Theory and technology of mining geophysics. Science press, Beijing
Zurück zum Zitat Economides MJ, Martin T (2007) Modern fracturing: enhancing natural gas production. Energy Tribune Publishing, Houston Economides MJ, Martin T (2007) Modern fracturing: enhancing natural gas production. Energy Tribune Publishing, Houston
Zurück zum Zitat Eisner L, Hulsey BJ, Peter D, Jurick D, Werner H (2010) Comparison of surface and borehole locations of induced seismicity. Geophys Prospect 58:809–820 Eisner L, Hulsey BJ, Peter D, Jurick D, Werner H (2010) Comparison of surface and borehole locations of induced seismicity. Geophys Prospect 58:809–820
Zurück zum Zitat Ellsworth WL (2013) Injection-induced earthquakes. Science 341(6142):1225942 Ellsworth WL (2013) Injection-induced earthquakes. Science 341(6142):1225942
Zurück zum Zitat Fehler M, Jupe A, Asanuma H (2001) More than cloud: new techniques for characterizing reservoir structure using induced seismicity. Leading Edge 20(3):324–328 Fehler M, Jupe A, Asanuma H (2001) More than cloud: new techniques for characterizing reservoir structure using induced seismicity. Leading Edge 20(3):324–328
Zurück zum Zitat Fischer T, Bouskova A, Eisner L, Calvez JL (2007) Automated P- and S-wave picking of microearthquakes recorded by a vertical array. In: Proceedings of the 69th EAGE conference & exhibition, London, UK, 11–14 June Fischer T, Bouskova A, Eisner L, Calvez JL (2007) Automated P- and S-wave picking of microearthquakes recorded by a vertical array. In: Proceedings of the 69th EAGE conference & exhibition, London, UK, 11–14 June
Zurück zum Zitat Ge MC (2003) Analysis of source location algorithms, part II: iterative methods. J Acoust Emiss 21:29–51 Ge MC (2003) Analysis of source location algorithms, part II: iterative methods. J Acoust Emiss 21:29–51
Zurück zum Zitat Geertsma J, Deklerk F (1969) A rapid method of predicting width and extent of hydraulically induced fractures. J Pet Technol 21(12):1571–1581 Geertsma J, Deklerk F (1969) A rapid method of predicting width and extent of hydraulically induced fractures. J Pet Technol 21(12):1571–1581
Zurück zum Zitat Gibbons SJ, Ringdal F, Kvaerna T (2008) Detection and characterization of seismic phases using continuous spectral estimation on incoherent and partially coherent arrays. Geophys J Int 172:405–421 Gibbons SJ, Ringdal F, Kvaerna T (2008) Detection and characterization of seismic phases using continuous spectral estimation on incoherent and partially coherent arrays. Geophys J Int 172:405–421
Zurück zum Zitat Grechka V, Duchkov AA (2011) Narrow-angle representations of the phase and group velocities and their applications in anisotropic velocity-model building for microseismic monitoring. Geophysics 76(6):WC127–WC142 Grechka V, Duchkov AA (2011) Narrow-angle representations of the phase and group velocities and their applications in anisotropic velocity-model building for microseismic monitoring. Geophysics 76(6):WC127–WC142
Zurück zum Zitat Hardy HR (2003) Acoustic emission/microseismic activity: principles, techniques and geotechnical applications, vol 1. A.A. Balkema Publishers, Amsterdam Hardy HR (2003) Acoustic emission/microseismic activity: principles, techniques and geotechnical applications, vol 1. A.A. Balkema Publishers, Amsterdam
Zurück zum Zitat Huang BX (2012) Theory and application of hydraulic fracture of coal and rock mass. China University of Mining and Technology Press, Xuzhou Huang BX (2012) Theory and application of hydraulic fracture of coal and rock mass. China University of Mining and Technology Press, Xuzhou
Zurück zum Zitat Huang BX, Liu JW (2017) Experimental investigation of the effect of bedding planes on hydraulic fracturing under true triaxial stress. Rock Mech Rock Eng 50(10):2627–2643 Huang BX, Liu JW (2017) Experimental investigation of the effect of bedding planes on hydraulic fracturing under true triaxial stress. Rock Mech Rock Eng 50(10):2627–2643
Zurück zum Zitat Jiang FX, Yang SH, Cheng YH, Zhang XM, Mao ZY, Xu FJ (2006) A study on microseismic monitoring of rock burst in coal mine. Chin J Geophys 49(5):1511–1516 Jiang FX, Yang SH, Cheng YH, Zhang XM, Mao ZY, Xu FJ (2006) A study on microseismic monitoring of rock burst in coal mine. Chin J Geophys 49(5):1511–1516
Zurück zum Zitat Karrenbach M, Ridge A, Cole S, Boone K, Kahn D, Rich J, Silver K, Langton D (2017) DAS microseismic monitoring and integration with strain measurements in hydraulic fracture profiling. In: Proceedings of the unconventional resources technology conference. Austin, Texas, USA, pp 1316–1330. https://doi.org/10.15530/URTEC-2017-2670716 Karrenbach M, Ridge A, Cole S, Boone K, Kahn D, Rich J, Silver K, Langton D (2017) DAS microseismic monitoring and integration with strain measurements in hydraulic fracture profiling. In: Proceedings of the unconventional resources technology conference. Austin, Texas, USA, pp 1316–1330. https://​doi.​org/​10.​15530/​URTEC-2017-2670716
Zurück zum Zitat Leonard M, Kennett B (1999) Multi-component autoregressive techniques for the analysis of seismograms. Phys Earth Planet Inter 113:247–263 Leonard M, Kennett B (1999) Multi-component autoregressive techniques for the analysis of seismograms. Phys Earth Planet Inter 113:247–263
Zurück zum Zitat Li JL, Kuleli H, Zhang HJ, Toksoz MN (2011) Focal mechanism determination of induced microearthquakes in an oil field using full waveforms from shallow and deep seismic networks. Geophysics 76(6):WC87–WC101 Li JL, Kuleli H, Zhang HJ, Toksoz MN (2011) Focal mechanism determination of induced microearthquakes in an oil field using full waveforms from shallow and deep seismic networks. Geophysics 76(6):WC87–WC101
Zurück zum Zitat Li N, Wang EY, Ge MC, Sun ZY (2014a) A nonlinear microseismic source location method based on Simplex method and its residual analysis. Arab J Geosci 7(11):4477–4486 Li N, Wang EY, Ge MC, Sun ZY (2014a) A nonlinear microseismic source location method based on Simplex method and its residual analysis. Arab J Geosci 7(11):4477–4486
Zurück zum Zitat Li N, Wang EY, Ge MC, Sun ZY, Li BL (2014b) A method for identifying outlier signals for microseismic event based on arrival time difference. Chin J Rock Mech Eng 33(8):1654–1661 Li N, Wang EY, Ge MC, Sun ZY, Li BL (2014b) A method for identifying outlier signals for microseismic event based on arrival time difference. Chin J Rock Mech Eng 33(8):1654–1661
Zurück zum Zitat Li N, Wang EY, Ge MC (2017) Microseismic monitoring technique and its applications at coal mines: present status and future prospects. J China Coal Soc 42(S1):83–96 Li N, Wang EY, Ge MC (2017) Microseismic monitoring technique and its applications at coal mines: present status and future prospects. J China Coal Soc 42(S1):83–96
Zurück zum Zitat Li L, Tan JQ, Wood DA, Zhao ZG, Becker D, Lyu Q, Shu B, Cheng HC (2019a) A review of the current status of induced seismicity monitoring for hydraulic fracturing in unconventional tight oil and gas reservoirs. Fuel 242(2019):195–210 Li L, Tan JQ, Wood DA, Zhao ZG, Becker D, Lyu Q, Shu B, Cheng HC (2019a) A review of the current status of induced seismicity monitoring for hydraulic fracturing in unconventional tight oil and gas reservoirs. Fuel 242(2019):195–210
Zurück zum Zitat Li N, Huang BX, Zhang X, Tan YY, Li BL (2019b) Characteristics of microseismic waveforms induced by hydraulic fracturing in coal seam for coal rock dynamic disasters prevention. Saf Sci 115:188–198 Li N, Huang BX, Zhang X, Tan YY, Li BL (2019b) Characteristics of microseismic waveforms induced by hydraulic fracturing in coal seam for coal rock dynamic disasters prevention. Saf Sci 115:188–198
Zurück zum Zitat Li N, Li BL, Chen D, Wang EY, Tan YY, Qian JW, Jia HS (2020) Waveform characteristics of earthquakes induced by hydraulic fracturing and mining activities: comparison with those of natural earthquakes. Nat Resour Res 29(6):3653–3674. https://doi.org/10.1007/s11053-020-09699-z Li N, Li BL, Chen D, Wang EY, Tan YY, Qian JW, Jia HS (2020) Waveform characteristics of earthquakes induced by hydraulic fracturing and mining activities: comparison with those of natural earthquakes. Nat Resour Res 29(6):3653–3674. https://​doi.​org/​10.​1007/​s11053-020-09699-z
Zurück zum Zitat Lin BQ (2010) Theory and technology of coal mine gas prevention. China University of Mining and Technology Press, Xuzhou Lin BQ (2010) Theory and technology of coal mine gas prevention. China University of Mining and Technology Press, Xuzhou
Zurück zum Zitat Ma TH, Tang CA, Tang LX, Zhang WD, Wang L (2016) Mechanism of rock burst forcasting based on micro-seismic monitoring technology. Chin J Rock Mech Eng 35(3):470–483 Ma TH, Tang CA, Tang LX, Zhang WD, Wang L (2016) Mechanism of rock burst forcasting based on micro-seismic monitoring technology. Chin J Rock Mech Eng 35(3):470–483
Zurück zum Zitat Maity D, Ciezobka J (2019) Using microseismic frequency-magnitude distributions from hydraulic fracturing as an incremental tool for fracture completion diagnostics. J Pet Sci Eng 176(2019):1135–1151 Maity D, Ciezobka J (2019) Using microseismic frequency-magnitude distributions from hydraulic fracturing as an incremental tool for fracture completion diagnostics. J Pet Sci Eng 176(2019):1135–1151
Zurück zum Zitat Maxwell S (2010) Microseismic: growth born from success. Lead Edge 29:338–343 Maxwell S (2010) Microseismic: growth born from success. Lead Edge 29:338–343
Zurück zum Zitat Maxwell S (2014) Microseismic imaging of hydraulic fracturing: improved engineering of unconventional shale reservoirs. Society of Exploration Geophysicists, Tulsa, p 2014 Maxwell S (2014) Microseismic imaging of hydraulic fracturing: improved engineering of unconventional shale reservoirs. Society of Exploration Geophysicists, Tulsa, p 2014
Zurück zum Zitat Nelder JA, Mead R (1965) A simplex method for function minimization. Comput J 7(4):308–313 Nelder JA, Mead R (1965) A simplex method for function minimization. Comput J 7(4):308–313
Zurück zum Zitat Nordgren RP (1972) Propagation of a vertical hydraulic fracture. Soc Pet Eng J 12(04):306–314 Nordgren RP (1972) Propagation of a vertical hydraulic fracture. Soc Pet Eng J 12(04):306–314
Zurück zum Zitat Pan YS, Zhao YF, Guan FH, Li GZ, Ma ZS (2007) Study on rockburst monitoring and orientation system and its application. Chin J Rock Mech Eng 26(5):1002–1011 Pan YS, Zhao YF, Guan FH, Li GZ, Ma ZS (2007) Study on rockburst monitoring and orientation system and its application. Chin J Rock Mech Eng 26(5):1002–1011
Zurück zum Zitat Perkins TK, Kern LR (1961) Widths of hydraulic fractures. J Pet Technol 13(09):937–949 Perkins TK, Kern LR (1961) Widths of hydraulic fractures. J Pet Technol 13(09):937–949
Zurück zum Zitat Rassenfoss S (2019) Technology senior fracturing creates hundreds of fractures-only a few matter. J Pet Technol 12(71):24–29 Rassenfoss S (2019) Technology senior fracturing creates hundreds of fractures-only a few matter. J Pet Technol 12(71):24–29
Zurück zum Zitat Rutledge JT, Phillips WS (2003) Hydraulic stimulation of natural fractures as revealed by induced microearthquakes, Carthage Cotton Valley gas field. Geophysics 68:441–452 Rutledge JT, Phillips WS (2003) Hydraulic stimulation of natural fractures as revealed by induced microearthquakes, Carthage Cotton Valley gas field. Geophysics 68:441–452
Zurück zum Zitat Shen J, Zhao YS, Duan KL (1997) Numerical simulation of hydraulic fracture in low permeable coal and rock mass. J China Coal Soc 22(6):580–585 Shen J, Zhao YS, Duan KL (1997) Numerical simulation of hydraulic fracture in low permeable coal and rock mass. J China Coal Soc 22(6):580–585
Zurück zum Zitat Siebrits E, Peirce AP (2002) An efficient multi-layer planar 3D fracture growth algorithm using a fixed mesh approach. Int J Numer Methods Eng 53(3):691–717 Siebrits E, Peirce AP (2002) An efficient multi-layer planar 3D fracture growth algorithm using a fixed mesh approach. Int J Numer Methods Eng 53(3):691–717
Zurück zum Zitat Sleeman R, Eck VT (1999) Robust automatic P-phase picking: an on-line implementation in the analysis of broadband seismogram recordings. Phys Earth Planet Inter 113:265–275 Sleeman R, Eck VT (1999) Robust automatic P-phase picking: an on-line implementation in the analysis of broadband seismogram recordings. Phys Earth Planet Inter 113:265–275
Zurück zum Zitat Song FX, Toksoz MN (2011) Full-waveform based complete moment tensor inversion and source parameter estimation from downhole microseismic data for hydraulic fracturing. Geophysics 76(6):WC103–WC116 Song FX, Toksoz MN (2011) Full-waveform based complete moment tensor inversion and source parameter estimation from downhole microseismic data for hydraulic fracturing. Geophysics 76(6):WC103–WC116
Zurück zum Zitat Song FX, Kuleli HS, Toksöz MN, Ay E, Zhang H (2010) An improved method for hydrofracture-induced microseismic event detection and phase picking. Geophysics 75(6):A47–A52 Song FX, Kuleli HS, Toksöz MN, Ay E, Zhang H (2010) An improved method for hydrofracture-induced microseismic event detection and phase picking. Geophysics 75(6):A47–A52
Zurück zum Zitat Tan YY, Zhang HJ, Li JL, Yin C, Wu FR (2018) Focal mechanism determination for induced seismicity using the neighbourhood algorithm. Geophys J Int 214(3):1715–1731 Tan YY, Zhang HJ, Li JL, Yin C, Wu FR (2018) Focal mechanism determination for induced seismicity using the neighbourhood algorithm. Geophys J Int 214(3):1715–1731
Zurück zum Zitat Tan YY, Hu J, Zhang HJ, Chen Y, Qian JW, Wang QF, Zha HS, Tang P, Nie Z (2020) Hydraulic fracturing induced seismicity in the southern Sichuan Basin due to fluid diffusion inferred from seismic and injection data analysis. Geophys Res Lett 47(4):e2019GL084885. https://doi.org/10.1029/2019GL084885 Tan YY, Hu J, Zhang HJ, Chen Y, Qian JW, Wang QF, Zha HS, Tang P, Nie Z (2020) Hydraulic fracturing induced seismicity in the southern Sichuan Basin due to fluid diffusion inferred from seismic and injection data analysis. Geophys Res Lett 47(4):e2019GL084885. https://​doi.​org/​10.​1029/​2019GL084885
Zurück zum Zitat Tang LZ, Xia KW, Li X (2010) Seismic multi-fractal characteristics in mines and seismicity prediction. Chin J Rock Mech Eng 29(9):1818–1824 Tang LZ, Xia KW, Li X (2010) Seismic multi-fractal characteristics in mines and seismicity prediction. Chin J Rock Mech Eng 29(9):1818–1824
Zurück zum Zitat Tang Y, Tang X, Wang GY, Zhang O (2011) Summary of hydraulic fracturing technology in shale gas development. Geol Bull China 30(2/3):393–399 Tang Y, Tang X, Wang GY, Zhang O (2011) Summary of hydraulic fracturing technology in shale gas development. Geol Bull China 30(2/3):393–399
Zurück zum Zitat Tian X, Zhang W, Zhang J (2017) Cross double-difference inversion for simultaneous velocity model update and microseismic event location. Geophys Prospect 65:259–273 Tian X, Zhang W, Zhang J (2017) Cross double-difference inversion for simultaneous velocity model update and microseismic event location. Geophys Prospect 65:259–273
Zurück zum Zitat Wang WD (2016) Experimental study on acoustic emission monitoring and fracture instability characteristic during hydraulic fracturing in coal. Anhui University of Science and Technology, Huainan Wang WD (2016) Experimental study on acoustic emission monitoring and fracture instability characteristic during hydraulic fracturing in coal. Anhui University of Science and Technology, Huainan
Zurück zum Zitat Wang XL (2017) Numerical simulation of hydraulic fracturing in shale gas reservoirs based on the extended finite element method. University of Science and Technology of China, Hefei Wang XL (2017) Numerical simulation of hydraulic fracturing in shale gas reservoirs based on the extended finite element method. University of Science and Technology of China, Hefei
Zurück zum Zitat Wang YF, He XQ, Wang EY, Li YZ (2014) Research progress and development tendency of the hydraulic technology for increasing the permeability of coal seams. J China Coal Soc 39(10):1945–1955 Wang YF, He XQ, Wang EY, Li YZ (2014) Research progress and development tendency of the hydraulic technology for increasing the permeability of coal seams. J China Coal Soc 39(10):1945–1955
Zurück zum Zitat Wang XR, Li N, Wang EY, Liu XF (2020) Microcracking mechanisms of sandstone based on acoustic emission source inversion. Chin J Geophys 64(7):2578–2587 Wang XR, Li N, Wang EY, Liu XF (2020) Microcracking mechanisms of sandstone based on acoustic emission source inversion. Chin J Geophys 64(7):2578–2587
Zurück zum Zitat Webster P, Wall J, Perkins C, Molenaar M (2013) Micro-seismic detection using distributed acoustic sensing. In: Proceedings of the 2013 SEG annual meeting, pp 2459–2463 Webster P, Wall J, Perkins C, Molenaar M (2013) Micro-seismic detection using distributed acoustic sensing. In: Proceedings of the 2013 SEG annual meeting, pp 2459–2463
Zurück zum Zitat Wu JJ, Zhang SH, Sun PH, Cao H, Chen JZ (2017) Experimental study on acoustic emission characteristics in coal seam pulse hydraulic fracturing. J Cent South Univ Sci Technol 48(7):1866–1874 Wu JJ, Zhang SH, Sun PH, Cao H, Chen JZ (2017) Experimental study on acoustic emission characteristics in coal seam pulse hydraulic fracturing. J Cent South Univ Sci Technol 48(7):1866–1874
Zurück zum Zitat Xia YX, Kang LJ, Qi QX, Mao DB, Ren Y, Lan H, Pan JF (2010) Five indexes of microseismic and their application in rock burst forecastion. J China Coal Soc 3542(12):2011–2016 Xia YX, Kang LJ, Qi QX, Mao DB, Ren Y, Lan H, Pan JF (2010) Five indexes of microseismic and their application in rock burst forecastion. J China Coal Soc 3542(12):2011–2016
Zurück zum Zitat Yang Y, Yang YM, Ma S, Ju Y, Guo YC, Yu Y (2013) Crack propagation induced by hydraulic fracturing in low permeability rocks using CT technology. J Min Saf Eng 30(5):739–743 Yang Y, Yang YM, Ma S, Ju Y, Guo YC, Yu Y (2013) Crack propagation induced by hydraulic fracturing in low permeability rocks using CT technology. J Min Saf Eng 30(5):739–743
Zurück zum Zitat Yuan L, Lin BQ, Yang W (2015) Research progress and development direction of gas control with mine hydraulic technology in China coal mine. Coal Sci Technol 43(1):45–49 Yuan L, Lin BQ, Yang W (2015) Research progress and development direction of gas control with mine hydraulic technology in China coal mine. Coal Sci Technol 43(1):45–49
Zurück zum Zitat Zhai HY, Chang X, Wang YB, Yao ZX (2016) Inversion for microseismic focal mechanisms in attenuated strata and its resolution. Chin J Geophys 59(8):3025–3036 Zhai HY, Chang X, Wang YB, Yao ZX (2016) Inversion for microseismic focal mechanisms in attenuated strata and its resolution. Chin J Geophys 59(8):3025–3036
Zurück zum Zitat Zhang HJ, Thurber C, Rowe CA (2003) Automatic P-wave arrival detection and picking with multiscale wavelet analysis for single-component recordings. Bull Seismol Soc Am 93(5):1904–1912 Zhang HJ, Thurber C, Rowe CA (2003) Automatic P-wave arrival detection and picking with multiscale wavelet analysis for single-component recordings. Bull Seismol Soc Am 93(5):1904–1912
Zurück zum Zitat Zhu QJ, Feng Y, Cai M, Liu JH, Wang HH (2017) Interpretation of the extent of hydraulic fracturing for rockburst prevention using microseismic monitoring data. J Nat Gas Sci Eng 38(2017):107–119 Zhu QJ, Feng Y, Cai M, Liu JH, Wang HH (2017) Interpretation of the extent of hydraulic fracturing for rockburst prevention using microseismic monitoring data. J Nat Gas Sci Eng 38(2017):107–119
Zurück zum Zitat Zhuang Z, Liu ZL, Wang T, Gao Y, Wang YH, Fu HF (2016) The key mechanical problems on hydraulic fracture in shale (in Chinese). Chin Sci Bull 61:72–81 Zhuang Z, Liu ZL, Wang T, Gao Y, Wang YH, Fu HF (2016) The key mechanical problems on hydraulic fracture in shale (in Chinese). Chin Sci Bull 61:72–81
Metadaten
Titel
Evaluation of Borehole Hydraulic Fracturing in Coal Seam Using the Microseismic Monitoring Method
verfasst von
Nan Li
Liulin Fang
Weichen Sun
Xin Zhang
Dong Chen
Publikationsdatum
17.11.2020
Verlag
Springer Vienna
Erschienen in
Rock Mechanics and Rock Engineering / Ausgabe 2/2021
Print ISSN: 0723-2632
Elektronische ISSN: 1434-453X
DOI
https://doi.org/10.1007/s00603-020-02297-8

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