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Development of methods and means of spatial location of acoustic emission sources in rock masses

  • Rock Mechanics
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References

  1. W. Blake, F. Leighton, and W. Duvall, Microseismic Techniques for Monitoring the Behavior of Rock Structures, Denver, Colorado (1978).

    Google Scholar 

  2. Yu. I. Bolotin, A. Yu. Iskra, V. V. Nechaev, et al., Problems of Location of Acoustic Emission Sources in Rock Masses [in Russian], VNIIKI Gosstandarta, Moscow, No. 3 (1986).

    Google Scholar 

  3. A. Yu. Iskra, "Microseismic apparatus for recording and locating acoustic emission sources in rock masses," in: Rock Pressure Monitoring Systems [in Russian], IPKON Akad. Nauk SSSR, Moscow (1989).

    Google Scholar 

  4. V. S. Andreev, "Methods of interpreting close earthquakes," Tr. IFZ Akad. Nauk SSSR, Izd. Akad. Nauk SSSR, Moscow, No. 25 (192)(1962).

    Google Scholar 

  5. Yu. I. Bolotin, "Estimation of the errors of locating acoustic emission sources in rock masses," in: Paper Presented at the Third All-Union Scientific and Practical Conference on Acoustic Emission [in Russian], Obninsk, Pt. 1 (1992).

  6. Yu. I. Bolotin, Methods and Apparatus of Modular Location and Measurement of the Energy of Acoustic Emission Sources in Rock Masses [in Russian], Khabarovsk (1992). Deposited at VNITsSMB, No. 72, Moscow.

  7. A. N. Golenkov, "Method of finding the acoustic center of hydrophones in a quasi-static mode," in: Research in the Area of Acoustic Measurements [in Russian], VNIIFTRI, Moscow, No. 23 (53) (1975).

  8. K. N. Trubetskoi, D. M. Bronnikov, S. V. Kuznetsov, and V. A. Trofimov, "Methodological principles of locating the foci of fractures and method of matching first arrivals of elastic waves in rock masses," Fiz.-Tekh. Probl. Razrab. Polezn, Iskop., No. 4 (1994).

  9. Yu. I. Bolotin and I. A. Krivosheev, "Vector variant of the time-difference method of location," in: Abstracts of Papers of the First All-Union Conference on Acoustic Emission [in Russian], Rostov-on-Don, Pt. 1 (1985).

  10. Yu. I. Bolotin, "Measurements of the coordinates and energy of acoustic emission sources in rock masses," Defektoskopiya, No. 3 (1993).

  11. Yu. I. Bolotin, A. Yu. Iskra, and V. V. Nechaev, "Systems of location of acoustic emission sources in rock masses at mines of the Tashtagol and Talnakh deposits," in: Papers of the Third All-Union Scientific and Practical Conference on Acoustic Emission [in Russian], Obninsk, Pt. 1 (1992).

  12. A. Kijko, T. Stankiewicz, and M. Krol, "Lokalizacja watrzasow dorotworu," Przeglad Gorniczy,42, no. 7–8 (1986).

    Google Scholar 

  13. V. N. Bachegov, Yu. B. Drobot, and V. V. Lupanos, Acoustic Contact Leak Detection [in Russian], Izd. NTO Mashprom, Khabarovsk (1987).

    Google Scholar 

  14. K. Nagano, H. Niitsuma, and N. Chubachi, "Automatic algorithm for triaxial hodogram source location in downhole acoustic emission measurement," Geophysics,54, No. 4 (1989).

  15. G. Manderean and R. Lagarde, "Lis auscultent la...terre forraine," Mineurs Fr. (1989), p. 23.

  16. Seismic Monitoring. The Portable Seismic System, Comro Rock Engineering, Johannesburg, South Africa (1992).

  17. K. Pekkari and R. Pekkari, "Data acquisition and handling," in: Proceedings of the International Symposium on Large-Scale Underground Mining (1985).

  18. B. Stabley, B. Brady, and E. Hollop, "Unified mine microseismic rock burst monitoring system" [Russian translation], in: Transactions of the World Mining Congress [in Russian] (1990).

  19. V. A. Gordienko, V. I. Il'ichev, and L. N. Zakharov, Vector-Phase Methods in Acoustics [in Russian], Nauka, Moscow (1989).

    Google Scholar 

  20. Yu. I. Bolotin and A. N. Bondarenko, Principles of Constructing the Parameters of Oscillatory Motion of a Solid in Rock Masses by Means of Contactless, Long-Arm, Downhole, Stabilized Laser Interferometers [in Russian], Khabarovsk (1993). Deposited at VNITsSMB, Moscow, No. 723.

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Translated from Fiziko-Tekhnicheskie Problemy Razrabotki Poleznykh Iskopaemykh, No. 4, pp. 43–51, July–August, 1995.

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Bolotin, Y.I. Development of methods and means of spatial location of acoustic emission sources in rock masses. J Min Sci 31, 272–279 (1995). https://doi.org/10.1007/BF02048226

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