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CALIBRATION OF RAPID IMPULSE COMPACTION ON THE BASIS OF VIBRATION VELOCITY CONTROL

Rybak, Jaroslaw, Tamrazyan, Ashot

First published: 2016-06-28https://doi.org/10.5593/sgem2016/b11/s02.090View metrics

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Publication details

Title
CALIBRATION OF RAPID IMPULSE COMPACTION ON THE BASIS OF VIBRATION VELOCITY CONTROL
Authors
Rybak, Jaroslaw, Tamrazyan, Ashot
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 16th International Multidisciplinary Scientific GeoConference SGEM2016, Science and Technologies in Geology, Exploration and Mining
Publisher
Stef92 Technology
Year
2016
Pages
715-722
ISSN
1314-2704
ISBN
978-619-7105-55-1
Language
en
Publication type
Conference Paper
Keywords
References30
  1. Athanaospoulos G.A., Pelekis P.C., Anagnostopoulos G.A., Effect of soil stiffness in the attenuation of Rayleigh-wave motions from field measurements, Soil Dynamics and Earthquake Engineering 19 (2000) pp. 277-288

  2. Athanaospoulos G.A., Pelekis P.C., Ground vibrations from sheetpile driving in urban environment: measurements, analysis and effects on buildings and occupants, Soil Dynamics and Earthquake Engineering 19 (2000) pp. 371-387

  3. Bachmann H., Ammann W., Vibration in Structures. Induced by Man and Machines. International Association for Bridge and Structural Engineering 1987

  4. Brzakala W., Herbut A., Rybak J. (2014).: Recommendations for ground vibrations survey in course of geotechnical works. 14th International Multidisciplinary Scientific GeoConference SGEM 2014 : GeoConference on science and technologies in geology, exploration and mining, Albena, Bulgaria, 17-26 June, 2014. Vol. 2, Hydrogeology, engineering geology and geotechnics. pp. 747-754

  5. Hiller, D.M. & Hope, V.S. (1998). “Groundborne vibration generated by mechanized construction activity.” Proc., Inst. Civil Engineers (131) 223-232

  6. Hwang J.H., Tu T.Y., Ground vibration due to dynamic compaction, Soil Dynamics and Earthquake Engineering 26 (2006) pp. 337-346

  7. Pieczynska J. M., Rybak J.(2009): Prospects for active design expansion owing to investigation of vibrations caused by geotechnical works. Wiadomosci Konserwatorskie. nr 26, pp. 481-491

  8. Rybak J., Pieczynska-Kozlowska J. (2014):Vibration monitoring as a tool for a calibration of geotechnical technologies. 14th International Multidisciplinary Scientific GeoConference SGEM 2014 : GeoConference on science and technologies in geology, exploration and mining, Albena, Bulgaria, 17-26 June, 2014. Vol. 2, Hydrogeology, engineering geology and geotechnics. pp. 1043-1050

  9. Skipp B.O., Ground vibration – codes and standards. In: Skipp (ed) Ground dynamics and man-made processes. The Institution of Civil Engineers, 1998

  10. Srbulov M., Practical Soil Dynamics. Case Studies in Earthquake and Geotechnical Engineering., Springer 2011

  11. Srbulov M., Ground Vibration Engineering. Simplified analyses with Case Studies and Examples., Springer 2010

  12. Tamrazyan A.G., Avetisyan L.A. (2014): Experimental research in eccentrically compressed reinforced concrete elements during short-term dynamic loadings under fire conditions. Promyshlennoe i grazhdanskoe stroitel'stvo, Issue 4, pp 24-28

  13. Tamrazyan A.G., Avetisyan L.A. (2014): Estimation of Load Bearing Capacity of Eccentrically Compressed Reinforced Concrete Elements under Dynamic Loading in Fire Conditions, Applied Mechanics and Materials, Vols. 638 -640, pp. 62-65

  14. DIN 4150-3:1999-02 Structural vibration Part 3: Effects of vibration on structures

  15. Vibration testing reports U-series no. 145/2015, 153/2015, 2/2016, Wroclaw University of Technology (in Polish) 16th International Scientific GeoConference SGEM2016 www.sgem.org

  16. Athanaospoulos G.A., Pelekis P.C., Anagnostopoulos G.A., Effect of soil stiffness in the attenuation of Rayleigh-wave motions from field measurements, Soil Dynamics and Earthquake Engineering 19 (2000) pp. 277-288

  17. Athanaospoulos G.A., Pelekis P.C., Ground vibrations from sheetpile driving in urban environment: measurements, analysis and effects on buildings and occupants, Soil Dynamics and Earthquake Engineering 19 (2000) pp. 371-387

  18. Bachmann H., Ammann W., Vibration in Structures. Induced by Man and Machines. International Association for Bridge and Structural Engineering 1987

  19. Brzakala W., Herbut A., Rybak J. (2014).: Recommendations for ground vibrations survey in course of geotechnical works. 14th International Multidisciplinary Scientific GeoConference SGEM 2014 : GeoConference on science and technologies in geology, exploration and mining, Albena, Bulgaria, 17-26 June, 2014. Vol. 2, Hydrogeology, engineering geology and geotechnics. pp. 747-754

  20. Hiller, D.M. & Hope, V.S. (1998). “Groundborne vibration generated by mechanized construction activity.” Proc., Inst. Civil Engineers (131) 223-232

  21. Hwang J.H., Tu T.Y., Ground vibration due to dynamic compaction, Soil Dynamics and Earthquake Engineering 26 (2006) pp. 337-346

  22. Pieczynska J. M., Rybak J.(2009): Prospects for active design expansion owing to investigation of vibrations caused by geotechnical works. Wiadomosci Konserwatorskie. nr 26, pp. 481-491

  23. Rybak J., Pieczynska-Kozlowska J. (2014):Vibration monitoring as a tool for a calibration of geotechnical technologies. 14th International Multidisciplinary Scientific GeoConference SGEM 2014 : GeoConference on science and technologies in geology, exploration and mining, Albena, Bulgaria, 17-26 June, 2014. Vol. 2, Hydrogeology, engineering geology and geotechnics. pp. 1043-1050

  24. Skipp B.O., Ground vibration – codes and standards. In: Skipp (ed) Ground dynamics and man-made processes. The Institution of Civil Engineers, 1998

  25. Srbulov M., Practical Soil Dynamics. Case Studies in Earthquake and Geotechnical Engineering., Springer 2011

  26. Srbulov M., Ground Vibration Engineering. Simplified analyses with Case Studies and Examples., Springer 2010

  27. Tamrazyan A.G., Avetisyan L.A. (2014): Experimental research in eccentrically compressed reinforced concrete elements during short-term dynamic loadings under fire conditions. Promyshlennoe i grazhdanskoe stroitel'stvo, Issue 4, pp 24-28

  28. Tamrazyan A.G., Avetisyan L.A. (2014): Estimation of Load Bearing Capacity of Eccentrically Compressed Reinforced Concrete Elements under Dynamic Loading in Fire Conditions, Applied Mechanics and Materials, Vols. 638 -640, pp. 62-65

  29. DIN 4150-3:1999-02 Structural vibration Part 3: Effects of vibration on structures

  30. Vibration testing reports U-series no. 145/2015, 153/2015, 2/2016, Wroclaw University of Technology (in Polish) 16th International Scientific GeoConference SGEM2016 www.sgem.org

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