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DETERMINATION OF SOIL PROPERTIES BY MEANS OF GROUND VIBRATIONS INDUCED BY EARTH MOVING MACHINERY: A CASE STUDY IN A QUARRY NEAR ROME.

Coltrinari, Norris

First published: 2016-06-28https://doi.org/10.5593/sgem2016/b12/s03.038View metrics

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Title
DETERMINATION OF SOIL PROPERTIES BY MEANS OF GROUND VIBRATIONS INDUCED BY EARTH MOVING MACHINERY: A CASE STUDY IN A QUARRY NEAR ROME.
Authors
Coltrinari, Norris
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
291-298
ISSN
1314-2704
ISBN
978-619-7105-56-8
Language
en
Publication type
Conference Paper
References30
  1. Giraudi, A., Cardu, M, Kecojevic, V., An assessment of blasting vibrations: a case study on quarry operation, American Journal of Environmental Sciences 5.4, United States, pp. 468-474, 2009

  2. Alfaro Degan, G., Lippiello, D., Lorenzetti, S., Pinzari, M. Vibration assessing models: comparison between methods. WIT Transactions on Biomedicine and Health, Vol. 16, WIT Press, 2013, ISSN: 1743-3525, pp. 59-69, DOI: 10.2495/EHR130061. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org 16th International Multidisciplinary Scientific GeoConference SGEM 2016

  3. Alonso- Rodríguez, A., Miranda, E., Assessment of building behavior under near - fault pulse-like ground motions through simplified models, Soil Dynamics and Earthquake Engineering 79, Netherlands, pp.47–58, 2015

  4. Cardu, M., Giraudi, A., Michelotti, E., Combined use of explosives and cutting machines in urban demolition, Geoingegneria Ambientale e Mineraria, Italy, Vol. 130 , Issue 2, pp. 67-74, August 2010

  5. Beskou, Niki D., Theodorakopoulos, Dimitrios D., Dynamic effects of moving loads on road pavements: A review, Soil Dynamics and Earthquake Engineering 31, Netherlands, pp. 547–567, 2011

  6. Picoux, B., El Ayadi, A., Pe tit, C., Dynamic response of a flexible pavement submitted by impulsive loading, Soil Dynamics and Earthquake Engineering 29, Netherlands, pp.845–854, 2009

  7. Xia, H., Cao, Y.M., De Roeck, G., Theoretical modeling and characteristic analysis of moving-train induced ground vibrations, Journal of Sound and Vibration 329, United States, pp.819–832, 2010

  8. Lombaert, G., Degrande, G., The experimental validation of a numerical model for the prediction of the vibrations in the free field produced by road traffic, Journal of Sound and Vibration 262, United States, pp. 309–331, 2003

  9. Luna, R., Jadi, H., Determination of Dynamic Soil Properties Using Geophysical Methods, Proceedings of the First International Conference on the Application of Geophysical and NDT Methodologies to Transportation Facilities and Infrastructure, St. Louis, MO, December 2000

  10. Kouroussis, G., Verlinden, O., Prediction of railway ground vibrations: Accuracy of a coupled lumped mass model for representing the track/soil interaction, Soil Dynamics and Earthquake Engineering 69, Netherlands, pp. 220–226, 2015

  11. Alonso-Rodríguez, A., Miranda, E., Assessment of building behavior under near - fault pulse-like ground motions through simplified models, Soil Dynamics and Earthquake Engineering 79, Netherlands, pp.47–58, 2015.

  12. Hamdan, N., Laghrouche, O., Woodward, P.K., Mahmood, M.S., Ground vibration reduction analysis using a frequency-domain finite element approach, Construction and Building Materials 92, United Kingdom, pp. 95–103, 2015

  13. Cardu, M., Giraudi, A., Rocca, V., Verga, F., Experimental laboratory tests focused on rock characterisation for mechanical excavation, International Journal of Mining, Reclamation and Environment, United Kingdom, Vol. 26, Issue 3, , pp. 199-216, September 2012.

  14. Alfaro Degan, G., Lippiello, D., Pinzari, M. Occupational health and safety management systems: comparison between BS OHSAS 18001: 2007 and Italian Decree 81/2008. WIT Transactions on Biomedicine and Health, Vol. 14, WIT Press, 2009, ISSN: 1743-3525, pp. 401-409, DOI: 10.2495/EHR090391.

  15. Alfaro Degan, G., Lippiello, D., Pinzari, M. Field Evaluation of PM 10 detectors in quarry environment. International Journal of Sustainable Development and Planning, 10 (3), p. 361-372, 2015. ISSN: 1743-761X, DOI: 10.2495/SDP-V10-N3-361-372. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

  16. Giraudi, A., Cardu, M, Kecojevic, V., An assessment of blasting vibrations: a case study on quarry operation, American Journal of Environmental Sciences 5.4, United States, pp. 468-474, 2009

  17. Alfaro Degan, G., Lippiello, D., Lorenzetti, S., Pinzari, M. Vibration assessing models: comparison between methods. WIT Transactions on Biomedicine and Health, Vol. 16, WIT Press, 2013, ISSN: 1743-3525, pp. 59-69, DOI: 10.2495/EHR130061. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org 16th International Multidisciplinary Scientific GeoConference SGEM 2016

  18. Alonso- Rodríguez, A., Miranda, E., Assessment of building behavior under near - fault pulse-like ground motions through simplified models, Soil Dynamics and Earthquake Engineering 79, Netherlands, pp.47–58, 2015

  19. Cardu, M., Giraudi, A., Michelotti, E., Combined use of explosives and cutting machines in urban demolition, Geoingegneria Ambientale e Mineraria, Italy, Vol. 130 , Issue 2, pp. 67-74, August 2010

  20. Beskou, Niki D., Theodorakopoulos, Dimitrios D., Dynamic effects of moving loads on road pavements: A review, Soil Dynamics and Earthquake Engineering 31, Netherlands, pp. 547–567, 2011

  21. Picoux, B., El Ayadi, A., Pe tit, C., Dynamic response of a flexible pavement submitted by impulsive loading, Soil Dynamics and Earthquake Engineering 29, Netherlands, pp.845–854, 2009

  22. Xia, H., Cao, Y.M., De Roeck, G., Theoretical modeling and characteristic analysis of moving-train induced ground vibrations, Journal of Sound and Vibration 329, United States, pp.819–832, 2010

  23. Lombaert, G., Degrande, G., The experimental validation of a numerical model for the prediction of the vibrations in the free field produced by road traffic, Journal of Sound and Vibration 262, United States, pp. 309–331, 2003

  24. Luna, R., Jadi, H., Determination of Dynamic Soil Properties Using Geophysical Methods, Proceedings of the First International Conference on the Application of Geophysical and NDT Methodologies to Transportation Facilities and Infrastructure, St. Louis, MO, December 2000

  25. Kouroussis, G., Verlinden, O., Prediction of railway ground vibrations: Accuracy of a coupled lumped mass model for representing the track/soil interaction, Soil Dynamics and Earthquake Engineering 69, Netherlands, pp. 220–226, 2015

  26. Alonso-Rodríguez, A., Miranda, E., Assessment of building behavior under near - fault pulse-like ground motions through simplified models, Soil Dynamics and Earthquake Engineering 79, Netherlands, pp.47–58, 2015.

  27. Hamdan, N., Laghrouche, O., Woodward, P.K., Mahmood, M.S., Ground vibration reduction analysis using a frequency-domain finite element approach, Construction and Building Materials 92, United Kingdom, pp. 95–103, 2015

  28. Cardu, M., Giraudi, A., Rocca, V., Verga, F., Experimental laboratory tests focused on rock characterisation for mechanical excavation, International Journal of Mining, Reclamation and Environment, United Kingdom, Vol. 26, Issue 3, , pp. 199-216, September 2012.

  29. Alfaro Degan, G., Lippiello, D., Pinzari, M. Occupational health and safety management systems: comparison between BS OHSAS 18001: 2007 and Italian Decree 81/2008. WIT Transactions on Biomedicine and Health, Vol. 14, WIT Press, 2009, ISSN: 1743-3525, pp. 401-409, DOI: 10.2495/EHR090391.

  30. Alfaro Degan, G., Lippiello, D., Pinzari, M. Field Evaluation of PM 10 detectors in quarry environment. International Journal of Sustainable Development and Planning, 10 (3), p. 361-372, 2015. ISSN: 1743-761X, DOI: 10.2495/SDP-V10-N3-361-372. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

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