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Earth solids and dynamic nonlinear elasticity

Treść / Zawartość
Identyfikatory
Warianty tytułu
Konferencja
International Symposium on HYDROACOUSTICS AND ULTRASONICS EAA Symposium (formerly 13th FASE Symposium) Gdańsk-Jurata, 12-16 May 1997
Języki publikacji
EN
Abstrakty
EN
The nonlinear response of rock is much different than that of ordinary materials. Especially at ambient conditions, rock responds in an extremely nonlinear fashion, often due to the presence of hysteresis. Nonlinear elastic response in rock is illustrated by dynamic results from resonant bar and pulse-mode experiments.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
53--58
Opis fizyczny
Bibliogr. 21 poz., rys.
Twórcy
  • Nonlinear Elasticity Group, MS D443, Los Alarnos National Laboratory, Los Alamos, NM 87545, USA
  • Université Pierre et Marie Curie, Laboratoire d'Acoustique Physique, Paris, France
  • Nonlinear Elasticity Group, MS D443, Los Alamos National Laboratory, Los Alamos, NM 87545, USA
  • NATO Advanced Research Fellow at Los Alamos National Laboratory tel. [505] 667-8936; fax.[505] 667-8487; http://www.ees4.1anl.gov/Nonlinear
Bibliografia
  • 1. Beresnev, I., and Wed, K-L., (1996) Review: Nonlincar Soil Response-A reality?, BulI. Seism. Soc. Am. 86, 1964-1978.
  • 2. Gist, G. A., (1994), Fluid effects on vclocity and attenuation in sandstones, J. Acoust. Soc. Am. 96 (2) 1158-1173.
  • 3. Guyer, R. A., McCall, K. R., and Boitnott, G. N. (1995a) Hysteresis, discrcte memory and nonlinear wave propagation in rock, Phys. Rev. Let., 74, 3491-3494.
  • 4. Guyer, R. A., McCall, K. R. , Johnson, P. A., Rasolofosaon, P. N, J., and Zinszner, B., (1995b), Equation of state hysteresis and resonant bar measurements on rock, 35th U. S. Symposium on Rock Mechanics, Daemen, J. J. K. and Schultz, R. A. [Eds.] Balkerna, Rotterdam, 177-181.
  • 5. Johnson, P. A., B. Zinszner, P. N. J. Rasolofosaon, (1996), Resonance and nonlinear elastic phenomena in rock, J. Geophys. Res., 101, 11553-11564.
  • 6. Johnson, P. A. and p, N. J. Rasolofosaon (1996) Manifestation of nonlinear elasticity in rock: Convincing evidcnce over large frequency and strain intervals from laboratory studies, Nonlinear Processes in Geophysics, 3, No.2, 77-88.
  • 7. Johnson, P. A. and McCall, K. R., (1994), Observation and implications of nonlinear elastic wave response in rock, Geophys. Res. Lett. 21, 165-168.
  • 8. Johnson, P. A. and Shankland, T. J., (1989), Nonlinear generation of elastic waves in granite and sandstone: continuous wave and travel time observations, J. Geophys. Res. 94, 17,729- 17,733.
  • 9. Meegan, G. D., Johnson, P. A., Guyer, R. A .. and McCall, K. R., (1993), Observations of nonlinear elastic wave behavior in sandstone, J. Acoust. Soc. Am. 94, 3387-3391.
  • 10. Nazarov, V. E., Ostrovsky, L. A., Soustova, I. A., and Sutin, A. M., (1987), Nonlinear acoustics of micro-inhomogeneous media, Phys. Earth and Planet. Int., 50, 65-73.
  • 11. Ostrovsky, L. A. (1991) Wave proccsses in media with strong acoustic nonlinearity, J. Acoust. Soc. Am., 90, 3332-3337.
  • 12. Pestorius, F. M. and Blackstock, D. T., (1973), Propagation of finite-amplitude noise, in Finiteamplitude Wave Effects in Fluids, Proceedings of the 1973 Symposium--Copenhagen, edited by L. Björno (Department of Fluid Mechanics, Tcchnical University of Denrnark, 1973), 24-29.
  • 13. Sharma, M. M., and Tutuncu, A. N., (1994), Grain contact adhesion hysteresis: A mechanism for attenuation of seismic waves, Geophys. Res. Lett., 21, 2323-2326.
  • 14. Stoker, J. J., (1950), Nonlinear Vibrations in Mechanical and Electrical Systems, Interscience Publishers, Inc., New York.
  • 15. Ten Cate, J., Koen E.A Van Den Abeele, Thomas J. Shankland, and Paul A. Johnson, (1996), Laboratory study of linear and nonlinear elastic pulse propagation in sandstone, J. Acoust. Soc. Am., 100,1383-1391.
  • 16. Ten Cate, J.A., and T. J. Shankland, (1996), Slow dynamics in the nonlinear elastic response of Berea sandstone, Geophys. Res. Lett. 23(21), 3019-3022.
  • 17. Tutuncu, A. N., Sharma, M. M.,and Podio, A. L., (1995), Hysteresis observed in stress-strain diagrams and its relation to adhesion hysteresis and srick-slip sliding in sedimentary granular rocks, in Rock Mechanics Proceedings of the 35th US Symposium, Editors Daemen, J. and Schultz, R., Balkema, Rotterdam, 801-806.
  • 18. Van Den Abeele, K. E-A, (1996), Elastic pulsed wave propagation in media with second or higher order nonlinearity. Part I: Thcoretical framework, J. Acoust. Soc. Am., 99, 3334-3345.
  • 19. Van Den Abecle, K. E-A, and Paul A. Johnson, (1996), Elastic pulsed wave propagation in media 58 with second or higher order nonlinearity . Part II: Simulation of experimental measurements on Berea sandstonc, J. Acoust. Soc. Am., 99, 3346- 3352.
  • 20. Van Den Abeele, K. E-A, Paul A. Johnson, Robert A. Guyer, and Katherine R. McCall, (1997), On the quasi-analytic treatrnent of hysteretic nonlinear response in elastic wave propagation, J. Acoust. Soc. Am., 101(4).
  • 21. Zinszner, B., P. A. Johnson, and P. N. J. Rasolofosaon, (1997), Influence of change in physical state on elastic nonlinear response in rock: effects of confining pressure and saturation, in press, J. Geophys. Res.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8ec4638b-de8d-42d4-956c-06fb770cb109
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