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Transport in fracture processes: Fragmentation and slip

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
We present a new development in the asymmetric continuum theory with the shear oscillations (twist motions) and independent spin; these motions (displacement velocities and spin) can be shifted in phase to describe the independent rebound processes. Our approach provides an extension of the asymmetric continuum theory by including the microfragmentation processes with a double transport which may appear in an advanced fracture process under very high load. The related nonlinear equations, leading to soliton solutions, are derived.
Czasopismo
Rocznik
Strony
583--599
Opis fizyczny
Bibliogr. 15 poz.
Twórcy
autor
autor
  • Institute of Geophysics, Polish Academy of Sciences, Warszawa, Poland, rt@igf.edu.pl
Bibliografia
  • Crandall, S.H., N.C. Dahl, and T.J. Lardner (1978), An Introduction to the Mechanics of Solids, 2nd ed., McGraw Hill, New York.
  • Feng, S. (1985), Percolation properties of granular elastic networks in two dimensions, Phys. Rev. B 32, 510-513.
  • Feng, S., and P.N. Sen (1984), Percolation on elastic networks: new exponent and threshold, Phys. Rev. Lett. 52, 216-219.
  • Feng, S., P.N. Sen, B.I. Halperin, and C.J. Lobb (1984), Percolation on twodimensional elastic networks with rotationally invariant bound-bending forces, Phys. Rev. B 30, 5386-5389.
  • Kossecka, E., and R. DeWitt (1977), Disclination kinematic, Arch. Mech. 29, 633-651.
  • Roux, S., and E. Guyon (1985), Mechanical percolation: A small beam lattice study, J. Physique Lett. 46, 999-1004.
  • Teisseyre, R. (2001), Evolution, propagation and diffusion of dislocation fields. In: R. Teisseyre and E. Majewski (eds.), Earthquake Thermodynamics and Phase Transformations in the Earth’s Interior, Academic Press, San Diego, pp. 167-198.
  • Teisseyre, R. (2008a), Introduction to asymmetric continuum: Dislocations in solids and extreme phenomena in fluids, Acta Geophys. 56, 2, 259-269.
  • Teisseyre, R. (2008b), Asymmetric continuum: Standard theory. In: R. Teisseyre, H. Nagahama, and E. Majewski (eds.), Physics of Asymmetric Continua: Extreme and Fracture Processes, Springer, Berlin, pp. 95-109.
  • Teisseyre, R. (2009), Tutorial on new development in physics of rotation motions, Bull. Seismol. Soc. Am. 99, 2B, 1028-1039.
  • Teisseyre, R., and W. Boratyński (2002), Continua with self-rotation nuclei: Evolution of defect fields and equations of motion, Acta. Geophys. Pol. 50, 2, 179-206.
  • Teisseyre, R., and M. Górski (2007), Physics of basic motions in asymmetric continuum, Acta Geophys. 55, 2, 119-132.
  • Teisseyre, R., and M. Górski (2008), Introduction to asymmetric continuum: Fundamental point deformations. In: R. Teisseyre, H. Nagahama and E. Majewski (eds.), Physics of Asymmetric Continua: Extreme and Fracture Processes, Springer, Berlin, pp. 3-15.
  • Teisseyre, R., and M. Górski (2009), Fundamental deformations in asymmetric continuum, Bull. Seism. Soc. Am. 99, 2B, 1132-1136.
  • Teisseyre, R., M. Górski, and K.P. Teisseyre (2008), Fracture processes: Spin and twist-shear coincidence. In: R. Teisseyre, H. Nagahama and E. Majewski (eds.), Physics of Asymmetric Continua: Extreme and Fracture Processes, Springer, Berlin, pp. 111-122.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL1-0005-0008
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