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Volumn 62, Issue 4 B, 2000, Pages 5248-5262

Scalar model of inhomogeneous elastic and granular media

Author keywords

[No Author keywords available]

Indexed keywords

COMPUTER SIMULATION; CORRELATION METHODS; ELASTICITY; LATTICE VIBRATIONS; MATHEMATICAL MODELS; MOLECULAR DYNAMICS; PRESSURE EFFECTS; STRESS ANALYSIS;

EID: 0034293986     PISSN: 1063651X     EISSN: None     Source Type: Journal    
DOI: 10.1103/PhysRevE.62.5248     Document Type: Article
Times cited : (27)

References (44)
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    • The nontensile constraint and the incompressibility are approximate; for example, cohesive forces arise from capillary condensation [see D. Hornbaker et al., Nature (London) 387, 765 (1997); R. Albert et al., Phys. Rev. E 56, R6271 (1997); T. Halsey and A. Levine, Phys. Rev. Lett. 80, 3141 (1998); and L. Bocquet, E. Charlaix, S. Ciliberto, and J. Crassous, Nature (London) 396, 735 (1998)], and all materials deform in response to an applied stress. However, these approximations are very good in many dry granular media.
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  • 7
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    • The nontensile constraint and the incompressibility are approximate; for example, cohesive forces arise from capillary condensation [see D. Hornbaker et al., Nature (London) 387, 765 (1997); R. Albert et al., Phys. Rev. E 56, R6271 (1997); T. Halsey and A. Levine, Phys. Rev. Lett. 80, 3141 (1998); and L. Bocquet, E. Charlaix, S. Ciliberto, and J. Crassous, Nature (London) 396, 735 (1998)], and all materials deform in response to an applied stress. However, these approximations are very good in many dry granular media.
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  • 8
    • 0000902657 scopus 로고    scopus 로고
    • The nontensile constraint and the incompressibility are approximate; for example, cohesive forces arise from capillary condensation [see D. Hornbaker et al., Nature (London) 387, 765 (1997); R. Albert et al., Phys. Rev. E 56, R6271 (1997); T. Halsey and A. Levine, Phys. Rev. Lett. 80, 3141 (1998); and L. Bocquet, E. Charlaix, S. Ciliberto, and J. Crassous, Nature (London) 396, 735 (1998)], and all materials deform in response to an applied stress. However, these approximations are very good in many dry granular media.
    • (1998) Phys. Rev. Lett. , vol.80 , pp. 3141
    • Halsey, T.1    Levine, A.2
  • 9
    • 0032585609 scopus 로고    scopus 로고
    • The nontensile constraint and the incompressibility are approximate; for example, cohesive forces arise from capillary condensation [see D. Hornbaker et al., Nature (London) 387, 765 (1997); R. Albert et al., Phys. Rev. E 56, R6271 (1997); T. Halsey and A. Levine, Phys. Rev. Lett. 80, 3141 (1998); and L. Bocquet, E. Charlaix, S. Ciliberto, and J. Crassous, Nature (London) 396, 735 (1998)], and all materials deform in response to an applied stress. However, these approximations are very good in many dry granular media.
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    • In particular, it does not describe well the long-wavelength properties of stress transmission. Vector generalizations that aim to capture these properties accurately include C. Eloy and C. Clément, J. Phys. I 7, 1541 (1997); J.E.S. Socolar, Phys. Rev. E 57, 3204 (1998); P. Claudin, J.-P. Bouchaud, M.E. Cates, and J.P. Wittmer, ibid. 57, 4441 (1998); M.L. Nguyen and S.N. Coppersmith, ibid. 59, 5870 (1999); O. Narayan, e-print cond-mat/0004399.
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    • In particular, it does not describe well the long-wavelength properties of stress transmission. Vector generalizations that aim to capture these properties accurately include C. Eloy and C. Clément, J. Phys. I 7, 1541 (1997); J.E.S. Socolar, Phys. Rev. E 57, 3204 (1998); P. Claudin, J.-P. Bouchaud, M.E. Cates, and J.P. Wittmer, ibid. 57, 4441 (1998); M.L. Nguyen and S.N. Coppersmith, ibid. 59, 5870 (1999); O. Narayan, e-print cond-mat/0004399.
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    • In particular, it does not describe well the long-wavelength properties of stress transmission. Vector generalizations that aim to capture these properties accurately include C. Eloy and C. Clément, J. Phys. I 7, 1541 (1997); J.E.S. Socolar, Phys. Rev. E 57, 3204 (1998); P. Claudin, J.-P. Bouchaud, M.E. Cates, and J.P. Wittmer, ibid. 57, 4441 (1998); M.L. Nguyen and S.N. Coppersmith, ibid. 59, 5870 (1999); O. Narayan, e-print cond-mat/0004399.
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  • 18
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    • O. Narayan, e-print cond-mat/0004399
    • In particular, it does not describe well the long-wavelength properties of stress transmission. Vector generalizations that aim to capture these properties accurately include C. Eloy and C. Clément, J. Phys. I 7, 1541 (1997); J.E.S. Socolar, Phys. Rev. E 57, 3204 (1998); P. Claudin, J.-P. Bouchaud, M.E. Cates, and J.P. Wittmer, ibid. 57, 4441 (1998); M.L. Nguyen and S.N. Coppersmith, ibid. 59, 5870 (1999); O. Narayan, e-print cond-mat/0004399.
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    • Nguyen, M.L.1    Coppersmith, S.N.2
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    • edited by R.P. Behringer and J.T. Jenkins (Balkena, Rotterdam,) See Ref. [14]
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    • unpublished
    • This matching between iteration number n and pressure II applies for polydisperities greater than roughly 10%. The behavior of P(F) in nearly monodisperse 2D systems, where large regions of crystallization are present, is currently under investigation [M. L. Nguyen (unpublished)].
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* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.