Title of article :
Oedometric test, Bauerʹs law and the micro-macro connection for a dry sand Original Research Article
Author/Authors :
W.F. Oquendo، نويسنده , , J.D. Mu?oz، نويسنده , , A. Lizcano، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2009
Pages :
5
From page :
616
To page :
620
Abstract :
What is the relationship between the macroscopic parameters of the constitutive equation for a granular soil and the microscopic forces between grains? In order to investigate this connection, we have simulated by molecular dynamics the oedometric compression of a granular soil (a dry and bad-graded sand) and computed the hypoplastic parameters image (the granular skeleton hardness) and η (the exponent in the compression law) by following the same procedure than in experiments, that is by fitting the Bauerʹs law image, where p is the pressure and image and e are the initial and present void ratios. The micro-mechanical simulation includes elastic and dissipative normal forces plus slip, rolling and static friction between grains. By this way we have explored how the macroscopic parameters change by modifying the grains stiffness, V; the dissipation coefficient, image; the static friction coefficient, image; and the dynamic friction coefficient, image. Cumulating all simulations, we obtained an unexpected result: the two macroscopic parameters seems to be related by a power law, image. Moreover, the experimental result for a Guamo sand with the same granulometry fits perfectly into this power law. Is this relation real? What is the final ground of the Bauerʹs Law? We conclude by exploring some hypothesis.
Keywords :
molecular dynamics , Computational physics , Integration methods , Hypoplastic theory , Granular media , Rigid body
Journal title :
Computer Physics Communications
Serial Year :
2009
Journal title :
Computer Physics Communications
Record number :
1137642
Link To Document :
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