849 research outputs found
Athermal Shear-Transformation-Zone Theory of Amorphous Plastic Deformation II: Analysis of Simulated Amorphous Silicon
In the preceding paper, we developed an athermal shear-transformation-zone
(STZ) theory of amorphous plasticity. Here we use this theory in an analysis of
numerical simulations of plasticity in amorphous silicon by Demkowicz and Argon
(DA). In addition to bulk mechanical properties, those authors observed
internal features of their deforming system that challenge our theory in
important ways. We propose a quasithermodynamic interpretation of their
observations in which the effective disorder temperature, generated by
mechanical deformation well below the glass temperature, governs the behavior
of other state variables that fall in and out of equilibrium with it. Our
analysis points to a limitation of either the step-strain procedure used by DA
in their simulations, or the STZ theory in its ability to describe rapid
transients in stress-strain curves, or perhaps to both. Once we allow for this
limitation, we are able to bring our theoretical predictions into accurate
agreement with the simulations.Comment: 10 pages, 7 figures, second of a two-part series. Reorganized paper
with no substantial changes in conten
Analytic Model of the Universal Structure of Turbulent Boundary Layers
Turbulent boundary layers exhibit a universal structure which nevertheless is
rather complex, being composed of a viscous sub-layer, a buffer zone, and a
turbulent log-law region. In this letter we present a simple analytic model of
turbulent boundary layers which culminates in explicit formulae for the
profiles of the mean velocity, the kinetic energy and the Reynolds stress as a
function of the distance from the wall. The resulting profiles are in close
quantitative agreement with measurements over the entire structure of the
boundary layer, without any need of re-fitting in the different zones.Comment: 5 pages, 4 figs, JETP Letters, submitted. Comparison with the latest
DNS dat
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