Results 221 to 230 of about 67,714 (263)
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Slip at High Shear Rates

Physical Review Letters, 2008
There are contradictory published data on the behavior of fluid slip at high shear rates. Using three methodologies (molecular dynamics simulations, an analytical theory of slip, and a Navier-Stokes-based calculation) covering a range of fluids (bead-spring liquids, polymer solutions, and ideal gas flows) we show that as shear rate increases, the ...
Ashlie, Martini   +3 more
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Effect of Slip Rate on Stress Drop

pure and applied geophysics, 1986
Recent observations made by Kanamori and Allen about earthquake recurrence time and average stress drop revealed a very interesting relation: earthquakes with longer recurrence times have higher average stress drops. They attributed the difference in stress drop to the difference in long-term average slip rate. To interpret their result in terms of the
Tianging Cao, Keiiti Aki
openaire   +1 more source

Liquid Slip in Nanoscale Channels as a Rate Process

Physical Review Letters, 2007
Liquids flowing through nanoscale channels can slip; that is, there is a discontinuity in the mean speed between the walls and the first layer of liquid molecules. The mechanisms of slip are unclear. Using numerical simulation, we find an exponential dependence of slip on solvation pressure which can be explained by treating slip as a rate process ...
Seth, Lichter   +3 more
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The slip casting rate for quartz ceramics

Refractories, 1973
In an investigation of the influence of the principal factors on the rate of slip casting quartz ceramics it was established that the density (porosity) of the deposited cast body is the main determining factor in the casting rate. The density of the body depends on the degree of stabilization, the pH, and the granularity of the slip suspension, and on
Yu. E. Pivinskii   +3 more
openaire   +1 more source

Slip weakening in rocks and analog materials at co-seismic slip rates

Journal of the Mechanics and Physics of Solids, 2008
Abstract Determination of co-seismic slip resistance in earth faults is critical for understanding the magnitude of shear-stress reduction and hence the near-fault acceleration that can occur during earthquakes. Also, knowledge of shear resistance dependency on slip velocity, slip distance, normal stress, and surface roughness is fundamental ...
Fuping Yuan, Vikas Prakash
openaire   +1 more source

Backstripping dip‐slip fault histories: apparent slip rates for the Miocene of the Vienna Basin

Terra Nova, 2002
Backstripped basement subsidence histories from both the hanging wall and the footwall blocks adjacent to synsedimentary normal faults can be used to reconstruct the sense of fault motion through time and to quantify the vertical component of fault slip.
Wagreich, Michael, Schmid, Hanns-Peter
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Rate-Dependent Slip of Newtonian Liquid at Smooth Surfaces

Physical Review Letters, 2001
Physical Review ...
Zhu, YX, Granick, S
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Late Quaternary slip rates and slip partitioning on the Alpine Fault, New Zealand

Journal of Structural Geology, 2001
Abstract Published geological data on Late Quaternary offsets on the Alpine Fault, New Zealand, have been assembled into a common format and analysed with respect to uncertainties. Uncertainties arise mainly from measurement of offset features, relating apparent offsets to actual fault slip, and dating the offset features.
Richard J. Norris, Alan F. Cooper
openaire   +1 more source

Mechanisms of Slip Weakening and Healing in Glass at Co-Seismic Slip Rates

2011
The determination of co-seismic slip resistance in earth faults is critical for understanding the magnitude of shear stress reduction and hence the near-fault acceleration that can occur duringearthquakes. Knowledge of shear resistance dependency on slip velocity, slip distance, normal stress, and surface roughness is fundamental information for ...
Vikas Prakash, Fuping Yuan, Nirav Parikh
openaire   +1 more source

A generalized slip-rate function for kinematic modeling

2020
<p>Over the last decades, many types of slip-rate functions (SRFs) have been introduced into kinematic rupture modeling. Commonly used SRFs are the Haskell-type rectangular pulse, cosine and trapezoidal windows and the Kostrov-/Yoffe functions.
Sebastian von Specht   +3 more
openaire   +2 more sources

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